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Suez, Jotham et al.
Nature. (2014).
514(7521):181-6
25231862
PM2014.10Artificial sweeteners induce glucose intolerance by altering the gut microbiota.59772.428

~~~

---
Teng, Yun et al.
Cell Host Microbe. (2018).
24(5):637-652.e8
30449315
PM2018.11Plant-Derived Exosomal MicroRNAs Shape the Gut Microbiota.19947.84

~~~

---
Ruiz-Ojeda, Francisco Javier et al.
Adv Nutr. (2019).
10(suppl_1):S31-S48
30721958
PM2019.01Effects of Sweeteners on the Gut Microbiota: A Review of Experimental Studies and Clinical Trials.9022.53

~~~

---
Wölnerhanssen, Bettina Karin; Meyer-Gerspach, Anne Christin
Ther Umsch. (2019).
76(3):111-116
31498044
PM2019.09[Health effects of sugar consumption and possible alternatives].00.00

~~~

---
Ahmad, Samar Y et al.
Nutrients. (2020).
12(11)
33171964
PMC 2020.11The Effects of Non-Nutritive Artificial Sweeteners, Aspartame and Sucralose, on the Gut Microbiome in Healthy Adults: Secondary Outcomes of a Randomized Double-Blinded Crossover Clinical Trial.156.90

~~~

---
Chassaing, Benoit et al.
Nature. (2015).
519(7541):92-6
25731162
PM2015.03Dietary emulsifiers impact the mouse gut microbiota promoting colitis and metabolic syndrome.54269.231

~~~

---
Llewellyn, Sean R et al.
Gastroenterology. (2018).
154(4):1037-1046.e2
29174952
PM2018.03Interactions Between Diet and the Intestinal Microbiota Alter Intestinal Permeability and Colitis Severity in Mice.12325.47

~~~

---
Uebanso, Takashi et al.
Nutrients. (2017).
9(7)
28708089
PM2017.07Effects of Consuming Xylitol on Gut Microbiota and Lipid Metabolism in Mice.224.02

~~~

---
Zheng, Di-Wei et al.
Nat Biomed Eng. (2019).
3(9):717-728
31332342
PM2019.09Phage-guided modulation of the gut microbiota of mouse models of colorectal cancer augments their responses to chemotherapy.6619.80

~~~

---
Laudisi, Federica et al.
Nutrients. (2019).
11(10)
31581570
PMS 2019.10Impact of Food Additives on Gut Homeostasis.216.51

~~~

---
Zhang, Shi-Long et al.
Theranostics. (2021).
11(9):4155-4170
33754054
PM2021.00Pectin supplement significantly enhanced the anti-PD-1 efficacy in tumor-bearing mice humanized with gut microbiota from patients with colorectal cancer.2311.00

~~~

---
Chassaing, Benoit et al.
Gut. (2017).
66(8):1414-1427
28325746
PM2017.08Dietary emulsifiers directly alter human microbiota composition and gene expression ex vivo potentiating intestinal inflammation.14627.015

~~~

---
Thomson, Pamela et al.
Br J Nutr. (2019).
122(8):856-862
31258108
PMC 2019.10Short-term impact of sucralose consumption on the metabolic response and gut microbiome of healthy adults.257.70

~~~

---
Naimi, Sabrine et al.
Microbiome. (2021).
9(1):66
33752754
PM2021.03Direct impact of commonly used dietary emulsifiers on human gut microbiota.2312.51

~~~

---
Hibberd, A A et al.
Benef Microbes. (2019).
10(2):121-135
30525950
PMC 2019.03Probiotic or synbiotic alters the gut microbiota and metabolism in a randomised controlled trial of weight management in overweight adults.4812.52

~~~

---
Bian, Xiaoming et al.
PLoS One. (2017).
12(6):e0178426
28594855
PM2017.00The artificial sweetener acesulfame potassium affects the gut microbiome and body weight gain in CD-1 mice.548.95

~~~

---
Berding, Kirsten et al.
Psychopharmacology (Berl). (2021).
238(1):149-163
32951067
PMC 2021.01A specific dietary fibre supplementation improves cognitive performance-an exploratory randomised, placebo-controlled, crossover study.168.00

~~~

---
Gill, Steven R et al.
Science. (2006).
312(5778):1355-9
16741115
PM2006.06Metagenomic analysis of the human distal gut microbiome.1660100.15

~~~

---
Ferrere, Gladys et al.
J Hepatol. (2017).
66(4):806-815
27890791
PM2017.04Fecal microbiota manipulation prevents dysbiosis and alcohol-induced liver injury in mice.12221.23

~~~

---
Xie, Xiaoliang et al.
Nutrition. (2019).
61:132-142
30711862
PMC 2019.05Effects of prebiotics on immunologic indicators and intestinal microbiota structure in perioperative colorectal cancer patients.246.50

~~~

---
Abou-Donia, Mohamed B et al.
J Toxicol Environ Health A. (2008).
71(21):1415-29
18800291
PM2008.00Splenda alters gut microflora and increases intestinal p-glycoprotein and cytochrome p-450 in male rats.1057.010

~~~

---
Han, Ci et al.
Aging (Albany NY). (2021).
13(7):10099-10111
33818419
PM2021.03Intestinal microbiota and antibiotic-associated acute gastrointestinal injury in sepsis mice.10.50

~~~

---
Gerasimidis, Konstantinos et al.
Eur J Nutr. (2020).
59(7):3213-3230
31853641
PM2020.10The impact of food additives, artificial sweeteners and domestic hygiene products on the human gut microbiome and its fibre fermentation capacity.2812.40

~~~

---
Deng, Liping et al.
Nanoscale. (2021).
13(25):11250-11261
34152347
PM2021.07Se@Albumin nanoparticles ameliorate intestinal mucositis caused by cisplatin via gut microbiota-targeted regulation.42.70

~~~

---
Zhao, Yi et al.
Sci Total Environ. (2018).
621:1224-1232
29054657
PM2018.04Feed additives shift gut microbiota and enrich antibiotic resistance in swine gut.296.10

~~~

---
Yausheva, Еlena et al.
Environ Sci Pollut Res Int. (2018).
25(18):18109-18120
29691748
PM2018.06Intestinal microbiome of broiler chickens after use of nanoparticles and metal salts.132.81

~~~

---
Ma, Jun et al.
Environ Pollut. (2020).
256:113463
31677875
PM2020.01Does soil CuO nanoparticles pollution alter the gut microbiota and resistome of Enchytraeus crypticus?51.72

~~~

---
Yuan, Li et al.
Environ Pollut. (2019).
255(Pt 2):113327
31600703
PM2019.12Antibiotic resistance and microbiota in the gut of Chinese four major freshwater carp from retail markets.51.60

~~~

---
Zhao, Yuanyuan et al.
Carbohydr Polym. (2021).
269:118326
34294338
PM2021.10Pectin and homogalacturonan with small molecular mass modulate microbial community and generate high SCFAs via in vitro gut fermentation.118.80

~~~

---
Guggino, Giuliana et al.
Arthritis Rheumatol. (2021).
73(7):1189-1199
33452867
PM2021.07Inflammasome Activation in Ankylosing Spondylitis Is Associated With Gut Dysbiosis.85.30

~~~

---
Udayangani, R M C et al.
Fish Shellfish Immunol. (2017).
66:173-184
28479399
PM2017.07Metagenomics analysis of gut microbiota and immune modulation in zebrafish (Danio rerio) fed chitosan silver nanocomposites.162.90

~~~

---
Verhoog, Sanne et al.
Nutrients. (2019).
11(7)
31336737
PMS 2019.07Dietary Factors and Modulation of Bacteria Strains of Akkermansia muciniphila and Faecalibacterium prausnitzii: A Systematic Review.00.00

~~~

---


30949054
PM.--200.00

~~~

---
de Alvarenga, José et al.
Crit Rev Food Sci Nutr. (2021):1-38
34387521
PM2021.08Monoterpenes: current knowledge on food source, metabolism, and health effects.32.10

~~~

---
Ferreira-Lazarte, Alvaro et al.
Int J Biol Macromol. (2021).
167:1349-1360
33202274
PM2021.01Behaviour of citrus pectin and modified citrus pectin in an azoxymethane/dextran sodium sulfate (AOM/DSS)-induced rat colorectal carcinogenesis model.21.01

~~~

---
Seabra, Catarina Leal et al.
Eur J Pharm Biopharm. (2018).
127:378-386
29524597
PM2018.06Lipid nanoparticles to counteract gastric infection without affecting gut microbiota.61.30

~~~

---
Wu, Jingtao et al.
Environ Sci Technol. (2020).
54(18):11146-11154
32790293
PM2020.09Silver Sulfide Nanoparticles Reduce Nitrous Oxide Emissions by Inhibiting Denitrification in the Earthworm Gut.00.00

~~~

---
Chang, Mengru et al.
Res Vet Sci. (2021).
136:57-65
33588095
PMC 2021.05Changes of gut microbiota in pregnant sows induced by 5-Aminolevulinic acid.21.20

~~~

---
Gokulan, Kuppan et al.
Int J Nanomedicine. (2018).
13:2857-2867
29844669
PM2018.00Responses of intestinal virome to silver nanoparticles: safety assessment by classical virology, whole-genome sequencing and bioinformatics approaches.81.60

~~~

---
Nagpal, Ravinder et al.
Microorganisms. (2021).
9(11)
34835437
PM2021.11Distinct Gut Microbiota Signatures in Mice Treated with Commonly Used Food Preservatives.32.60

~~~

---
Yin, Naiyi et al.
Sci Total Environ. (2019).
651(Pt 1):1489-1494
30360278
PM2019.02Formation of silver nanoparticles by human gut microbiota.00.00

~~~

---
Yoo, Ami et al.
Materials (Basel). (2021).
14(10)
34065822
PM2021.05Zinc Oxide and Silver Nanoparticle Effects on Intestinal Bacteria.42.40

~~~

---
Houron, Camille et al.
Nutrients. (2021).
13(11)
34835981
PM2021.10Gut Microbiota Reshaped by Pectin Treatment Improves Liver Steatosis in Obese Mice.43.20

~~~

---
Hu, Haijuan et al.
J Agric Food Chem. (2019).
67(43):11922-11930
31576748
PM2019.10Role of the Gut Microbiota and Their Metabolites in Modulating the Cholesterol-Lowering Effects of Citrus Pectin Oligosaccharides in C57BL/6 Mice.61.80

~~~

---
Swart, Elmer et al.
Environ Pollut. (2020).
267:115633
33254656
PM2020.12The earthworm microbiome is resilient to exposure to biocidal metal nanoparticles.31.40

~~~

---
Zuo, Qi-Le et al.
J Agric Food Chem. (2021).
69(40):12002-12011
34590865
PM2021.10Influences of Xylitol Consumption at Different Dosages on Intestinal Tissues and Gut Microbiota in Rats.00.00

~~~

---
Ding, Jing et al.
Chemosphere. (2020).
258:127347
32535433
PM2020.11Exposure of CuO nanoparticles and their metal counterpart leads to change in the gut microbiota and resistome of collembolans.31.40

~~~

---
Hrncirova, Lucia et al.
Folia Microbiol (Praha). (2019).
64(4):497-508
30656592
PM2019.07Human gut microbes are susceptible to antimicrobial food additives in vitro.102.94

~~~

---
Chupani, Latifeh et al.
Environ Sci Pollut Res Int. (2019).
26(25):25869-25873
31273654
PM2019.09Effects of food-borne ZnO nanoparticles on intestinal microbiota of common carp (Cyprinus carpio L.).41.20

~~~

---
Chen, Jianbing et al.
Molecules. (2020).
25(6)
32178470
PM2020.03Treatment with Subcritical Water-Hydrolyzed Citrus Pectin Ameliorated Cyclophosphamide-Induced Immunosuppression and Modulated Gut Microbiota Composition in ICR Mice.20.70

~~~

---
Yu, Xiaoqian et al.
mBio. (2020).
11(5)
32900799
PM2020.09Prebiotics and Community Composition Influence Gas Production of the Human Gut Microbiota.62.61

~~~

---
Sun, Shumin et al.
J Nutr Biochem. (2021).
93:108621
33705945
PM2021.07High sucrose diet-induced dysbiosis of gut microbiota promotes fatty liver and hyperlipidemia in rats.53.30

~~~

---
Li, Xiaoyu et al.
Food Funct. (2021).
12(21):10397-10410
34554172
PM2021.11Construction and characterization of Juglans regia L. polyphenols nanoparticles based on bovine serum albumin and Hohenbuehelia serotina polysaccharides, and their gastrointestinal digestion and colonic fermentation in vitro.00.00

~~~

---
Gong, Haojie et al.
Poult Sci. (2021).
100(1):196-205
33357682
PM2021.01Effect of benzoic acid on production performance, egg quality, intestinal morphology, and cecal microbial community of laying hens.73.50

~~~

---
Lamichhane, Santosh et al.
J Proteome Res. (2018).
17(3):1041-1053
29359944
PM2018.03Metabolic Fate of 13C-Labeled Polydextrose and Impact on the Gut Microbiome: A Triple-Phase Study in a Colon Simulator.51.02

~~~

---
Pereira, Scheila A et al.
Curr Microbiol. (2020).
77(8):1483-1495
32236647
PM2020.08The Chelating Mineral on Organic Acid Salts Modulates the Dynamics and Richness of the Intestinal Microbiota of a Silver Catfish Rhamdia quelen.00.00

~~~

---
Bianchi, Fernanda et al.
Appl Microbiol Biotechnol. (2018).
102(20):8827-8840
30121748
PM2018.10Modulation of gut microbiota from obese individuals by in vitro fermentation of citrus pectin in combination with Bifidobacterium longum BB-46.122.81

~~~

---
Diao, Jun et al.
J Nanobiotechnology. (2021).
19(1):174
34112173
PM2021.06Silicon dioxide nanoparticles induced neurobehavioral impairments by disrupting microbiota-gut-brain axis.74.40

~~~

---
Khajeh Bami, Mohammad et al.
Probiotics Antimicrob Proteins. (2020).
12(2):461-472
31134523
PM2020.06Effect of Dietary Bacillus coagulans and Different Forms of Zinc on Performance, Intestinal Microbiota, Carcass and Meat Quality of Broiler Chickens.62.30

~~~

---
Murga-Garrido, Sofia M et al.
Microbiome. (2021).
9(1):117
34016169
PM2021.05Gut microbiome variation modulates the effects of dietary fiber on host metabolism.2414.40

~~~

---
Li, Yuan et al.
Front Microbiol. (2020).
11:1450
32670255
PM2020.00Gut Microbiota Metabolite Fights Against Dietary Polysorbate 80-Aggravated Radiation Enteritis.41.30

~~~

---
Perez, Laeticia et al.
Food Chem Toxicol. (2021).
154:112352
34153347
PM2021.08Dietary nanoparticles alter the composition and function of the gut microbiota in mice at dose levels relevant for human exposure.53.50

~~~

---
O'Mahony, Siobhain M et al.
Eur J Neurosci. (2020).
51(4):1042-1058
31339598
PM2020.02The enduring effects of early-life stress on the microbiota-gut-brain axis are buffered by dietary supplementation with milk fat globule membrane and a prebiotic blend.186.20

~~~

---
Chen, Pubo et al.
mSystems. (2021).
6(5):e0063021
34519523
PM2021.10Resistance and Resilience of Fish Gut Microbiota to Silver Nanoparticles.32.41

~~~

---
Zheng, Hao et al.
Proc Natl Acad Sci U S A. (2019).
116(51):25909-25916
31776248
PM2019.12Division of labor in honey bee gut microbiota for plant polysaccharide digestion.6320.40

~~~

---
Jung, Dong-Hyun et al.
Curr Microbiol. (2020).
77(8):1839-1847
32166413
PM2020.08Genome Analysis of Enterococcus mundtii Pe103, a Human Gut-Originated Pectinolytic Bacterium.00.00

~~~

---
Wiese, Maria et al.
Anim Microbiome. (2021).
3(1):69
34627409
PM2021.10High throughput in vitro characterization of pectins for pig(let) nutrition.00.00

~~~

---
Gangadoo, Sheeana et al.
Appl Microbiol Biotechnol. (2018).
102(3):1455-1466
29250719
PM2018.02Selenium nanoparticles in poultry feed modify gut microbiota and increase abundance of Faecalibacterium prausnitzii.326.53

~~~

---
Papa, G et al.
Sci Rep. (2021).
11(1):5946
33723271
PM2021.03Acute and chronic effects of Titanium dioxide (TiO2) PM1 on honey bee gut microbiota under laboratory conditions.31.60

~~~

---
Wang, Qiao-Ping et al.
PLoS One. (2018).
13(7):e0199080
29975731
PM2018.00Non-nutritive sweeteners possess a bacteriostatic effect and alter gut microbiota in mice.5210.22

~~~

---
Magnusson, K R et al.
Neuroscience. (2015).
300:128-40
25982560
PM2015.08Relationships between diet-related changes in the gut microbiome and cognitive flexibility.8511.50

~~~

---
Ban, Qingfeng et al.
J Dairy Sci. (2020).
103(4):2956-2968
32089310
PM2020.04Effects of a synbiotic yogurt using monk fruit extract as sweetener on glucose regulation and gut microbiota in rats with type 2 diabetes mellitus.41.50

~~~

---
Lison, Dominique et al.
Arch Toxicol. (2021).
95(4):1251-1266
33779765
PM2021.04Systemic effects and impact on the gut microbiota upon subacute oral exposure to silver acetate in rats.00.00

~~~

---
de Souza, C Bussolo et al.
Benef Microbes. (2021).
12(4):91-105
34323161
PM2021.08Lean and obese microbiota: differences in in vitro fermentation of food-by-products.00.00

~~~

---
Yaskolka Meir, Anat et al.
Nutrients. (2021).
13(6)
34070816
PM2021.05The Metabolomic-Gut-Clinical Axis of Mankai Plant-Derived Dietary Polyphenols.53.00

~~~

---
Li, Juan et al.
Part Fibre Toxicol. (2018).
15(1):5
29343276
PM2018.01The antihyperlipidemic effects of fullerenol nanoparticles via adjusting the gut microbiota in vivo.102.02

~~~

---
Jang, Yoon Ok et al.
Sci Rep. (2021).
11(1):7008
33772084
PM2021.03High-fiber diets attenuate emphysema development via modulation of gut microbiota and metabolism.189.80

~~~

---
Vamanu, Emanuel et al.
Nutrients. (2018).
10(5)
29757931
PM2018.05In Vitro Human Microbiota Response to Exposure to Silver Nanoparticles Biosynthesized with Mushroom Extract.143.00

~~~

---
Huang, Wei et al.
Appl Microbiol Biotechnol. (2018).
102(9):4143-4157
29520598
PM2018.05Community composition, diversity, and metabolism of intestinal microbiota in cultivated European eel (Anguilla anguilla).61.30

~~~

---
Jimenez, Angel G et al.
Nat Microbiol. (2020).
5(2):368-378
31873206
PM2020.02Diet-derived galacturonic acid regulates virulence and intestinal colonization in enterohaemorrhagic Escherichia coli and Citrobacter rodentium.103.41

~~~

---
Yu, Xi; Zuo, Tao
Front Nutr. (2021).
8:731040
34409064
PM2021.00Editorial: Food Additives, Cooking and Processing: Impact on the Microbiome.31.40

~~~

---
Pei, Xun et al.
J Sci Food Agric. (2019).
99(3):1366-1374
30094852
PM2019.02Effects of dietary zinc oxide nanoparticles supplementation on growth performance, zinc status, intestinal morphology, microflora population, and immune response in weaned pigs.246.11

~~~

---
Harris, Hannah C et al.
Crit Rev Food Sci Nutr. (2021).
61(22):3892-3903
32865002
PMS 2021.00Impact of the source of fermentable carbohydrate on SCFA production by human gut microbiota in vitro - a systematic scoping review and secondary analysis.94.31

~~~

---
Yadav, Monika et al.
Sci Rep. (2021).
11(1):5561
33692426
PM2021.03Mapping of the benzoate metabolism by human gut microbiome indicates food-derived metagenome evolution.73.80

~~~

---
Hild, Benedikt et al.
Z Gastroenterol. (2021).
59(1):63-68
33429452
PM2021.01Bile Acids in Control of the Gut-Liver-Axis.10.50

~~~

---
Xu, Li et al.
J Nanosci Nanotechnol. (2021).
21(2):1176-1183
33183459
PM2021.02Explore the Effects of Fe₃O₄ Nanoparticles and Oxidative Stress and Neuroinflammatory Responses on the Intestinal Flora Based on a Parkinson Rat Model.10.50

~~~

---
Lee, Eun-Sook et al.
J Sci Food Agric. (2018).
98(11):4369-4373
29412464
PM2018.08Effects of bentonite Bgp35b-p on the gut microbiota of mice fed a high-fat diet.30.70

~~~

---
Raza, Ghulam Shere et al.
Sci Rep. (2017).
7(1):5294
28706193
PM2017.07Polydextrose changes the gut microbiome and attenuates fasting triglyceride and cholesterol levels in Western diet fed mice.295.35

~~~

---
Nahok, Kanokwan et al.
Nutrients. (2021).
13(6)
34070818
PM2021.05Monosodium Glutamate Induces Changes in Hepatic and Renal Metabolic Profiles and Gut Microbiome of Wistar Rats.21.20

~~~

---
Wiese, Maria
FEMS Microbiol Lett. (2019).
366(4)
30767016
PM2019.02The potential of pectin to impact pig nutrition and health: feeding the animal and its microbiome.51.32

~~~

---
Sawosz, Ewa et al.
Arch Anim Nutr. (2007).
61(6):444-51
18069616
PM2007.12Influence of hydrocolloidal silver nanoparticles on gastrointestinal microflora and morphology of enterocytes of quails.201.33

~~~

---
Tuck, Caroline J et al.
Neurogastroenterol Motil. (2019).
31(10):e13675
31290223
PM2019.10The impact of dietary fermentable carbohydrates on a postinflammatory model of irritable bowel syndrome.72.20

~~~

---
Rajasekar, T et al.
Braz J Microbiol. (2020).
51(3):957-967
32424714
PM2020.09Green synthesis of gold nanoparticles using extracellular metabolites of fish gut microbes and their antimicrobial properties.20.90

~~~

---
Ojo, Babajide A et al.
J Nutr. (2019).
149(7):1107-1115
31162575
PM2019.07Wheat Germ Supplementation Increases Lactobacillaceae and Promotes an Anti-inflammatory Gut Milieu in C57BL/6 Mice Fed a High-Fat, High-Sucrose Diet.72.00

~~~

---
Ortenzi, Marco Aldo et al.
Molecules. (2021).
26(2)
33467593
PM2021.01Pectin-Based Formulations for Controlled Release of an Ellagic Acid Salt with High Solubility Profile in Physiological Media.21.00

~~~

---
Graf, Daniela et al.
Nutrients. (2019).
11(8)
31405019
PM2019.08Cooked Red Lentils Dose-Dependently Modulate the Colonic Microenvironment in Healthy C57Bl/6 Male Mice.61.80

~~~

---
Zhang, Zhiyu et al.
PLoS One. (2016).
11(2):e0147778
26872019
PM2016.00Dietary Fiber Intake Regulates Intestinal Microflora and Inhibits Ovalbumin-Induced Allergic Airway Inflammation in a Mouse Model.395.52

~~~

---
Wang, Chengyan et al.
Small. (2020).
16(16):e1906915
32187855
PM2020.04Clinically Approved Carbon Nanoparticles with Oral Administration for Intestinal Radioprotection via Protecting the Small Intestinal Crypt Stem Cells and Maintaining the Balance of Intestinal Flora.72.50

~~~

---
Yu, Yue et al.
Int J Nanomedicine. (2021).
16:881-893
33574668
PM2021.00Short-Term Oral Administration of Mesoporous Silica Nanoparticles Potentially Induced Colon Inflammation in Rats Through Alteration of Gut Microbiota.31.40

~~~

---
Dudefoi, William et al.
Food Chem Toxicol. (2017).
106(Pt A):242-249
28564612
PM2017.08Impact of food grade and nano-TiO2 particles on a human intestinal community.529.65

~~~

---
Gadaleta, Raffaella Maria et al.
EBioMedicine. (2020).
54:102719
32259714
PM2020.04Fibroblast Growth Factor 19 modulates intestinal microbiota and inflammation in presence of Farnesoid X Receptor.269.50

~~~

---
Xu, Yuelong et al.
Nanomaterials (Basel). (2021).
11(6)
34205616
PM2021.06Plasmon-Enhanced Antibacterial Activity of Chiral Gold Nanoparticles and In Vivo Therapeutic Effect.10.60

~~~

---
Li, Xiao-Chong et al.
Drug Des Devel Ther. (2021).
15:1641-1652
33907383
PM2021.00Temozolomide-Induced Changes in Gut Microbial Composition in a Mouse Model of Brain Glioma.73.40

~~~

---
Hattori, Kouya et al.
Nutrients. (2021).
13(6)
34204751
PM2021.06Gut Microbiota Prevents Sugar Alcohol-Induced Diarrhea.10.60

~~~

---
Li, Juanjuan et al.
ACS Nano. (2019).
13(5):5002-5014
30916928
PM2019.05Gold Nanoparticles Cure Bacterial Infection with Benefit to Intestinal Microflora.195.21

~~~

---
Lyu, Zhen et al.
Sci Rep. (2021).
11(1):6558
33753813
PM2021.03Developmental exposure to silver nanoparticles leads to long term gut dysbiosis and neurobehavioral alterations.52.70

~~~

---
Al-Najjar, Mohammad A A et al.
PLoS One. (2021).
16(4):e0247633
33909615
PM2021.00Evaluation of the orally administered calcium alginate aerogel on the changes of gut microbiota and hepatic and renal function of Wistar rats.21.00

~~~

---
Li, Xinghao et al.
Sci China Life Sci. (2018).
61(6):696-705
29744782
PM2018.06Comparative study on the gut microbiotas of four economically important Asian carp species.153.30

~~~

---
Zahoor, Farah et al.
Metabolites. (2021).
11(5)
34068237
PM2021.05Selection of Potential Yeast Probiotics and a Cell Factory for Xylitol or Acid Production from Honeybee Samples.53.00

~~~

---
Peng, Qiannan et al.
Food Funct. (2019).
10(11):7164-7173
31596293
PM2019.11Potassium sorbate suppresses intestinal microbial activity and triggers immune regulation in zebrafish (Danio rerio).61.90

~~~

---
Cattò, Cristina et al.
Environ Pollut. (2019).
245:754-763
30500755
PM2019.02Impacts of dietary silver nanoparticles and probiotic administration on the microbiota of an in-vitro gut model.102.61

~~~

---
Pinget, Gabriela et al.
Front Nutr. (2019).
6:57
31165072
PM2019.00Impact of the Food Additive Titanium Dioxide (E171) on Gut Microbiota-Host Interaction.368.85

~~~

---
Chen, Ying et al.
J Nutr Biochem. (2018).
56:175-182
29574331
PM2018.06Butyrate from pectin fermentation inhibits intestinal cholesterol absorption and attenuates atherosclerosis in apolipoprotein E-deficient mice.265.71

~~~

---
Golonka, Rachel et al.
Curr Pharmacol Rep. (2019).
5(4):303-316
32864300
PM2019.00Dietary Additives and Supplements Revisited: The Fewer, the Safer for Liver and Gut Health.61.50

~~~

---
Nie, Qixing et al.
J Agric Food Chem. (2021).
69(25):7000-7015
34139119
PM2021.06Bioactive Dietary Fibers Selectively Promote Gut Microbiota to Exert Antidiabetic Effects.42.50

~~~

---
Yde, Christian Clement et al.
PLoS One. (2021).
16(12):e0260765
34855861
PM2021.00Polydextrose with and without Bifidobacterium animalis ssp. lactis 420 drives the prevalence of Akkermansia and improves liver health in a multi-compartmental obesogenic mice study.21.00

~~~

---
Hrncirova, Lucia et al.
Microorganisms. (2019).
7(10)
31548508
PM2019.09Food Preservatives Induce Proteobacteria Dysbiosis in Human-Microbiota Associated Nod2-Deficient Mice.113.31

~~~

---
Chen, Jianjun et al.
Nanoscale. (2020).
12(41):21429-21439
33079119
PM2020.10Crosstalk of gut microbiota and serum/hippocampus metabolites in neurobehavioral impairments induced by zinc oxide nanoparticles.83.60

~~~

---
Tian, Lingmin et al.
Mol Nutr Food Res. (2017).
61(1)
27198846
PM2017.01Effects of pectin on fermentation characteristics, carbohydrate utilization, and microbial community composition in the gastrointestinal tract of weaning pigs.335.57

~~~

---
Vester Boler, Brittany M et al.
Nutr Res. (2009).
29(9):631-9
19854378
PM2009.09Carbohydrates blended with polydextrose lower gas production and short-chain fatty acid production in an in vitro system.60.51

~~~

---
Raba, Grete et al.
FEMS Microbiol Lett. (2021).
368(7)
33864456
PM2021.05Acidic pH enhances butyrate production from pectin by faecal microbiota.31.80

~~~

---
Yu, Zhigang et al.
ISME J. (2021).
15(7):2117-2130
33589766
PM2021.07Nonnutritive sweeteners can promote the dissemination of antibiotic resistance through conjugative gene transfer.138.71

~~~

---
Xiang, Shasha et al.
Microbiome. (2021).
9(1):62
33736704
PM2021.03Xylitol enhances synthesis of propionate in the colon via cross-feeding of gut microbiota.137.10

~~~

---
Wang, Min-Qi et al.
Biol Trace Elem Res. (2012).
149(2):184-9
22544767
PM2012.11Effects of copper-loaded chitosan nanoparticles on intestinal microflora and morphology in weaned piglets.141.41

~~~

---
Tong, Lingjun et al.
Mol Nutr Food Res. (2020).
64(8):e1901251
32180343
PM2020.04Oral Administration of Bovine Milk-Derived Extracellular Vesicles Alters the Gut Microbiota and Enhances Intestinal Immunity in Mice.3211.60

~~~

---
van Trijp, Mara P H et al.
Mol Nutr Food Res. (2020).
64(20):e2000455
32918522
PM2020.10Fermentation Kinetics of Selected Dietary Fibers by Human Small Intestinal Microbiota Depend on the Type of Fiber and Subject.20.90

~~~

---
Zhu, Lifeng et al.
mBio. (2021).
12(4):e0115321
34340536
PM2021.08Captive Common Marmosets (Callithrix jacchus) Are Colonized throughout Their Lives by a Community of Bifidobacterium Species with Species-Specific Genomic Content That Can Support Adaptation to Distinct Metabolic Niches.32.10

~~~

---
Sun, Erna et al.
J Dairy Sci. (2021).
104(6):6389-6398
33714585
PMC 2021.06Beverages containing Lactobacillus paracasei LC-37 improved functional dyspepsia through regulation of the intestinal microbiota and their metabolites.10.60

~~~

---
Bang, So-Jung et al.
AMB Express. (2018).
8(1):98
29909506
PM2018.06The influence of in vitro pectin fermentation on the human fecal microbiome.265.71

~~~

---
Zhao, Yu et al.
Ecotoxicol Environ Saf. (2020).
206:111393
33010597
PM2020.12Restraining the TiO2 nanoparticles-induced intestinal inflammation mediated by gut microbiota in juvenile rats via ingestion of Lactobacillus rhamnosus GG.73.40

~~~

---
Kurtz, Courtney C et al.
J Appl Toxicol. (2020).
40(10):1384-1395
32420653
PM2020.10Acute high-dose titanium dioxide nanoparticle exposure alters gastrointestinal homeostasis in mice.62.70

~~~

---
Zhang, Shikai et al.
Crit Rev Food Sci Nutr. (2021):1-34
34637646
PM2021.10Recent advances in utilization of pectins in biomedical applications: a review focusing on molecular structure-directing health-promoting properties.43.20

~~~

---
Yausheva, Еlena et al.
Environ Sci Pollut Res Int. (2016).
23(13):13245-54
27023811
PM2016.07Influence of zinc nanoparticles on survival of worms Eisenia fetida and taxonomic diversity of the gut microflora.60.94

~~~

---
Bianchi, Fernanda et al.
Food Res Int. (2019).
120:595-602
31000276
PM2019.06In vitro modulation of human gut microbiota composition and metabolites by Bifidobacterium longum BB-46 and a citric pectin.30.80

~~~

---
Javurek, Angela B et al.
Sci Rep. (2017).
7(1):2822
28588204
PM2017.06Gut Dysbiosis and Neurobehavioral Alterations in Rats Exposed to Silver Nanoparticles.254.53

~~~

---
Abiega-Franyutti, Pilar; Freyre-Fonseca, Veronica
Toxicology. (2021).
464:153001
34710536
PMS 2021.12Chronic consumption of food-additives lead to changes via microbiota gut-brain axis.21.80

~~~

---
Kim, Caroline C et al.
ISME J. (2019).
13(6):1437-1456
30728469
PM2019.06Genomic insights from Monoglobus pectinilyticus: a pectin-degrading specialist bacterium in the human colon.236.40

~~~

---
Adamberg, Kaarel et al.
Int J Food Sci Nutr. (2020).
71(7):845-855
32083496
PM2020.11The composition of faecal microbiota is related to the amount and variety of dietary fibres.62.80

~~~

---
Han, S et al.
Beijing Da Xue Xue Bao Yi Xue Ban. (2020).
52(3):457-463
32541978
PM2020.06[Effects of titanium dioxide nanoparticles on fecal metabolome in rats after oral administration for 90 days].20.80

~~~

---
Wei, Xiaoyuan et al.
Microorganisms. (2021).
9(1)
33466376
PM2021.01Dietary Organic Acids Modulate Gut Microbiota and Improve Growth Performance of Nursery Pigs.105.00

~~~

---
Singh, Vishal et al.
Gut. (2019).
68(10):1801-1812
30670576
PM2019.10Microbiota fermentation-NLRP3 axis shapes the impact of dietary fibres on intestinal inflammation.5115.70

~~~

---
Sahasrabudhe, Neha M et al.
Front Immunol. (2018).
9:383
29545800
PM2018.00Dietary Fiber Pectin Directly Blocks Toll-Like Receptor 2-1 and Prevents Doxorubicin-Induced Ileitis.326.32

~~~

---
Zhang, Shanshan et al.
Mol Nutr Food Res. (2019).
63(14):e1801363
31116489
PM2019.07Regulatory Roles of Pectin Oligosaccharides on Immunoglobulin Production in Healthy Mice Mediated by Gut Microbiota.61.71

~~~

---
Mailing, Lucy J et al.
Behav Brain Res. (2019).
359:731-736
30243767
PM2019.02Behavioral response to fiber feedingis cohort-dependent and associated with gut microbiota composition in mice.41.00

~~~

---
Arrigoni, Eva et al.
Br J Nutr. (2005).
94(5):643-6
16277764
PM2005.11Human gut microbiota does not ferment erythritol.130.81

~~~

---
Guo, Mengru et al.
Food Funct. (2021).
12(19):9380-9390
34606537
PM2021.10Sucralose enhances the susceptibility to dextran sulfate sodium (DSS) induced colitis in mice with changes in gut microbiota.32.40

~~~

---
Saarinen, Markku Tapani et al.
Sci Rep. (2020).
10(1):21577
33299048
PM2020.12Metabolomics analysis of plasma and adipose tissue samples from mice orally administered with polydextrose and correlations with cecal microbiota.31.40

~~~

---
Wang, Yabing et al.
Comp Biochem Physiol Part D Genomics Proteomics. (2021).
40:100923
34634570
PM2021.12Dietary jellyfish affect digestive enzyme activities and gut microbiota of Pampus argenteus.00.00

~~~

---
Duan, Cheng-Jie et al.
J Biol Chem. (2020).
295(52):18625-18637
33097594
PM2020.12Ascertaining the biochemical function of an essential pectin methylesterase in the gut microbe Bacteroides thetaiotaomicron.10.50

~~~

---
Neckermann, Kaat et al.
Food Res Int. (2021).
145:110395
34112398
PM2021.07The efficacy and effect on gut microbiota of an aflatoxin binder and a fumonisin esterase using an in vitro simulator of the human intestinal microbial ecosystem (SHIME®).10.70

~~~

---
Koutsos, Athanasios et al.
Nutrients. (2017).
9(6)
28538678
PM2017.05Effects of Commercial Apple Varieties on Human Gut Microbiota Composition and Metabolic Output Using an In Vitro Colonic Model.274.81

~~~

---
Chandrarathna, H P S U et al.
Mar Drugs. (2020).
18(3)
32245246
PM2020.03Marine Microalgae, Spirulina maxima-Derived Modified Pectin and Modified Pectin Nanoparticles Modulate the Gut Microbiota and Trigger Immune Responses in Mice.103.50

~~~

---
Tzora, Athina et al.
J Poult Sci. (2017).
54(3):218-227
32908429
PM2017.07Effects of Oregano, Attapulgite, Benzoic Acid and their Blend on Chicken Performance, Intestinal Microbiology and Intestinal Morphology.61.10

~~~

---
An, Ran et al.
Nutrients. (2019).
11(9)
31547291
PMC 2019.09Sugar Beet Pectin Supplementation Did Not Alter Profiles of Fecal Microbiota and Exhaled Breath in Healthy Young Adults and Healthy Elderly.185.40

~~~

---
Li, Mengxue et al.
Sci Total Environ. (2020).
704:135273
31806321
PM2020.02Effects of TiO2 nanoparticles on intestinal microbial composition of silkworm, Bombyx mori.93.10

~~~

---
Koh, Jeewon et al.
Food Chem. (2020).
302:125343
31430630
PM2020.01Blueberry pectin and increased anthocyanins stability under in vitro digestion.103.31

~~~

---
Zhan, Jing et al.
Environ Int. (2019).
130:104861
31195221
PM2019.09Pectin reduces environmental pollutant-induced obesity in mice through regulating gut microbiota: A case study of p,p'-DDE.41.20

~~~

---
Gallotti, B et al.
Br J Nutr. (2021).
126(6):853-864
33298215
PM2021.09Effects of dietary fibre intake in chemotherapy-induced mucositis in murine model.64.50

~~~

---
Shtriker, Miriam G et al.
Mol Nutr Food Res. (2018).
62(20):e1800331
30051965
PM2018.10Galactomannan More than Pectin Exacerbates Liver Injury in Mice Fed with High-Fat, High-Cholesterol Diet.51.22

~~~

---
Vo, Trung D et al.
Compr Rev Food Sci Food Saf. (2019).
18(1):31-47
33337023
PM2019.01Dietary Exposures to Common Emulsifiers and Their Impact on the Gut Microbiota: Is There a Cause for Concern?41.01

~~~

---
da Silva, Caio Abercio et al.
Anim Microbiome. (2021).
3(1):86
34930490
PM2021.12Impact of zinc oxide, benzoic acid and probiotics on the performance and cecal microbiota of piglets.00.00

~~~

---
Li, Meixia et al.
Carbohydr Polym. (2021).
272:118534
34420703
PM2021.11Discrete genetic loci in human gut Bacteroides thetaiotaomicron confer pectin metabolism.10.90

~~~

---
Sekita, Ayaka et al.
Nutrition. (2016).
32(6):720-2
27038764
PM2016.06Dietary phytic acid prevents fatty liver by reducing expression of hepatic lipogenic enzymes and modulates gut microflora in rats fed a high-sucrose diet.50.80

~~~

---
Sun, Yongjin et al.
Front Nutr. (2021).
8:778563
34926554
PM2021.00In vitro Assessment of Chemical and Pre-biotic Properties of Carboxymethylated Polysaccharides From Passiflora edulis Peel, Xylan, and Citrus Pectin.10.50

~~~

---
Mao, Guizhu et al.
Food Funct. (2019).
10(12):7828-7843
31778135
PM2019.12Depolymerized RG-I-enriched pectin from citrus segment membranes modulates gut microbiota, increases SCFA production, and promotes the growth of Bifidobacterium spp., Lactobacillus spp. and Faecalibaculum spp.216.81

~~~

---
Fava, Francesca et al.
Br J Nutr. (2007).
98(1):123-33
17391567
PM2007.07Effect of polydextrose on intestinal microbes and immune functions in pigs.151.04

~~~

---
Wu, Xuangao et al.
Eur J Nutr. (2021).
60(4):1907-1919
32910260
PM2021.06Chitosan alleviated menopausal symptoms and modulated the gut microbiota in estrogen-deficient rats.1610.10

~~~

---
Niu, Kai-Min et al.
Probiotics Antimicrob Proteins. (2021).
13(4):1106-1118
33665789
PM2021.08Probiotic Potential of the Farmed Olive Flounder, Paralichthys olivaceus, Autochthonous Gut Microbiota.00.00

~~~

---
Yang, Min et al.
J Anim Sci. (2021).
99(6)
33871635
PM2021.06Dietary fiber in a low-protein diet during gestation affects nitrogen excretion in primiparous gilts, with possible influences from the gut microbiota.63.80

~~~

---
Feng, Zian et al.
Int J Biol Macromol. (2021).
182:2024-2036
34087293
PM2021.07Ramulus mori polysaccharide-loaded PLGA nanoparticles and their anti-inflammatory effects in vivo.42.70

~~~

---
Ju, Peijun et al.
Psychopharmacology (Berl). (2020).
237(4):1011-1026
31900523
PM2020.04The protective effects of Mogroside V and its metabolite 11-oxo-mogrol of intestinal microbiota against MK801-induced neuronal damages.62.20

~~~

---
Mao, Zhilei et al.
Nanoscale Res Lett. (2019).
14(1):26
30656437
PM2019.01Exposure to Titanium Dioxide Nanoparticles During Pregnancy Changed Maternal Gut Microbiota and Increased Blood Glucose of Rat.92.21

~~~

---
Romero Marcia, Arianna D et al.
Nutrients. (2021).
13(9)
34578800
PM2021.08Fine Carbohydrate Structure of Dietary Resistant Glucans Governs the Structure and Function of Human Gut Microbiota.21.40

~~~

---
Li, Miaomiao et al.
Anaerobe. (2016).
39:19-25
26891629
PM2016.06In vitro fermentation of alginate and its derivatives by human gut microbiota.192.92

~~~

---
Cholewińska, Ewelina et al.
PLoS One. (2018).
13(5):e0197083
29758074
PM2018.00Comparison of the effect of dietary copper nanoparticles and one copper (II) salt on the copper biodistribution and gastrointestinal and hepatic morphology and function in a rat model.173.30

~~~

---
Cantu-Jungles, Thaisa M et al.
mBio. (2021).
12(3):e0102821
34182773
PM2021.06Dietary Fiber Hierarchical Specificity: the Missing Link for Predictable and Strong Shifts in Gut Bacterial Communities.42.50

~~~

---
Marinho, Júlia Fernanda Urbano et al.
Probiotics Antimicrob Proteins. (2019).
11(1):264-272
29119465
PM2019.03Probiotic and Synbiotic Sorbets Produced with Jussara (Euterpe edulis) Pulp: Evaluation Throughout the Storage Period and Effect of the Matrix on Probiotics Exposed to Simulated Gastrointestinal Fluids.00.00

~~~

---
Zhu, Dong et al.
Environ Sci Technol. (2018).
52(21):12748-12756
30345766
PM2018.11Exposure of a Soil Collembolan to Ag Nanoparticles and AgNO3 Disturbs Its Associated Microbiota and Lowers the Incidence of Antibiotic Resistance Genes in the Gut.61.43

~~~

---
Liu, Ning et al.
ISME J. (2019).
13(1):104-117
30116044
PM2019.01Functional metagenomics reveals abundant polysaccharide-degrading gene clusters and cellobiose utilization pathways within gut microbiota of a wood-feeding higher termite.358.81

~~~

---
Hoeflinger, Jennifer L et al.
PLoS One. (2015).
10(8):e0135494
26275147
PM2015.00Characterization of the Intestinal Lactobacilli Community following Galactooligosaccharides and Polydextrose Supplementation in the Neonatal Piglet.101.21

~~~

---
Pu, Junning et al.
Anim Nutr. (2020).
6(2):152-159
32542195
PM2020.06Effects of benzoic acid, Bacillus coagulans and oregano oil combined supplementation on growth performance, immune status and intestinal barrier integrity of weaned piglets.176.60

~~~

---
Schiffman, Susan S; Nagle, H Troy
Food Chem Toxicol. (2019).
132:110692
31351100
PM2019.10Revisited: Assessing the in vivo data on low/no-calorie sweeteners and the gut microbiota.61.80

~~~

---
Mahalak, Karley K et al.
J Agric Food Chem. (2020).
68(46):13093-13101
31869223
PM2020.11Impact of Steviol Glycosides and Erythritol on the Human and Cebus apella Gut Microbiome.115.10

~~~

---
Wei, Yao et al.
BMC Microbiol. (2016).
16(1):255
27809778
PMC 2016.11Pectin enhances the effect of fecal microbiota transplantation in ulcerative colitis by delaying the loss of diversity of gut flora.274.41

~~~

---
Hobbs, Cheryl A et al.
Food Chem Toxicol. (2015).
83:283-92
26142838
PM2015.09Genotoxicity evaluation of the flavonoid, myricitrin, and its aglycone, myricetin.121.60

~~~

---
Han, Youngji et al.
Nutrients. (2020).
12(2)
32013116
PM2020.01Alteration of Microbiome Profile by D-Allulose in Amelioration of High-Fat-Diet-Induced Obesity in Mice.144.71

~~~

---
Muñoz-Almagro, Nerea et al.
Food Res Int. (2021).
140:109851
33648169
PM2021.02Role of pectin in the current trends towards low-glycaemic food consumption.31.60

~~~

---
Bredeck, Gerrit et al.
Nanotoxicology. (2021).
15(7):934-950
34380002
PM2021.09Effects of dietary exposure to the engineered nanomaterials CeO2, SiO2, Ag, and TiO2 on the murine gut microbiome.53.80

~~~

---
Viennois, Emilie; Chassaing, Benoit
Gut Microbes. (2018).
9(3):1-4
29437527
PM2018.02First victim, later aggressor: How the intestinal microbiota drives the pro-inflammatory effects of dietary emulsifiers?193.92

~~~

---
Limage, Rhodesherdeline et al.
Small. (2020).
16(21):e2000601
32338455
PM2020.05TiO2 Nanoparticles and Commensal Bacteria Alter Mucus Layer Thickness and Composition in a Gastrointestinal Tract Model.114.11

~~~

---
Yan, Sen et al.
Environ Pollut. (2022).
294:118676
34906595
PM2022.02Synergistic effect of ZnO NPs and imidacloprid on liver injury in male ICR mice: Increase the bioavailability of IMI by targeting the gut microbiota.00.00

~~~

---
Gerstner, K; Liesegang, A
J Anim Physiol Anim Nutr (Berl). (2018).
102 Suppl 1:43-46
29623686
PMC 2018.04Effect of a montmorillonite-bentonite-based product on faecal parameters of horses.51.10

~~~

---
Agans, Richard T et al.
Toxicol Sci. (2019).
172(2):411-416
31550005
PM2019.12Titanium Dioxide Nanoparticles Elicit Lower Direct Inhibitory Effect on Human Gut Microbiota Than Silver Nanoparticles.144.50

~~~

---
Patsiou, Danae et al.
Sci Total Environ. (2020).
715:136941
32041050
PM2020.05Exposure to Pb-halide perovskite nanoparticles can deliver bioavailable Pb but does not alter endogenous gut microbiota in zebrafish.62.21

~~~

---
Iwamoto, Junichi et al.
Hepatol Commun. (2021).
5(12):2052-2067
34558859
PM2021.12Western Diet Changes Gut Microbiota and Ameliorates Liver Injury in a Mouse Model with Human-Like Bile Acid Composition.32.80

~~~

---
Miclotte, Lisa et al.
Front Microbiol. (2020).
11:577474
33250870
PM2020.00Dietary Emulsifiers Alter Composition and Activity of the Human Gut Microbiota in vitro, Irrespective of Chemical or Natural Emulsifier Origin.82.60

~~~

---
Khurana, Himani et al.
Genomics. (2021).
113(2):815-826
33508444
PM2021.03Gut milieu shapes the bacterial communities of invasive silver carp.42.20

~~~

---
Swithers, Susan E
Appetite. (2015).
93:85-90
25828597
PM2015.10Artificial sweeteners are not the answer to childhood obesity.314.30

~~~

---
Wu, Chengfei et al.
Front Immunol. (2019).
10:1733
31417546
PM2019.00Modulation of Gut Microbiota by Low Methoxyl Pectin Attenuates Type 1 Diabetes in Non-obese Diabetic Mice.204.92

~~~

---
Peuranen, Seppo et al.
Br J Nutr. (2004).
91(6):905-14
15182394
PM2004.06Combination of polydextrose and lactitol affects microbial ecosystem and immune responses in rat gastrointestinal tract.201.12

~~~

---
Owens, B et al.
Br Poult Sci. (2008).
49(2):202-12
18409095
PM2008.03Effects of different feed additives alone or in combination on broiler performance, gut microflora and ileal histology.161.10

~~~

---
Han, Xu et al.
Sci Total Environ. (2014).
487:822-9
24462134
PM2014.07Monitoring the developmental impact of copper and silver nanoparticle exposure in Drosophila and their microbiomes.222.65

~~~

---
Chen, Pubo et al.
Sci Total Environ. (2022).
806(Pt 4):150963
34656599
PM2022.02Environmental effects of nanoparticles on the ecological succession of gut microbiota across zebrafish development.33.30

~~~

---
Lahtinen, Sampo J et al.
Biosci Biotechnol Biochem. (2010).
74(10):2016-21
20944426
PM2010.00Effect of molecule branching and glycosidic linkage on the degradation of polydextrose by gut microbiota.100.83

~~~

---
Jin, Mingliang et al.
Liver Int. (2019).
39(8):1437-1447
30919578
PM2019.08Faecal microbiota from patients with cirrhosis has a low capacity to ferment non-digestible carbohydrates into short-chain fatty acids.3410.00

~~~

---
Aguirre, Marisol et al.
PLoS One. (2014).
9(11):e113864
25426858
PM2014.00In vitro characterization of the impact of different substrates on metabolite production, energy extraction and composition of gut microbiota from lean and obese subjects.283.11

~~~

---
Ma, Wenjie et al.
Genome Med. (2021).
13(1):102
34140026
PM2021.06Dietary fiber intake, the gut microbiome, and chronic systemic inflammation in a cohort of adult men.1811.40

~~~

---
Míguez, Beatriz et al.
Food Funct. (2020).
11(11):9984-9999
33119011
PM2020.11Prebiotic effects of pectooligosaccharides obtained from lemon peel on the microbiota from elderly donors using an in vitro continuous colon model (TIM-2).41.80

~~~

---
Zhang, Shanshan et al.
Arch Toxicol. (2020).
94(4):1173-1190
32162007
PM2020.04Titanium dioxide nanoparticles via oral exposure leads to adverse disturbance of gut microecology and locomotor activity in adult mice.134.72

~~~

---
Jiang, Y et al.
J Dairy Sci. (2020).
103(2):1431-1447
31785878
PM2020.02Effect of sequestering agents based on a Saccharomyces cerevisiae fermentation product and clay on the ruminal bacterial community of lactating dairy cows challenged with dietary aflatoxin B1.31.00

~~~

---
Elmén, Lisa et al.
Front Microbiol. (2020).
11:892
32499766
PM2020.00Dietary Emulsifier Sodium Stearoyl Lactylate Alters Gut Microbiota in vitro and Inhibits Bacterial Butyrate Producers.61.90

~~~

---
Lei, Chao et al.
iScience. (2021).
24(6):102511
34142028
PM2021.06Lemon exosome-like nanoparticles enhance stress survival of gut bacteria by RNase P-mediated specific tRNA decay.106.30

~~~

---
Zhao, Haiping et al.
Curr Microbiol. (2017).
74(10):1169-1177
28710513
PM2017.10Mink (Mustela vison) Gut Microbial Communities from Northeast China and Its Internal Relationship with Gender and Food Additives.30.60

~~~

---
Brusick, David et al.
Regul Toxicol Pharmacol. (2009).
55(1):6-12
19567260
PM2009.10Expert panel report on a study of Splenda in male rats.90.70

~~~

---
Pineda, Lane et al.
Arch Anim Nutr. (2012).
66(5):416-29
22889095
PMC 2012.10Effect of silver nanoparticles on growth performance, metabolism and microbial profile of broiler chickens.222.14

~~~

---
Xu, Jie et al.
Anim Microbiome. (2021).
3(1):45
34217374
PM2021.07Metatranscriptomic analysis of colonic microbiota's functional response to different dietary fibers in growing pigs.21.30

~~~

---
Zhao, Lijun et al.
Front Nutr. (2021).
8:671353
33996881
PM2021.00Quercetin Ameliorates Gut Microbiota Dysbiosis That Drives Hypothalamic Damage and Hepatic Lipogenesis in Monosodium Glutamate-Induced Abdominal Obesity.94.30

~~~

---
Coutiño-Hernández, Diana et al.
Food Res Int. (2022).
151:110856
34980392
PM2022.01Modulation of gut microbiota by Mantequilla and Melipona honeys decrease low-grade inflammation caused by high fructose corn syrup or sucrose in rats.22.00

~~~

---
Tyagi, Anuj et al.
Arch Microbiol. (2019).
201(3):295-303
30604012
PM2019.04Shotgun metagenomics offers novel insights into taxonomic compositions, metabolic pathways and antibiotic resistance genes in fish gut microbiome.123.20

~~~

---
Vadalasetty, Krishna Prasad et al.
BMC Vet Res. (2018).
14(1):1
29291752
PM2018.01Influence of silver nanoparticles on growth and health of broiler chickens after infection with Campylobacter jejuni.132.60

~~~

---
Wang, Lirui et al.
J Biomed Nanotechnol. (2019).
15(4):779-789
30841970
PM2019.04Impact of Short-Term Exposure of AuNCs on the Gut Microbiota of BALB/c Mice.20.50

~~~

---
Bian, Xiaoming et al.
Food Chem Toxicol. (2017).
107(Pt B):530-539
28472674
PM2017.09Saccharin induced liver inflammation in mice by altering the gut microbiota and its metabolic functions.478.86

~~~

---
Singh, Ratnesh Kumar et al.
SOJ Microbiol Infect Dis. (2016).
4(1)
27430014
PM2016.00Food Additive P-80 Impacts Mouse Gut Microbiota Promoting Intestinal Inflammation, Obesity and Liver Dysfunction.202.84

~~~

---
Wang, Chao et al.
Biol Trace Elem Res. (2017).
178(2):276-282
28120304
PM2017.08Evaluation of Long-Term Toxicity of Oral Zinc Oxide Nanoparticles and Zinc Sulfate in Mice.142.61

~~~

---
Zhou, Xianjie et al.
Curr Microbiol. (2019).
76(5):590-596
30859288
PM2019.05Oral Nickel Changes of Intestinal Microflora in Mice.30.80

~~~

---
Moro Cantu-Jungles, Thaisa et al.
Carbohydr Polym. (2019).
206:389-395
30553337
PM2019.02Soluble xyloglucan generates bigger bacterial community shifts than pectic polymers during in vitro fecal fermentation.123.11

~~~

---
Toda, Tsuguto; Yoshino, Shin
J Immunotoxicol. (2016).
13(5):723-8
27086695
PM2016.09Amorphous nanosilica particles block induction of oral tolerance in mice.60.90

~~~

---
García-Rodríguez, Alba et al.
Environ Sci Nano. (2020).
7(12):3940-3964
33815806
PM2020.12The Role of Metal Oxide Nanoparticles, Escherichia coli, and Lactobacillus rhamnosus on Small Intestinal Enzyme Activity.21.00

~~~

---
Holder, Mary K et al.
Sci Rep. (2019).
9(1):172
30655577
PM2019.01Dietary emulsifiers consumption alters anxiety-like and social-related behaviors in mice in a sex-dependent manner.164.05

~~~

---
Partridge, D et al.
Nutr Bull. (2019).
44(4):329-349
31866761
PM2019.12Food additives: Assessing the impact of exposure to permitted emulsifiers on bowel and metabolic health - introducing the FADiets study.185.81

~~~

---
Kamm, Michael A
J Gastroenterol Hepatol. (2020).
35(1):6-7
31965661
PM2020.01Processed food affects the gut microbiota: The revolution has started.20.70

~~~

---
Wells, J E et al.
J Appl Microbiol. (2010).
108(1):306-14
19614855
PM2010.01The effects of dietary additives on faecal levels of Lactobacillus spp., coliforms, and Escherichia coli, and faecal prevalence of Salmonella spp. and Campylobacter spp. in US production nursery swine.40.30

~~~

---
Shil, Aparna; Chichger, Havovi
Int J Mol Sci. (2021).
22(10)
34063332
PM2021.05Artificial Sweeteners Negatively Regulate Pathogenic Characteristics of Two Model Gut Bacteria, E. coli and E. faecalis.95.40

~~~

---
Zou, Ling et al.
Proc Natl Acad Sci U S A. (2020).
117(27):16009-16018
32571913
PM2020.07Bacterial metabolism rescues the inhibition of intestinal drug absorption by food and drug additives.135.20

~~~

---
Gao, Yanjun et al.
Nanoscale. (2021).
13(3):1842-1862
33438704
PM2021.01Impact of titanium dioxide nanoparticles on intestinal community in 2,4,6-trinitrobenzenesulfonic acid (TNBS)-induced acute colitis mice and the intervention effect of vitamin E.31.50

~~~

---
Markus, Victor et al.
Int J Mol Sci. (2021).
22(18)
34576027
PM2021.09Inhibitory Effects of Artificial Sweeteners on Bacterial Quorum Sensing.43.00

~~~

---
Spinler, Jennifer K et al.
Trends Microbiol. (2019).
27(2):90-93
30600139
PM2019.02Planting the Microbiome.61.50

~~~

---
Harpaz, Dorin et al.
Molecules. (2018).
23(10)
30257473
PM2018.09Measuring Artificial Sweeteners Toxicity Using a Bioluminescent Bacterial Panel.122.81

~~~

---
Yan, Jun et al.
Environ Toxicol Pharmacol. (2020).
80:103485
32891757
PM2020.11Toxic effects of the food additives titanium dioxide and silica on the murine intestinal tract: Mechanisms related to intestinal barrier dysfunction involved by gut microbiota.167.40

~~~

---
Cao, Xiaoqiong et al.
Small. (2020).
16(36):e2001858
32519440
PM2020.09Foodborne Titanium Dioxide Nanoparticles Induce Stronger Adverse Effects in Obese Mice than Non-Obese Mice: Gut Microbiota Dysbiosis, Colonic Inflammation, and Proteome Alterations.2711.60

~~~

---
Collins, Sineaid M et al.
FEMS Microbiol Ecol. (2021).
97(8)
34251412
PM2021.07Development of a prebiotic blend to influence in vitro fermentation effects, with a focus on propionate, in the gut.00.00

~~~

---
Uerlings, Julie et al.
J Sci Food Agric. (2019).
99(13):5720-5733
31152455
PM2019.10Fermentation capacities of fructan- and pectin-rich by-products and purified fractions via an in vitro piglet faecal model.72.22

~~~

---
Madureira, Ana Raquel et al.
Food Funct. (2016).
7(1):516-29
26606879
PM2016.01Fermentation of bioactive solid lipid nanoparticles by human gut microflora.40.60

~~~

---
Lee, Chang-Muk et al.
J Biotechnol. (2018).
279:47-54
29730317
PM2018.08Isolation and characterization of a halotolerant and protease-resistant α-galactosidase from the gut metagenome of Hermetia illucens.81.80

~~~

---
Zhao, Haobin et al.
Food Funct. (2018).
9(11):5580-5587
30335105
PM2018.11Potential of iturins as functional agents: safe, probiotic, and cytotoxic to cancer cells.71.70

~~~

---
Li, Juan et al.
Nanoscale. (2018).
10(16):7736-7745
29658026
PM2018.04Oral administration of rutile and anatase TiO2 nanoparticles shifts mouse gut microbiota structure.326.73

~~~

---
Chung, Wing Sun Faith et al.
FEMS Microbiol Ecol. (2019).
95(1)
30304332
PM2019.01Impact of carbohydrate substrate complexity on the diversity of the human colonic microbiota.205.02

~~~

---
Silva Júnior, Cláudio D et al.
J Anim Sci. (2020).
98(5)
32280983
PM2020.05The use of an alternative feed additive, containing benzoic acid, thymol, eugenol, and piperine, improved growth performance, nutrient and energy digestibility, and gut health in weaned piglets.83.00

~~~

---
O'Connor, Dominic et al.
Food Funct. (2021).
12(2):442-465
33325948
PM2021.01A rational review on the effects of sweeteners and sweetness enhancers on appetite, food reward and metabolic/adiposity outcomes in adults.63.00

~~~

---
Chen, Zhangjian et al.
Nanoscale. (2019).
11(46):22398-22412
31738363
PM2019.11Effects of oral exposure to titanium dioxide nanoparticles on gut microbiota and gut-associated metabolism in vivo.309.51

~~~

---
Li, Mingzhu; Zhang, Chengdong
Sci Total Environ. (2021).
756:143983
33302073
PM2021.02Are silver nanoparticles better than triclosan as a daily antimicrobial? Answers from the perspectives of gut microbiome disruption and pathogenicity.31.60

~~~

---
Paßlack, Nadine et al.
Arch Anim Nutr. (2021).
75(4):311-327
34253098
PM2021.08Impact of the dietary inclusion of dried food residues on the apparent nutrient digestibility and the intestinal microbiota of dogs.21.40

~~~

---
Furuhashi, Hirotaka et al.
J Gastroenterol Hepatol. (2020).
35(1):110-117
31359491
PM2020.01Dietary emulsifier polysorbate-80-induced small-intestinal vulnerability to indomethacin-induced lesions via dysbiosis.72.32

~~~

---
Farup, Per G et al.
J Obes. (2019).
2019:4608315
31662903
PM2019.00Are Nonnutritive Sweeteners Obesogenic? Associations between Diet, Faecal Microbiota, and Short-Chain Fatty Acids in Morbidly Obese Subjects.102.40

~~~

---
García, G et al.
Benef Microbes. (2016).
7(5):659-668
27892709
PM2016.11Gut-borne Saccharomyces cerevisiae, a promising candidate for the formulation of feed additives, modulates immune system and gut microbiota.40.60

~~~

---
Chung, Wing Sun Faith et al.
FEMS Microbiol Ecol. (2017).
93(11)
29029078
PM2017.11Prebiotic potential of pectin and pectic oligosaccharides to promote anti-inflammatory commensal bacteria in the human colon.7113.78

~~~

---
Robert, Chloé et al.
Mol Nutr Food Res. (2021).
65(9):e2001068
33742729
PM2021.05Impact of Rapeseed and Soy Lecithin on Postprandial Lipid Metabolism, Bile Acid Profile, and Gut Bacteria in Mice.21.20

~~~

---
Cheng, Shujie et al.
Nanoscale. (2020).
12(28):15348-15363
32648873
PM2020.07Orally administered mesoporous silica capped with the cucurbit[8]uril complex to combat colitis and improve intestinal homeostasis by targeting the gut microbiota.41.60

~~~

---
Tingirikari, Jagan Mohan Rao
Curr Microbiol. (2019).
76(12):1452-1460
31586220
PM2019.12In-Vitro Prebiotic Analysis of Microbiota Accessible Pectic Polysaccharides.61.92

~~~

---
Chen, Zhangjian et al.
Part Fibre Toxicol. (2019).
16(1):48
31881974
PM2019.12Hepatotoxicity and the role of the gut-liver axis in rats after oral administration of titanium dioxide nanoparticles.216.80

~~~

---
Hashimoto, Yoshitaka et al.
J Diabetes Investig. (2020).
11(6):1623-1634
32412684
PM2020.11Intake of sucrose affects gut dysbiosis in patients with type 2 diabetes.2210.20

~~~

---
Tiffany, Connor R et al.
Microbiome. (2021).
9(1):174
34412707
PM2021.08The metabolic footprint of Clostridia and Erysipelotrichia reveals their role in depleting sugar alcohols in the cecum.32.10

~~~

---
Berding, Kirsten et al.
J Pediatr Gastroenterol Nutr. (2016).
63(6):688-697
27031373
PM2016.12Prebiotics and Bioactive Milk Fractions Affect Gut Development, Microbiota, and Neurotransmitter Expression in Piglets.304.90

~~~

---
Martinov, Jelena et al.
Food Res Int. (2017).
100(Pt 2):132-136
28888433
PM2017.10Apple pectin-derived oligosaccharides produce carbon dioxide radical anion in Fenton reaction and prevent growth of Escherichia coli and Staphylococcus aureus.40.80

~~~

---
Moore, Jeremy P et al.
Appl Environ Microbiol. (2019).
85(16)
31175192
PM2019.08Inverted Regulation of Multidrug Efflux Pumps, Acid Resistance, and Porins in Benzoate-Evolved Escherichia coli K-12.51.50

~~~

---
O'Brien, Patrick et al.
Int J Mol Sci. (2020).
22(1)
33375525
PM2020.12Chronic Effects of a High Sucrose Diet on Murine Gastrointestinal Nutrient Sensor Gene and Protein Expression Levels and Lipid Metabolism.31.40

~~~

---
Metzler-Zebeli, Barbara U et al.
J Anim Sci. (2020).
98(1)
31944242
PM2020.01A multicomponent mycotoxin deactivator modifies the response of the jejunal mucosal and cecal bacterial community to deoxynivalenol contaminated feed and oral lipopolysaccharide challenge in chickens1.31.00

~~~

---
Praet, Jessy et al.
Environ Microbiol. (2018).
20(1):214-227
29076622
PM2018.01Large-scale cultivation of the bumblebee gut microbiota reveals an underestimated bacterial species diversity capable of pathogen inhibition.153.00

~~~

---
Chen, Lianguo et al.
Environ Pollut. (2018).
234:307-317
29190539
PM2018.03Dysbiosis of gut microbiota by chronic coexposure to titanium dioxide nanoparticles and bisphenol A: Implications for host health in zebrafish.285.81

~~~

---
Marana, Moonika Haahr et al.
J Hazard Mater. (2022).
424(Pt D):127705
34802818
PM2022.02Plastic nanoparticles cause mild inflammation, disrupt metabolic pathways, change the gut microbiota and affect reproduction in zebrafish: A full generation multi-omics study.00.00

~~~

---
Mack, A et al.
Gut Microbes. (2020).
11(3):620-631
31809634
PM2020.05Changes in gut microbial metagenomic pathways associated with clinical outcomes after the elimination of malabsorbed sugars in an IBS cohort.51.90

~~~

---
Nejrup, Rikke Guldhammer et al.
Sci Rep. (2017).
7(1):3975
28638093
PM2017.06Fatty acid composition and phospholipid types used in infant formulas modifies the establishment of human gut bacteria in germ-free mice.193.41

~~~

---
Song, Can et al.
Int J Biol Macromol. (2022).
194:412-421
34813784
PM2022.01Characterization and prebiotic properties of pectin polysaccharide from Clausena lansium (Lour.) Skeels fruit.44.00

~~~

---
Taha-Abdelaziz, Khaled et al.
Sci Rep. (2018).
8(1):12076
30104702
PM2018.08PLGA-encapsulated CpG ODN and Campylobacter jejuni lysate modulate cecal microbiota composition in broiler chickens experimentally challenged with C. jejuni.30.70

~~~

---
Zhao, Yu et al.
J Agric Food Chem. (2021).
69(34):9788-9799
34382390
PM2021.09Lactobacillus rhamnosus GG Ameliorated Long-Term Exposure to TiO2 Nanoparticles Induced Microbiota-Mediated Liver and Colon Inflammation and Fructose-Caused Metabolic Abnormality in Metabolism Syndrome Mice.53.80

~~~

---
Ciudad-Mulero, María et al.
Adv Food Nutr Res. (2019).
90:83-134
31445601
PM2019.00Dietary fiber sources and human benefits: The case study of cereal and pseudocereals.174.20

~~~

---
Tashiro, Hiroki et al.
Am J Respir Cell Mol Biol. (2020).
62(4):503-512
31913653
PM2020.04Sex Differences in the Impact of Dietary Fiber on Pulmonary Responses to Ozone.82.90

~~~

---
Viñado, A et al.
Poult Sci. (2020).
99(11):5653-5662
33142483
PM2020.11Soybean lecithin as an alternative energy source for grower and finisher broiler chickens: impact on performance, fatty acid digestibility, gut health, and abdominal fat saturation degree.31.40

~~~

---
Chaplin, Alice et al.
Sci Rep. (2020).
10(1):13786
32796856
PM2020.08Systemically-delivered biodegradable PLGA alters gut microbiota and induces transcriptomic reprogramming in the liver in an obesity mouse model.31.20

~~~

---
Qian, Mingrong et al.
Ecotoxicol Environ Saf. (2021).
221:112464
34198189
PM2021.09Sub-chronic exposure to antibiotics doxycycline, oxytetracycline or florfenicol impacts gut barrier and induces gut microbiota dysbiosis in adult zebrafish (Daino rerio).64.50

~~~

---
Liu, Yafei et al.
Appl Environ Microbiol. (2020).
86(2)
31676481
PM2020.01Substrate Use Prioritization by a Coculture of Five Species of Gut Bacteria Fed Mixtures of Arabinoxylan, Xyloglucan, β-Glucan, and Pectin.124.01

~~~

---
Chassaing, Benoit et al.
Gastroenterology. (2022).
162(3):743-756
34774538
PMC 2022.03Randomized Controlled-Feeding Study of Dietary Emulsifier Carboxymethylcellulose Reveals Detrimental Impacts on the Gut Microbiota and Metabolome.1922.80

~~~

---
Zhao, Meiqi et al.
Exp Ther Med. (2021).
22(5):1312
34630666
PM2021.11Dietary Bacillus subtilis supplementation alleviates alcohol-induced liver injury by maintaining intestinal integrity and gut microbiota homeostasis in mice.21.70

~~~

---
Ashwell, Margaret et al.
Nutr Res Rev. (2020).
33(1):145-154
31928558
PM2020.06Expert consensus on low-calorie sweeteners: facts, research gaps and suggested actions.83.10

~~~

---
Bravard, Amélie et al.
Sci Rep. (2021).
11(1):16684
34404817
PM2021.08Metformin treatment for 8 days impacts multiple intestinal parameters in high-fat high-sucrose fed mice.10.70

~~~

---
García-Carrizo, Francisco et al.
Int J Obes (Lond). (2020).
44(3):715-726
31467421
PM2020.03Regulation of thermogenic capacity in brown and white adipocytes by the prebiotic high-esterified pectin and its postbiotic acetate.31.10

~~~

---
Mu, Wei et al.
J Agric Food Chem. (2019).
67(33):9382-9389
31361959
PM2019.08Effect of Long-Term Intake of Dietary Titanium Dioxide Nanoparticles on Intestine Inflammation in Mice.257.31

~~~

---
Zhang, Zhi et al.
mSphere. (2021).
6(5):e0054521
34585961
PM2021.10In Situ Live Imaging of Gut Microbiota.21.60

~~~

---
Lu, Xiaodan et al.
Food Funct. (2021).
12(11):4825-4841
33949580
PM2021.06DHA-enriched phospholipids from large yellow croaker roe regulate lipid metabolic disorders and gut microbiota imbalance in SD rats with a high-fat diet.21.30

~~~

---
Viennois, Emilie; Chassaing, Benoit
Int J Mol Sci. (2021).
22(5)
33807577
PM2021.03Consumption of Select Dietary Emulsifiers Exacerbates the Development of Spontaneous Intestinal Adenoma.31.60

~~~

---
Syeda, Tauqeerunnisa et al.
Nutrients. (2021).
14(1)
35010897
PM2021.12Bioactive Foods Decrease Liver and Brain Alterations Induced by a High-Fat-Sucrose Diet through Restoration of Gut Microbiota and Antioxidant Enzymes.32.80

~~~

---
Adamberg, Kaarel et al.
Front Bioeng Biotechnol. (2020).
8:24
32117913
PM2020.00Use of Changestat for Growth Rate Studies of Gut Microbiota.31.00

~~~

---
Forssten, Sofia D et al.
Microb Ecol Health Dis. (2015).
26:27988
26468159
PM2015.00The effect of polydextrose and probiotic lactobacilli in a Clostridium difficile-infected human colonic model.81.00

~~~

---
Ahmed, Ishfaq et al.
Int J Mol Sci. (2021).
23(1)
35008767
PM2021.12Dietary Interventions Ameliorate Infectious Colitis by Restoring the Microbiome and Promoting Stem Cell Proliferation in Mice.32.80

~~~

---
Tamura, Motoi et al.
Int J Mol Sci. (2013).
14(12):23993-4007
24336061
PM2013.12Xylitol affects the intestinal microbiota and metabolism of daidzein in adult male mice.131.43

~~~

---
Chi, Liang et al.
Molecules. (2018).
23(2)
29425148
PM2018.02Effects of the Artificial Sweetener Neotame on the Gut Microbiome and Fecal Metabolites in Mice.255.12

~~~

---
Wu, Jianjun et al.
Carbohydr Polym. (2020).
248:116780
32919569
PM2020.11Roles of gut microbiota and metabolites in a homogalacturonan-type pectic polysaccharide from Ficus pumila Linn. fruits mediated amelioration of obesity.73.20

~~~

---
Mortensen, Alicja et al.
EFSA J. (2017).
15(7):e04866
32625540
PM2017.07Re-evaluation of pectin (E 440i) and amidated pectin (E 440ii) as food additives.40.70

~~~

---
Tashiro, Hiroki et al.
Am J Respir Cell Mol Biol. (2019).
61(6):702-712
31144984
PM2019.12Microbiota Contribute to Obesity-related Increases in the Pulmonary Response to Ozone.175.51

~~~

---
Mas, Núria et al.
Chemistry. (2013).
19(4):1346-56
23225567
PM2013.01Enzyme-responsive silica mesoporous supports capped with azopyridinium salts for controlled delivery applications.20.20

~~~

---
Sredkova, Pavlina et al.
Cent Eur J Immunol. (2020).
45(3):248-255
33437176
PM2020.00Prebiotics can change immunomodulatory properties of probiotics.00.00

~~~

---
Fernández, L et al.
Environ Pollut. (2020).
266(Pt 3):115181
32683092
PM2020.11Iron oxide-mediated photo-Fenton catalysis in the inactivation of enteric bacteria present in wastewater effluents at neutral pH.20.90

~~~

---
Chung, Wing Sun Faith et al.
BMC Biol. (2016).
14:3
26754945
PM2016.01Modulation of the human gut microbiota by dietary fibres occurs at the species level.12618.013

~~~

---
Pu, Junning et al.
Biomed Res Int. (2018).
2018:1829632
30225247
PM2018.00Protective Effects of Benzoic Acid, Bacillus Coagulans, and Oregano Oil on Intestinal Injury Caused by Enterotoxigenic Escherichia coli in Weaned Piglets.163.11

~~~

---
Eymard-Vernain, Elise et al.
PLoS One. (2020).
15(10):e0240510
33045025
PM2020.00ZnO and TiO2 nanoparticles alter the ability of Bacillus subtilis to fight against a stress.31.00

~~~

---
Thumu, Surya Chandra Rao; Halami, Prakash M
Food Res Int. (2019).
116:1066-1075
30716890
PM2019.02Conjugal transfer of erm(B) and multiple tet genes from Lactobacillus spp. to bacterial pathogens in animal gut, in vitro and during food fermentation.61.50

~~~

---
Shen, Dan et al.
J Food Biochem. (2021).
45(12):e13991
34778991
PM2021.12Effects of L-arabinose by hypoglycemic and modulating gut microbiome in a high-fat diet- and streptozotocin-induced mouse model of type 2 diabetes mellitus.21.80

~~~

---
Rousta, Esmat et al.
Nutrients. (2021).
13(10)
34684567
PM2021.10The Emulsifier Carboxymethylcellulose Induces More Aggressive Colitis in Humanized Mice with Inflammatory Bowel Disease Microbiota Than Polysorbate-80.32.40

~~~

---


32615579
PM.--00.00

~~~

---
Song, Ru et al.
Mar Drugs. (2018).
16(1)
29324644
PM2018.01Nanocomposite of Half-Fin Anchovy Hydrolysates/Zinc Oxide Nanoparticles Exhibits Actual Non-Toxicity and Regulates Intestinal Microbiota, Short-Chain Fatty Acids Production and Oxidative Status in Mice.61.21

~~~

---
Shtriker, Miriam G et al.
Nutrition. (2018).
46:134-142.e3
28993009
PM2018.02Fenugreek galactomannan and citrus pectin improve several parameters associated with glucose metabolism and modulate gut microbiota in mice.183.73

~~~

---
Pongking, Thatsanapong et al.
PLoS One. (2020).
15(4):e0231237
32267892
PM2020.00A combination of monosodium glutamate and high-fat and high-fructose diets increases the risk of kidney injury, gut dysbiosis and host-microbial co-metabolism.41.30

~~~

---
Martel, Jan et al.
Nanomedicine (Lond). (2018).
13(14):1787-1793
29786466
PM2018.07Mineralo-organic nanoparticles in health and disease: an overview of recent findings.61.30

~~~

---
Cheng, Weiwei et al.
Front Microbiol. (2017).
8:1750
28979240
PM2017.00Effect of Functional Oligosaccharides and Ordinary Dietary Fiber on Intestinal Microbiota Diversity.396.40

~~~

---
Kiilerich, Pia et al.
Am J Physiol Endocrinol Metab. (2016).
310(11):E886-99
27026084
PM2016.06Effect of a long-term high-protein diet on survival, obesity development, and gut microbiota in mice.243.60

~~~

---
Mortensen, Alicja et al.
EFSA J. (2017).
15(6):e04864
32625526
PM2017.06Re-evaluation of konjac gum (E 425 i) and konjac glucomannan (E 425 ii) as food additives.20.40

~~~

---
van Leeuwen, P et al.
Br Poult Sci. (2004).
45(1):41-8
15115199
PM2004.02Morphology of the small intestinal mucosal surface of broilers in relation to age, diet formulation, small intestinal microflora and performance.80.40

~~~

---
Okazaki, Yukako; Katayama, Tetsuyuki
Nutr Res. (2020).
74:45-51
31945606
PM2020.02Phytic acid actions on hepatic lipids and gut microbiota in rats fed a diet high in sucrose is influenced by dietary fat level.31.00

~~~

---


31994113
PM.--00.00

~~~

---
Siczek, Krzysztof et al.
Pharmacol Rep. (2017).
69(3):386-392
28267639
PM2017.06Evaluation of anti-inflammatory effect of silver-coated glass beads in mice with experimentally induced colitis as a new type of treatment in inflammatory bowel disease.81.40

~~~

---
Giannenas, I et al.
Asian-Australas J Anim Sci. (2014).
27(2):225-36
25049947
PM2014.02Dietary Supplementation of Benzoic Acid and Essential Oil Compounds Affects Buffering Capacity of the Feeds, Performance of Turkey Poults and Their Antioxidant Status, pH in the Digestive Tract, Intestinal Microbiota and Morphology.293.32

~~~

---
Prasai, Tanka P et al.
PLoS One. (2016).
11(4):e0154061
27116607
PM2016.00Biochar, Bentonite and Zeolite Supplemented Feeding of Layer Chickens Alters Intestinal Microbiota and Reduces Campylobacter Load.182.50

~~~

---
Cueva, Carolina et al.
Food Chem Toxicol. (2019).
132:110657
31276746
PM2019.10Gastrointestinal digestion of food-use silver nanoparticles in the dynamic SIMulator of the GastroIntestinal tract (simgi®). Impact on human gut microbiota.144.31

~~~

---
Yadav, Monika et al.
Front Microbiol. (2020).
11:588545
33193247
PM2020.00Catabolic Machinery of the Human Gut Microbes Bestow Resilience Against Vanillin Antimicrobial Nature.61.91

~~~

---
Abernathy, Breann E et al.
J Nutr. (2021).
151(2):352-360
33382431
PM2021.02Polylactose Exhibits Prebiotic Activity and Reduces Adiposity and Nonalcoholic Fatty Liver Disease in Rats Fed a High-Fat Diet.21.00

~~~

---
Allen, Jacob M et al.
Front Immunol. (2019).
10:1774
31417554
PM2019.00Dietary Oligosaccharides Attenuate Stress-Induced Disruptions in Immune Reactivity and Microbial B-Vitamin Metabolism.51.20

~~~

---
Wu, Weida et al.
Microorganisms. (2020).
8(4)
32276396
PM2020.04Modulation of Pectin on Mucosal Innate Immune Function in Pigs Mediated by Gut Microbiota.31.10

~~~

---
Sizentsov, Aleksey Nikolayevich et al.
Environ Sci Pollut Res Int. (2018).
25(16):15765-15773
29582323
PM2018.06Assessment of biotoxicity of Cu nanoparticles with respect to probiotic strains of microorganisms and representatives of the normal flora of the intestine of broiler chickens.40.91

~~~

---
Burri, Stina et al.
Biomed Pharmacother. (2021).
135:111133
33383374
PM2021.03Processed meat products with added plant antioxidants affect the microbiota and immune response in C57BL/6JRj mice with cyclically induced chronic inflammation.31.60

~~~

---
Finney, Michelle et al.
Eur J Nutr. (2007).
46(6):307-14
17623227
PMC 2007.09Effects of low doses of lactitol on faecal microflora, pH, short chain fatty acids and gastrointestinal symptomology.161.01

~~~

---
Zhao, Zhen-Xiong et al.
Theranostics. (2018).
8(21):5945-5959
30613273
PM2018.00Gut-brain axis metabolic pathway regulates antidepressant efficacy of albiflorin.326.31

~~~

---
Kolba, Nikolai et al.
Food Chem Toxicol. (2020).
135:110896
31654707
PM2020.01Intra-amniotic administration (Gallus gallus) of TiO2, SiO2, and ZnO nanoparticles affect brush border membrane functionality and alters gut microflora populations.72.30

~~~

---
Mansoorian, Bahareh et al.
Int J Environ Res Public Health. (2019).
16(2)
30669671
PM2019.01Impact of Fermentable Fibres on the Colonic Microbiota Metabolism of Dietary Polyphenols Rutin and Quercetin.112.81

~~~

---
Xu, Yinglei et al.
J Anim Physiol Anim Nutr (Berl). (2020).
104(2):597-605
31891214
PM2020.03Effects of chitosan nanoparticle supplementation on growth performance, humoral immunity, gut microbiota and immune responses after lipopolysaccharide challenge in weaned pigs.93.20

~~~

---
Yunes, R A et al.
Anaerobe. (2016).
42:197-204
27794467
PM2016.12GABA production and structure of gadB/gadC genes in Lactobacillus and Bifidobacterium strains from human microbiota.8914.60

~~~

---
Lamichhane, Santosh et al.
J Agric Food Chem. (2014).
62(40):9944-51
25231382
PMC 2014.10Impact of dietary polydextrose fiber on the human gut metabolome.101.22

~~~

---
Li, Zhongzhen et al.
Fish Shellfish Immunol. (2019).
89:564-573
30991148
PM2019.06Effects of prebiotic mixtures on growth performance, intestinal microbiota and immune response in juvenile chu's croaker, Nibea coibor.72.00

~~~

---
Lee, Sunhye et al.
Nutrients. (2019).
11(9)
31443365
PM2019.08Beneficial Effects of Non-Encapsulated or Encapsulated Probiotic Supplementation on Microbiota Composition, Intestinal Barrier Functions, Inflammatory Profiles, and Glucose Tolerance in High Fat Fed Rats.123.50

~~~

---
Han, Jie et al.
Sci Rep. (2019).
9(1):17860
31780788
PM2019.11Integrative analysis of the gut microbiota and metabolome in rats treated with rice straw biochar by 16S rRNA gene sequencing and LC/MS-based metabolomics.103.20

~~~

---
Xu, Chunlan et al.
Front Microbiol. (2018).
9:1129
29967593
PM2018.00Biogenic Synthesis of Novel Functionalized Selenium Nanoparticles by Lactobacillus casei ATCC 393 and Its Protective Effects on Intestinal Barrier Dysfunction Caused by Enterotoxigenic Escherichia coli K88.254.91

~~~

---
Singh, P et al.
Carbohydr Polym. (2017).
175:87-95
28917929
PM2017.11Development of carboxymethyl cellulose-chitosan hybrid micro- and macroparticles for encapsulation of probiotic bacteria.101.90

~~~

---
Van den Abbeele, Pieter et al.
Nutrients. (2020).
12(7)
32610452
PM2020.06A Novel Non-Digestible, Carrot-Derived Polysaccharide (cRG-I) Selectively Modulates the Human Gut Microbiota while Promoting Gut Barrier Integrity: An Integrated in Vitro Approach.135.02

~~~

---
Younes, Maged et al.
EFSA J. (2018).
16(6):e05296
32625935
PM2018.06Re-evaluation of gellan gum (E 418) as food additive.30.70

~~~

---
Sánchez-Tapia, Mónica et al.
Gut Microbes. (2020).
12(1):1801301
32804018
PM2020.11The development of metabolic endotoxemia is dependent on the type of sweetener and the presence of saturated fat in the diet.167.41

~~~

---
Call, Lee et al.
Microbiome. (2018).
6(1):111
29921329
PM2018.06Metabolomic signatures distinguish the impact of formula carbohydrates on disease outcome in a preterm piglet model of NEC.163.50

~~~

---
Hashem, Nesrein M; Shehata, Mohamed G
Animals (Basel). (2021).
11(7)
34203524
PM2021.06Antioxidant and Antimicrobial Activity of Cleomedroserifolia (Forssk.) Del. and Its Biological Effects on Redox Status, Immunity, and Gut Microflora.21.30

~~~

---
Nielsen, Christina K et al.
Front Microbiol. (2016).
7:1878
27920774
PM2016.00Effects of Tween 80 on Growth and Biofilm Formation in Laboratory Media.213.02

~~~

---
Arne, A; Ilgaza, A
Vet World. (2021).
14(11):2883-2888
35017835
PM2021.11Prebiotic and synbiotic effect on rumen papilla length development and rumen pH in 12-week-old calves.21.70

~~~

---
Larsen, Nadja et al.
Food Res Int. (2019).
125:108644
31554129
PM2019.11Effect of potato fiber on survival of Lactobacillus species at simulated gastric conditions and composition of the gut microbiota in vitro.51.60

~~~

---
Alfilasari, Nisa et al.
Curr Microbiol. (2021).
78(8):3010-3019
34115195
PM2021.08Gut Health Function of Instant Dehydrated Rice Sticks Substituted with Resistant Starch Types 2 and 4.00.00

~~~

---
Maragkoudaki, Xanthi et al.
Int J Obes (Lond). (2020).
44(12):2382-2393
33033395
PM2020.12Supplementation with a prebiotic (polydextrose) in obese mouse pregnancy improves maternal glucose homeostasis and protects against offspring obesity.73.41

~~~

---
Zhang, Tingting et al.
Environ Sci Technol. (2021).
55(10):6884-6896
33969685
PM2021.05Toxicity Assessment of Nano-ZnO Exposure on the Human Intestinal Microbiome, Metabolic Functions, and Resistome Using an In Vitro Colon Simulator.31.80

~~~

---
Demidov, D A et al.
Eksp Klin Gastroenterol. (2009)(2):65-73
19552023
PM2009.00[Experimental and clinical evaluation of a modified pectin-containing drugs in the treatment of intestinal insufficiency in peritonitis].00.00

~~~

---
Creamer, Kaitlin E et al.
Appl Environ Microbiol. (2017).
83(2)
27793830
PM2017.01Benzoate- and Salicylate-Tolerant Strains of Escherichia coli K-12 Lose Antibiotic Resistance during Laboratory Evolution.142.31

~~~

---
Gong, Wenbin et al.
Clin Transl Med. (2021).
11(2):e339
33634985
PM2021.02CCL4-mediated targeting of spleen tyrosine kinase (Syk) inhibitor using nanoparticles alleviates inflammatory bowel disease.10.50

~~~

---
Mortensen, Alicja et al.
EFSA J. (2017).
15(3):e04721
32625432
PM2017.03Re-evaluation of soybean hemicellulose (E 426) as a food additive.00.00

~~~

---
Li, Wenfeng et al.
J Agric Food Chem. (2018).
66(30):8015-8025
29987933
PM2018.08Pectin Alleviates High Fat (Lard) Diet-Induced Nonalcoholic Fatty Liver Disease in Mice: Possible Role of Short-Chain Fatty Acids and Gut Microbiota Regulated by Pectin.378.43

~~~

---
Wilding, Laura A et al.
Nanotoxicology. (2016).
10(5):513-20
26525505
PM2016.00Repeated dose (28-day) administration of silver nanoparticles of varied size and coating does not significantly alter the indigenous murine gut microbiome.263.76

~~~

---
Qu, Huan et al.
Can J Microbiol. (2018).
64(10):732-743
29775545
PM2018.10Effect of bamboo vinegar powder as an antibiotic alternative on the digesta bacteria communities of finishing pigs.20.50

~~~

---
Frankenfeld, Cara L et al.
Ann Epidemiol. (2015).
25(10):736-42.e4
26272781
PM2015.10High-intensity sweetener consumption and gut microbiome content and predicted gene function in a cross-sectional study of adults in the United States.385.24

~~~

---
Costa, Marcio C et al.
PLoS One. (2017).
12(2):e0171642
28222110
PM2017.00Different antibiotic growth promoters induce specific changes in the cecal microbiota membership of broiler chicken.6310.41

~~~

---
Hooda, Seema et al.
J Nutr. (2012).
142(7):1259-65
22649263
PMC 2012.07454 pyrosequencing reveals a shift in fecal microbiota of healthy adult men consuming polydextrose or soluble corn fiber.10510.06

~~~

---
Shumakova, A A et al.
Vopr Pitan. (2016).
85(3):27-35
30645900
PM2016.00[Toxicological evaluation of colloidal nano-sized silver stabilized polyvinylpyrrolidone. IV. Influence on intestinal microbiota, immune indexes].20.30

~~~

---
Havlik, Jaroslav et al.
Nutrients. (2020).
12(6)
32481553
PM2020.05Dietary Fibres Differentially Impact on the Production of Phenolic Acids from Rutin in an In Vitro Fermentation Model of the Human Gut Microbiota.51.91

~~~

---
Creswell, Richard et al.
Genome Med. (2020).
12(1):59
32620143
PM2020.07High-resolution temporal profiling of the human gut microbiome reveals consistent and cascading alterations in response to dietary glycans.83.20

~~~

---
McVey Neufeld, Karen-Anne et al.
Nutr Neurosci. (2019).
22(6):425-434
29173065
PM2019.06Neurobehavioural effects of Lactobacillus rhamnosus GG alone and in combination with prebiotics polydextrose and galactooligosaccharide in male rats exposed to early-life stress.328.92

~~~

---
Jiang, Tingting et al.
Nutrients. (2016).
8(3):126
26938554
PM2016.02Apple-Derived Pectin Modulates Gut Microbiota, Improves Gut Barrier Function, and Attenuates Metabolic Endotoxemia in Rats with Diet-Induced Obesity.497.19

~~~

---
Shibayama, J et al.
Benef Microbes. (2019).
10(7):811-821
31965847
PM2019.10Effect of rice bran fermented with Saccharomyces cerevisiae and Lactobacillus plantarum on gut microbiome of mice fed high-sucrose diet.30.90

~~~

---
Sung, Junsik et al.
Bio Protoc. (2019).
9(19)
31737748
PM2019.10Isolation, Purification, and Characterization of Ginger-derived Nanoparticles (GDNPs) from Ginger, Rhizome of Zingiber officinale.103.10

~~~

---
Ghoddusi, H B et al.
Anaerobe. (2007).
13(5-6):193-9
17669667
PM2007.00In vitro study on gas generation and prebiotic effects of some carbohydrates and their mixtures.100.60

~~~

---
Long, Dingpei; Merlin, Didier
Nanomedicine (Lond). (2021).
16(20):1741-1745
34196224
PM2021.08Micro- and nanotechnological delivery platforms for treatment of dysbiosis-related inflammatory bowel disease.10.70

~~~

---
Lew, Lee-Ching et al.
Probiotics Antimicrob Proteins. (2020).
12(2):545-562
31301059
PM2020.06Effects of Potential Probiotic Strains on the Fecal Microbiota and Metabolites of D-Galactose-Induced Aging Rats Fed with High-Fat Diet.41.50

~~~

---
Herfel, Tina M et al.
J Nutr. (2011).
141(12):2139-45
22013198
PM2011.12Polydextrose enrichment of infant formula demonstrates prebiotic characteristics by altering intestinal microbiota, organic acid concentrations, and cytokine expression in suckling piglets.201.84

~~~

---
Viennois, Emilie et al.
Cell Rep. (2020).
33(1):108229
33027647
PM2020.10Dietary Emulsifiers Directly Impact Adherent-Invasive E. coli Gene Expression to Drive Chronic Intestinal Inflammation.2310.25

~~~

---
Ferreira-Lazarte, Alvaro et al.
Carbohydr Polym. (2018).
199:482-491
30143153
PM2018.11In vitro fermentation properties of pectins and enzymatic-modified pectins obtained from different renewable bioresources.112.62

~~~

---
Palmnäs, Marie S A et al.
PLoS One. (2014).
9(10):e109841
25313461
PM2014.00Low-dose aspartame consumption differentially affects gut microbiota-host metabolic interactions in the diet-induced obese rat.9410.38

~~~

---
Zoll, Jereon et al.
Am J Physiol Endocrinol Metab. (2020).
319(1):E203-E216
32516027
PM2020.07Fecal microbiota transplantation from high caloric-fed donors alters glucose metabolism in recipient mice, independently of adiposity or exercise status.93.60

~~~

---
Lu, Qing-Yi et al.
Nutrients. (2019).
11(6)
31242596
PMC 2019.06Mixed Spices at Culinary Doses Have Prebiotic Effects in Healthy Adults: A Pilot Study.113.10

~~~

---
Huang, Chiao-Yi et al.
PLoS One. (2021).
16(7):e0247859
34283836
PM2021.00Opportunistic gill infection is associated with TiO2 nanoparticle-induced mortality in zebrafish.52.40

~~~

---
Svartström, Olov et al.
ISME J. (2017).
11(11):2538-2551
28731473
PM2017.11Ninety-nine de novo assembled genomes from the moose (Alces alces) rumen microbiome provide new insights into microbial plant biomass degradation.499.51

~~~

---
Lengert, Ekaterina et al.
Nanoscale. (2018).
10(36):17249-17256
30191939
PM2018.09Laser-induced remote release in vivo in C. elegans from novel silver nanoparticles-alginate hydrogel shells.30.70

~~~

---
Holscher, Hannah D et al.
Am J Clin Nutr. (2015).
101(1):55-64
25527750
PMC 2015.01Fiber supplementation influences phylogenetic structure and functional capacity of the human intestinal microbiome: follow-up of a randomized controlled trial.567.03

~~~

---
Bu, Qian et al.
Nanotechnology. (2010).
21(12):125105
20203358
PM2010.03NMR-based metabonomic study of the sub-acute toxicity of titanium dioxide nanoparticles in rats after oral administration.383.00

~~~

---
Daly, Kristian et al.
Environ Microbiol. (2016).
18(7):2159-71
26058469
PM2016.07Bacterial sensing underlies artificial sweetener-induced growth of gut Lactobacillus.121.81

~~~

---
Tian, Lingmin et al.
Mol Nutr Food Res. (2016).
60(10):2256-2266
27174558
PM2016.10Effects of pectin supplementation on the fermentation patterns of different structural carbohydrates in rats.304.85

~~~

---
Bruorton, M R et al.
Appl Environ Microbiol. (1991).
57(2):573-8
2014992
PM1991.02Gut microflora of vervet and samango monkeys in relation to diet.60.20

~~~

---
Pärtty, Anna et al.
J Pediatr. (2013).
163(5):1272-7.e1-2
23915796
PMC 2013.11Effects of early prebiotic and probiotic supplementation on development of gut microbiota and fussing and crying in preterm infants: a randomized, double-blind, placebo-controlled trial.313.42

~~~

---
Swartz, T D et al.
Br J Nutr. (2012).
107(5):621-30
21781379
PM2012.03Up-regulation of intestinal type 1 taste receptor 3 and sodium glucose luminal transporter-1 expression and increased sucrose intake in mice lacking gut microbiota.444.10

~~~

---
Ghasemi, Elnaz et al.
J Clin Pediatr Dent. (2017).
41(4):257-263
28650782
PMC 2017.00Effect of Probiotic Yogurt and Xylitol-Containing Chewing Gums on Salivary S Mutans Count.61.00

~~~

---
David, Shlomit et al.
Food Funct. (2019).
10(3):1763-1766
30794278
PM2019.03Reply to the Comment on "Revisiting the carrageenan controversy: do we really understand the digestive fate and safety of carrageenan in our foods?" by M. Weiner and J. McKim, Food Funct., 2019, 10: DOI: 10.1039/C8FO01282B.41.00

~~~

---
Han, Youngji et al.
Nutrients. (2020).
12(7)
32708827
PM2020.07Anti-Diabetic Effects of Allulose in Diet-Induced Obese Mice via Regulation of mRNA Expression and Alteration of the Microbiome Composition.52.00

~~~

---
Goldstein, R S et al.
Toxicol Appl Pharmacol. (1984).
75(3):547-53
6089377
PM1984.09Influence of dietary pectin on intestinal microfloral metabolism and toxicity of nitrobenzene.00.00

~~~

---
Wang, Mei et al.
J Nutr. (2013).
143(6):795-803
23616518
PM2013.06Mode of delivery and early nutrition modulate microbial colonization and fermentation products in neonatal piglets.313.21

~~~

---
Jacobi, Sheila K et al.
J Nutr. (2016).
146(2):200-8
26701794
PM2016.02Dietary Isomers of Sialyllactose Increase Ganglioside Sialic Acid Concentrations in the Corpus Callosum and Cerebellum and Modulate the Colonic Microbiota of Formula-Fed Piglets.436.20

~~~

---
Auguste, Manon et al.
Sci Total Environ. (2019).
670:129-137
30903888
PM2019.06Exposure to TiO2 nanoparticles induces shifts in the microbiota composition of Mytilus galloprovincialis hemolymph.133.62

~~~

---
Eshrati, Maryam et al.
Langmuir. (2019).
35(2):529-537
30567428
PM2019.01Shear-Enhanced Dynamic Adhesion of Lactobacillus rhamnosus GG on Intestinal Epithelia: Correlative Effect of Protein Expression and Interface Mechanics.10.20

~~~

---
Danneskiold-Samsøe, Niels Banhos et al.
Mol Nutr Food Res. (2017).
61(5)
28012235
PM2017.05A safflower oil based high-fat/high-sucrose diet modulates the gut microbiota and liver phospholipid profiles associated with early glucose intolerance in the absence of tissue inflammation.81.40

~~~

---
Swanson, K S et al.
J Anim Sci. (2001).
79(4):919-26
11325198
PM2001.04Fruit and vegetable fiber fermentation by gut microflora from canines.180.80

~~~

---
Drew, Janice E et al.
Sci Rep. (2018).
8(1):15566
30349136
PM2018.10Dietary fibers inhibit obesity in mice, but host responses in the cecum and liver appear unrelated to fiber-specific changes in cecal bacterial taxonomic composition.133.11

~~~

---
Ivarsson, E et al.
Animal. (2014).
8(11):1777-87
25046106
PM2014.11Fermentable non-starch polysaccharides increases the abundance of Bacteroides-Prevotella-Porphyromonas in ileal microbial community of growing pigs.668.14

~~~

---
Mortensen, Alicja et al.
EFSA J. (2017).
15(6):e04789
32625506
PM2017.06Re-evaluation of tragacanth (E 413) as a food additive.00.00

~~~

---
Zhu, Kai et al.
J Agric Food Chem. (2020).
68(32):8688-8701
32633953
PM2020.08Highly Branched RG-I Domain Enrichment Is Indispensable for Pectin Mitigating against High-Fat Diet-Induced Obesity.31.20

~~~

---
Irwin, Sally V et al.
PLoS One. (2017).
12(10):e0186629
29045472
PM2017.00Sulfites inhibit the growth of four species of beneficial gut bacteria at concentrations regarded as safe for food.172.83

~~~

---
Thibodeau, Alexandre et al.
PLoS One. (2015).
10(7):e0131978
26161743
PM2015.00Chicken Caecal Microbiome Modifications Induced by Campylobacter jejuni Colonization and by a Non-Antibiotic Feed Additive.627.71

~~~

---
Sarmiento-Rubiano, Luz Adriana et al.
Res Microbiol. (2007).
158(8-9):694-701
17825531
PM2007.00Dietary supplementation with sorbitol results in selective enrichment of lactobacilli in rat intestine.130.81

~~~

---
Yang, Jianbo et al.
JPEN J Parenter Enteral Nutr. (2017).
41(8):1399-1410
27660288
PM2017.11Soluble Dietary Fiber Ameliorates Radiation-Induced Intestinal Epithelial-to-Mesenchymal Transition and Fibrosis.142.71

~~~

---
Yang, Hui et al.
Sci Rep. (2016).
6:27427
27255518
PM2016.06Uncovering the composition of microbial community structure and metagenomics among three gut locations in pigs with distinct fatness.8412.81

~~~

---
Johnson, Laura P et al.
Nutrients. (2015).
7(6):4480-97
26053617
PM2015.06Prebiotics Modulate the Effects of Antibiotics on Gut Microbial Diversity and Functioning in Vitro.212.81

~~~

---
Mortensen, Alicja et al.
EFSA J. (2017).
15(6):e04863
32625525
PM2017.06Re-evaluation of tara gum (E 417) as a food additive.10.20

~~~

---
Williams, Katherine et al.
Nanotoxicology. (2015).
9(3):279-89
24877679
PM2015.05Effects of subchronic exposure of silver nanoparticles on intestinal microbiota and gut-associated immune responses in the ileum of Sprague-Dawley rats.638.211

~~~

---
Roberts, Ashley; Lobach, Alexandra R
Food Chem Toxicol. (2019).
132:110691
31330167
PM2019.10Response to the Letter to the Editor by S. Schiffman and H. Nagle: Revisiting the data and information that has collectively established the safety of low/no-calorie sweeteners, including sucralose.00.00

~~~

---
Despres, Jordane et al.
BMC Genomics. (2016).
17:147
26920945
PM2016.02Unraveling the pectinolytic function of Bacteroides xylanisolvens using a RNA-seq approach and mutagenesis.142.01

~~~

---
Mortensen, Alicja et al.
EFSA J. (2017).
15(10):e04911
32625282
PM2017.10Re-evaluation of oxidised starch (E 1404), monostarch phosphate (E 1410), distarch phosphate (E 1412), phosphated distarch phosphate (E 1413), acetylated distarch phosphate (E 1414), acetylated starch (E 1420), acetylated distarch adipate (E 1422), hydroxypropyl starch (E 1440), hydroxypropyl distarch phosphate (E 1442), starch sodium octenyl succinate (E 1450), acetylated oxidised starch (E 1451) and starch aluminium octenyl succinate (E 1452) as food additives.71.30

~~~

---
Del Bò, Cristian et al.
J Agric Food Chem. (2010).
58(4):2491-7
20030330
PM2010.02Anthocyanin absorption, metabolism, and distribution from a wild blueberry-enriched diet (Vaccinium angustifolium) is affected by diet duration in the Sprague-Dawley rat.191.50

~~~

---
Viennois, Emilie et al.
Cancer Res. (2017).
77(1):27-40
27821485
PM2017.01Dietary Emulsifier-Induced Low-Grade Inflammation Promotes Colon Carcinogenesis.6811.310

~~~

---
Moutinho, I L D et al.
Braz J Biol. (2007).
67(1):141-5
17505761
PM2007.02Prolonged use of the food dye tartrazine (FD&C yellow no 5) and its effects on the gastric mucosa of Wistar rats.140.90

~~~

---
Hirsch, Kerstin et al.
Berl Munch Tierarztl Wochenschr. (2006).
119(11-12):486-92
17172137
PM2006.00[Influence of a xylanase feed additive on Lactobacillus species in the jejunum of piglets].00.00

~~~

---
Uebanso, Takashi et al.
Nutrients. (2017).
9(6)
28587159
PM2017.06Effects of Low-Dose Non-Caloric Sweetener Consumption on Gut Microbiota in Mice.509.06

~~~

---
Li, Miaomiao et al.
Mar Drugs. (2017).
15(4)
28338633
PM2017.03Degradation of Marine Algae-Derived Carbohydrates by Bacteroidetes Isolated from Human Gut Microbiota.264.50

~~~

---
Brune, A et al.
Appl Environ Microbiol. (1995).
61(7):2688-95
16535077
PM1995.07Roles of oxygen and the intestinal microflora in the metabolism of lignin-derived phenylpropanoids and other monoaromatic compounds by termites.250.90

~~~

---
Ghaffarzadegan, Tannaz et al.
PLoS One. (2016).
11(6):e0157427
27315087
PM2016.00Molecular Properties of Guar Gum and Pectin Modify Cecal Bile Acids, Microbiota, and Plasma Lipopolysaccharide-Binding Protein in Rats.162.31

~~~

---
Naaber, P et al.
J Med Microbiol. (1998).
47(7):591-8
9839563
PM1998.07Bacterial translocation, intestinal microflora and morphological changes of intestinal mucosa in experimental models of Clostridium difficile infection.170.72

~~~

---
Yang, Junyi et al.
Anaerobe. (2013).
23:74-81
23831725
PM2013.10In vitro characterization of the impact of selected dietary fibers on fecal microbiota composition and short chain fatty acid production.697.56

~~~

---
Salminen, S et al.
Food Chem Toxicol. (1985).
23(11):985-90
4076932
PM1985.11Gut microflora interactions with xylitol in the mouse, rat and man.140.44

~~~

---
Mahmud, Rizwan et al.
J Mol Microbiol Biotechnol. (2019).
29(1-6):43-56
31851990
PM2019.00Non-Caloric Artificial Sweeteners Modulate the Expression of Key Metabolic Genes in the Omnipresent Gut Microbe Escherichia coli.51.20

~~~

---
Song, Jaeeun et al.
Biotechnol Lett. (2018).
40(9-10):1377-1387
30078113
PM2018.10Characterization of an inhibitor-resistant endo-1,4-β-mannanase from the gut microflora metagenome of Hermetia illucens.20.50

~~~

---
Fåk, Frida et al.
PLoS One. (2015).
10(5):e0127252
25973610
PM2015.00The physico-chemical properties of dietary fibre determine metabolic responses, short-chain Fatty Acid profiles and gut microbiota composition in rats fed low- and high-fat diets.232.82

~~~

---
Wang, Zhong et al.
Appl Environ Microbiol. (2012).
78(24):8795-802
23064348
PM2012.12Identification and characterization of a bile salt hydrolase from Lactobacillus salivarius for development of novel alternatives to antibiotic growth promoters.393.91

~~~

---
Swidsinski, A et al.
J Physiol Pharmacol. (2009).
60 Suppl 6:61-71
20224153
PM2009.12Mucosal flora in Crohn's disease and ulcerative colitis - an overview.826.32

~~~

---
Salminen, S et al.
Z Ernahrungswiss. (1986).
25(2):91-5
3751159
PM1986.06The effects of sorbitol on the gastrointestinal microflora in rats.10.00

~~~

---
Zhang, Xueying et al.
Sci China Life Sci. (2018).
61(7):779-786
29441452
PMC 2018.07Long-term follow-up of the effects of fecal microbiota transplantation in combination with soluble dietary fiber as a therapeutic regimen in slow transit constipation.173.80

~~~

---
Little, Michael S et al.
Protein Sci. (2018).
27(12):2010-2022
30230652
PM2018.12Active site flexibility revealed in crystal structures of Parabacteroides merdae β-glucuronidase from the human gut microbiome.92.20

~~~

---
Dong, Xue et al.
Sci Adv. (2020).
6(20):eaba1590
32440552
PM2020.05Bioinorganic hybrid bacteriophage for modulation of intestinal microbiota to remodel tumor-immune microenvironment against colorectal cancer.3814.20

~~~

---
Peng, Xichun et al.
Food Funct. (2013).
4(6):932-8
23669739
PM2013.06Effects of dietary fibers and their mixtures on short chain fatty acids and microbiota in mice guts.131.40

~~~

---
Bhat, Shazia F et al.
J Physiol. (2021).
599(5):1487-1511
33450094
PM2021.03Exposure to high fructose corn syrup during adolescence in the mouse alters hepatic metabolism and the microbiome in a sex-specific manner.73.80

~~~

---
Geier, M S et al.
Br Poult Sci. (2011).
52(5):564-72
22029783
PM2011.10The effects of lactoferrin on the intestinal environment of broiler chickens.40.40

~~~

---
Parker, J et al.
Poult Sci. (2007).
86(4):643-53
17369534
PM2007.04Enzymes as feed additive to aid in responses against Eimeria species in coccidia-vaccinated broilers fed corn-soybean meal diets with different protein levels.110.70

~~~

---
Beards, Emma et al.
Br J Nutr. (2010).
104(5):701-8
20370946
PMC 2010.09A human volunteer study to assess the impact of confectionery sweeteners on the gut microbiota composition.211.72

~~~

---
Akermi, Nizar et al.
Chem Commun (Camb). (2019).
55(61):8935-8938
31286126
PM2019.08para-Sulphonato-calix[n]arene capped silver nanoparticles challenge the catalytic efficiency and the stability of a novel human gut serine protease inhibitor.30.90

~~~

---
Jones, Roshonda B et al.
Gut Microbes. (2020).
12(1):1813534
32887539
PM2020.11Lactose-reduced infant formula with added corn syrup solids is associated with a distinct gut microbiota in Hispanic infants.94.20

~~~

---
Nurdin, Samsu U et al.
Nutrients. (2017).
9(4)
28368356
PM2017.04Analysis of the Anti-Cancer Effects of Cincau Extract (Premna oblongifolia Merr) and Other Types of Non-Digestible Fibre Using Faecal Fermentation Supernatants and Caco-2 Cells as a Model of the Human Colon.20.31

~~~

---
Koyama, E et al.
Food Chem Toxicol. (2003).
41(3):359-74
12504168
PM2003.03In vitro metabolism of the glycosidic sweeteners, stevia mixture and enzymatically modified stevia in human intestinal microflora.231.21

~~~

---
Sarkar, Biplab et al.
J Environ Sci Health A Tox Hazard Subst Environ Eng. (2015).
50(8):814-23
26030687
PM2015.00Optimization of the sublethal dose of silver nanoparticle through evaluating its effect on intestinal physiology of Nile tilapia (Oreochromis niloticus L.).30.41

~~~

---
Arbulu, Sara et al.
BMC Microbiol. (2016).
16(1):228
27688001
PM2016.09Evaluation of bacteriocinogenic activity, safety traits and biotechnological potential of fecal lactic acid bacteria (LAB), isolated from Griffon Vultures (Gyps fulvus subsp. fulvus).30.50

~~~

---
Van den Abbeele, Pieter et al.
Microorganisms. (2021).
9(10)
34683463
PM2021.10Consistent Prebiotic Effects of Carrot RG-I on the Gut Microbiota of Four Human Adult Donors in the SHIME® Model despite Baseline Individual Variability.43.20

~~~

---
Pinget, Gabriela et al.
Front Nutr. (2019).
6:100
31334242
PM2019.00Corrigendum: Impact of the Food Additive Titanium Dioxide (E171) on Gut Microbiota-Host Interaction.30.70

~~~

---
Noack, J et al.
J Nutr. (1998).
128(8):1385-91
9687560
PM1998.08Dietary guar gum and pectin stimulate intestinal microbial polyamine synthesis in rats.160.70

~~~

---
Wu, Shangong et al.
FEMS Microbiol Ecol. (2015).
91(10)
26362922
PM2015.10Metatranscriptomic discovery of plant biomass-degrading capacity from grass carp intestinal microbiomes.131.80

~~~

---
Kluge, H et al.
J Anim Physiol Anim Nutr (Berl). (2006).
90(7-8):316-24
16867077
PM2006.08Effect of benzoic acid on growth performance, nutrient digestibility, nitrogen balance, gastrointestinal microflora and parameters of microbial metabolism in piglets.261.65

~~~

---
Vignesh, Ramachandran et al.
Front Cell Infect Microbiol. (2021).
11:667733
33968808
PM2021.00Could Nutraceutical Approaches Possibly Attenuate the Cytokine Storm in COVID-19 Patients?10.50

~~~

---
Paxton, Robert J
Science. (2020).
367(6477):504-506
32001639
PM2020.01A microbiome silver bullet for honey bees.10.30

~~~

---
Chae, Jong Pyo et al.
Microb Biotechnol. (2016).
9(4):486-95
27305897
PM2016.07Revealing the combined effects of lactulose and probiotic enterococci on the swine faecal microbiota using 454 pyrosequencing.213.20

~~~

---
Ajibola, Abdulwahid et al.
Indian J Exp Biol. (2013).
51(4):303-12
24195350
PM2013.04Comparative effect of cane syrup and natural honey on abdominal viscera of growing male and female rats.30.30

~~~

---
Goncerzewicz, Anna et al.
Curr Microbiol. (2016).
73(6):773-780
27565144
PM2016.12The Effect of a Newly Developed Oat-Banana Fermented Beverage with a Beta-glucan Additive on ldhL Gene Expression in Streptococcus thermophilus TKM3 KKP 2030p.20.30

~~~

---
Kannen, Vinicius et al.
Trends Cancer. (2019).
5(10):577-579
31706504
PM2019.10Phages Enter the Fight against Colorectal Cancer.82.50

~~~

---
Parsons, C M
Br J Nutr. (1984).
51(3):541-8
6326800
PM1984.05Influence of caecectomy and source of dietary fibre or starch on excretion of endogenous amino acids by laying hens.90.20

~~~

---
Glade, Michael J; Meguid, Michael M
Nutrition. (2016).
32(5):609-14
26899163
PM2016.05A glance at … dietary emulsifiers, the human intestinal mucus and microbiome, and dietary fiber.81.20

~~~

---
Bailey, J S et al.
Avian Dis. (1988).
32(2):324-9
3041958
PM1988.00Effect of anticoccidial and antimicrobial feed additives on prevention of Salmonella colonization of chicks treated with anaerobic cultures of chicken feces.10.00

~~~

---
Shah, Romina et al.
Food Addit Contam Part A Chem Anal Control Expo Risk Assess. (2017).
34(6):905-917
28346062
PM2017.06Dietary exposures for the safety assessment of seven emulsifiers commonly added to foods in the United States and implications for safety.213.83

~~~

---
Etxeberria, Usune et al.
Food Funct. (2015).
6(8):2758-67
26156396
PM2015.08Metabolic faecal fingerprinting of trans-resveratrol and quercetin following a high-fat sucrose dietary model using liquid chromatography coupled to high-resolution mass spectrometry.70.90

~~~

---
Murata, Yuji et al.
Biosci Biotechnol Biochem. (2010).
74(3):673-6
20208371
PM2010.00Digestion and absorption of Siraitia grosvenori triterpenoids in the rat.100.80

~~~

---
Kornbrust, D; Barfknecht, T
Environ Mutagen. (1985).
7(1):101-20
3967633
PM1985.00Testing of 24 food, drug, cosmetic, and fabric dyes in the in vitro and the in vivo/in vitro rat hepatocyte primary culture/DNA repair assays.80.20

~~~

---
Chassaing, Benoit et al.
Nature. (2016).
536(7615):238
27144359
PM2016.08Corrigendum: Dietary emulsifiers impact the mouse gut microbiota promoting colitis and metabolic syndrome.30.50

~~~

---
Venitt, S; Bushell, C T
Mutat Res. (1976).
40(4):309-15
796696
PM1976.11Mutagenicity of the food colour brown FK and constituents in Salmonella typhimurium.00.00

~~~

---
Parsons, C M et al.
Poult Sci. (1983).
62(3):483-9
6302653
PM1983.03Effects of dietary carbohydrate and of intestinal microflora on excretion of endogenous amino acids by poultry.120.30

~~~

---
Gonthier, Marie-Paule et al.
Free Radic Biol Med. (2003).
35(8):837-44
14556848
PM2003.10Metabolism of dietary procyanidins in rats.643.30

~~~

---
Brennan-Craddock, W E et al.
J Appl Bacteriol. (1992).
73(2):163-7
1328132
PM1992.08Development changes to gut microflora metabolism in mice.10.00

~~~

---
Sims, J et al.
Food Chem Toxicol. (2000).
38 Suppl 2:S115-21
10882824
PM2000.00The metabolic fate of sucralose in rats.140.61

~~~

---
Phipps, A N et al.
Xenobiotica. (1998).
28(5):527-37
9622854
PM1998.05Effect of diet on the urinary excretion of hippuric acid and other dietary-derived aromatics in rat. A complex interaction between diet, gut microflora and substrate specificity.311.30

~~~

---
Orban, J I et al.
Poult Sci. (1997).
76(3):482-90
9068048
PM1997.03Effect of sucrose thermal oligosaccharide caramel, dietary vitamin-mineral level, and brooding temperature on growth and intestinal bacterial populations of broiler chickens.30.10

~~~

---
Shumakova, A A et al.
Vopr Pitan. (2015).
84(4):55-65
26852532
PM2015.00[Toxicological assessment of nanostructured silica. III. Microecological, hematological indices, state of cellular immunity].10.10

~~~

---
Chen, Huizhong et al.
Protein Expr Purif. (2004).
34(2):302-10
15003265
PM2004.04Molecular cloning, overexpression, purification, and characterization of an aerobic FMN-dependent azoreductase from Enterococcus faecalis.361.91

~~~

---
Nguyen, L B et al.
J Nutr. (1981).
111(8):1403-10
6267237
PM1981.08Effects of selected polysaccharides on the bioavailability of pyridoxine in rats and chicks.00.00

~~~

---
Van Ommen, B et al.
Regul Toxicol Pharmacol. (1996).
24(2 Pt 2):S198-205
8933634
PM1996.10Disposition of 14C-erythritol in germfree and conventional rats.20.11

~~~

---
Martin, A K
Br J Nutr. (1982).
48(3):497-507
7171537
PM1982.11The origin of urinary aromatic compounds excreted by ruminants. 3. The metabolism of phenolic compounds to simple phenols.140.30

~~~

---
Goñi, I et al.
J Agric Food Chem. (2001).
49(5):2663-8
11368652
PM2001.05Dietary modulation of bacterial fermentative capacity by edible seaweeds in rats.50.20

~~~

---
Gostner, A et al.
Br J Nutr. (2006).
95(1):40-50
16441915
PM2006.01Effect of isomalt consumption on faecal microflora and colonic metabolism in healthy volunteers.171.01

~~~

---
Paul, J et al.
World J Microbiol Biotechnol. (1993).
9(1):108-12
24419852
PM1993.01Ultrastructural studies of the termite (Odontotermes obesus) gut microflora and its cellulolytic properties.20.10

~~~

---
Krishnan, R et al.
Aust J Exp Biol Med Sci. (1980).
58(6):627-38
7271602
PM1980.12Some biochemical studies on the adaptation associated with xylitol ingestion in rats.20.01

~~~

---
Kuzniar, E J; James, S P
Xenobiotica. (1981).
11(10):675-83
6976659
PM1981.10Influence of the gut microflora on the metabolism of 4-nitrobenzoic acid in the marmoset.10.00

~~~

---
Norman, K
Z Gastroenterol. (2014).
52(12):1493-4
25474285
PM2014.12[Of mice and men--how saccharin induces glucose intolerance by altering the gut microbiota].10.10

~~~

---
Spaeth, G et al.
JPEN J Parenter Enteral Nutr. (1990).
14(5):442-7
2172577
PM1990.00Bulk prevents bacterial translocation induced by the oral administration of total parenteral nutrition solution.160.50

~~~

---
Delorme, C B; Gordon, C I
J Nutr. (1983).
113(12):2432-41
6317825
PM1983.12The effect of pectin on the utilization of marginal levels of dietary protein by weanling rats.00.00

~~~

---
Collier, C T et al.
Antimicrob Agents Chemother. (2003).
47(10):3311-7
14506046
PM2003.10Effects of tylosin on bacterial mucolysis, Clostridium perfringens colonization, and intestinal barrier function in a chick model of necrotic enteritis.201.00

~~~

---
Dongowski, G; Lorenz, A
Carbohydr Res. (1998).
314(3-4):237-44
10335591
PM1998.12Unsaturated oligogalacturonic acids are generated by in vitro treatment of pectin with human faecal flora.60.21

~~~

---
Langhout, D J et al.
Br J Nutr. (2000).
83(5):533-40
10953678
PM2000.05Effect of viscosity on digestion of nutrients in conventional and germ-free chicks.70.30

~~~

---
Walker, R
J Sci Food Agric. (1974).
25(2):228-9
4817598
PM1974.02Food additives and intestinal microflora.00.00

~~~

---
Cervantes, Jorge
Nutrients. (2020).
12(7)
32708522
PM2020.07Sucrose Matters. The Need to Make Groups Truly Comparable When Assessing Changes Associated with Insulin Sensitivity. Comment on "Consumption of Cooked Black Beans Stimulates a Cluster of Some Clostridia Class Bacteria Decreasing Inflammatory Response and Improving Insulin Sensitivity." Nutrients 2020, 12(4), 1182.10.40

~~~

---
Savory, C J
Br J Nutr. (1992).
67(1):91-102
1547205
PM1992.01Enzyme supplementation, degradation and metabolism of three U-14C-labelled cell-wall substrates in the fowl.20.10

~~~

---
Kadiiska, M B et al.
Chem Res Toxicol. (2000).
13(11):1082-6
11087429
PM2000.11Reduction of 1,3-diphenyl-1-triazene by rat hepatic microsomes, by cecal microflora, and in rats generates the phenyl radical metabolite: nn ESR spin-trapping investigation.40.20

~~~

---
Walker, R; El Harith, E A
Ann Nutr Aliment. (1978).
32(2-3):671-9
152090
PM1978.00Nutritional and toxicological properties of some raw and modified starches.00.00

~~~

---
Kuriki, T et al.
Appl Environ Microbiol. (1993).
59(4):953-9
16348919
PM1993.04A new way of producing isomalto-oligosaccharide syrup by using the transglycosylation reaction of neopullulanase.40.10

~~~

---
Rowland, I R et al.
Arch Toxicol. (1986).
59(2):94-8
3019277
PM1986.07The effect of various dietary fibres on tissue concentration and chemical form of mercury after methylmercury exposure in mice.160.40

~~~

---
Mallett, A K et al.
J Appl Bacteriol. (1987).
63(1):39-45
2820914
PM1987.07The use of rats associated with a human faecal flora as a model for studying the effects of diet on the human gut microflora.110.30

~~~

---
Singh, S et al.
Indian J Exp Biol. (1997).
35(8):912-4
9475071
PM1997.08Reductive and hydrolytic activities of enteric bacteria on food colours.00.00

~~~

---
Brown, J P et al.
Food Cosmet Toxicol. (1978).
16(4):307-20
711051
PM1978.08Gut microflora interactions with two experimental polymeric food additives in the rat.20.01

~~~

---
Perevalova, Iu V; Tsapok, P I
Vopr Pitan. (2008).
77(2):36-9
18505097
PM2008.00[Influence of the bifidobacteria and lactitol containing products on lypoperoxidation processes and intestinal microflora].00.00

~~~

---
Shrimpton, D H
J Appl Bacteriol. (1966).
29(2):222-30
6008825
PM1966.08Metabolism of the intestinal microflora in birds and its possible influence on the composition of flavour precursors in their muscles.00.00

~~~

---
Voskun, S E et al.
Zh Mikrobiol Epidemiol Immunobiol. (1995)(6):89-90
8553788
PM1995.00[The use of oligostimulin for correcting the intestinal microflora in rats].00.00

~~~

---
Kuzechkin, Z N et al.
Vopr Pitan. (1975)(5):80-3
1210209
PM1975.00[Hygienic study of a proteolytic preparation obtained from Actinomyces].00.00

~~~

---
Ormerod, Kate L et al.
Microbiome. (2016).
4(1):36
27388460
PM2016.07Genomic characterization of the uncultured Bacteroidales family S24-7 inhabiting the guts of homeothermic animals.22134.03

~~~

---
Siczek, Krzysztof et al.
Pharm Dev Technol. (2018).
23(3):295-300
28756715
PM2018.03Development of the rectal dosage form with silver-coated glass beads for local-action applications in lower sections of the gastrointestinal tract.10.20

~~~

---
Luoto, Raakel et al.
J Allergy Clin Immunol. (2014).
133(2):405-13
24131826
PMC 2014.02Prebiotic and probiotic supplementation prevents rhinovirus infections in preterm infants: a randomized, placebo-controlled trial.8910.00

~~~

---
Foltz, Martin et al.
Microorganisms. (2021).
9(9)
34576876
PM2021.09A Pectin-Rich, Baobab Fruit Pulp Powder Exerts Prebiotic Potential on the Human Gut Microbiome In Vitro.21.50

~~~

---
Fu, Tianyu et al.
Int J Biol Macromol. (2021).
183:1649-1659
34048831
PM2021.07Fermentation of alginate and its derivatives by different enterotypes of human gut microbiota: Towards personalized nutrition using enterotype-specific dietary fibers.53.30

~~~

---
Xu, Lin et al.
Zhonghua Yi Xue Za Zhi. (2014).
94(48):3813-6
25623312
PMC 2014.12[Clinical benefits after soluble dietary fiber supplementation: a randomized clinical trial in adults with slow-transit constipation].50.61

~~~

---
Ranucci, Giusy et al.
Nutrients. (2018).
10(3)
29494489
PMC 2018.03Galacto-Oligosaccharide/Polidextrose Enriched Formula Protects against Respiratory Infections in Infants at High Risk of Atopy: A Randomized Clinical Trial.193.90

~~~

---
Beards, Emma et al.
Anaerobe. (2010).
16(4):420-5
20553905
PM2010.08Bacterial, SCFA and gas profiles of a range of food ingredients following in vitro fermentation by human colonic microbiota.221.81

~~~

---
Larsen, Nadja et al.
Front Microbiol. (2019).
10:223
30828323
PM2019.00Potential of Pectins to Beneficially Modulate the Gut Microbiota Depends on Their Structural Properties.389.37

~~~

---
Khajeh Bami, Mohammad et al.
J Trace Elem Med Biol. (2022).
69:126897
34814061
PM2022.01Effects of dietary nano-selenium supplementation on broiler chicken performance, meat selenium content, intestinal microflora, intestinal morphology, and immune response.22.00

~~~

---
Santos, Paola Sousa et al.
Food Funct. (2021).
12(20):9904-9911
34486007
PM2021.10Effects of long-term consumption of sucralose associated with high-fat diet in male mice.00.00

~~~

---
Pomares, María Fernanda et al.
Appl Environ Microbiol. (2009).
75(17):5734-8
19592527
PM2009.09Potential applicability of chymotrypsin-susceptible microcin J25 derivatives to food preservation.90.70

~~~

---
Huang, Jia-Hsin; Douglas, Angela E
Biol Lett. (2015).
11(9):20150469
26382071
PM2015.09Consumption of dietary sugar by gut bacteria determines Drosophila lipid content.405.50

~~~

---
Yousaf, M S et al.
Br Poult Sci. (2017).
58(2):122-131
27869509
PM2017.04Encapsulated benzoic acid supplementation in broiler diets influences gut bacterial composition and activity.40.70

~~~

---
Zheng, Yi et al.
Carbohydr Polym. (2018).
199:526-533
30143159
PM2018.11Preparation of individual galactan oligomers, their prebiotic effects, and use in estimating galactan chain length in pectin-derived polysaccharides.30.70

~~~

---
Daly, Kristian et al.
Br J Nutr. (2014).
111 Suppl 1:S30-5
24382146
PM2014.06Dietary supplementation with lactose or artificial sweetener enhances swine gut Lactobacillus population abundance.354.12

~~~

---
Barrett, E et al.
J Appl Microbiol. (2012).
113(2):411-7
22612585
PM2012.08γ-Aminobutyric acid production by culturable bacteria from the human intestine.34833.42

~~~

---
Labourel, Aurore et al.
J Biol Chem. (2019).
294(19):7711-7721
30877196
PM2019.05Structural and functional analyses of glycoside hydrolase 138 enzymes targeting chain A galacturonic acid in the complex pectin rhamnogalacturonan II.20.50

~~~

---
Bokulich, Nicholas A; Blaser, Martin J
Cell Metab. (2014).
20(5):701-703
25440050
PM2014.11A bitter aftertaste: unintended effects of artificial sweeteners on the gut microbiome.40.51

~~~

---
Greenhill, Claire
Nat Rev Endocrinol. (2014).
10(11):637
25246083
PM2014.11Gut microbiota: not so sweet--artificial sweeteners can cause glucose intolerance by affecting the gut microbiota.20.21

~~~

---
Stevens, H C
Obes Rev. (2012).
13(12):1182-3;l author response 1184-5
23121632
PM2012.12Fructose impacts on gut microbiota and obesity by A. N. Payne et al.00.00

~~~

---
Barry, Kathleen A et al.
J Proteome Res. (2012).
11(12):5924-33
23075436
PM2012.12Effects of dietary fiber on the feline gastrointestinal metagenome.393.90

~~~

---
Macfarlane, S et al.
Adv Dent Res. (1997).
11(1):59-68
9524443
PM1997.04Consequences of biofilm and sessile growth in the large intestine.240.90

~~~

---
Stenman, Lotta K et al.
Diabetol Metab Syndr. (2015).
7:75
26366205
PM2015.00Probiotic B420 and prebiotic polydextrose improve efficacy of antidiabetic drugs in mice.192.42

~~~

---
Xiao, Junting et al.
Environ Pollut. (2022).
292(Pt B):118184
34715478
PM2022.01Results of a 30-day safety assessment in young mice orally exposed to polystyrene nanoparticles.33.00

~~~

---
Zhuge, Aoxiang et al.
Appl Microbiol Biotechnol. (2020).
104(17):7437-7455
32666187
PM2020.09Lactobacillus salivarius LI01 encapsulated in alginate-pectin microgels ameliorates D-galactosamine-induced acute liver injury in rats.156.40

~~~

---
Li, Jiankuan et al.
Molecules. (2018).
23(12)
30501018
PM2018.11Three Inulin-Type Fructans from Codonopsis pilosula (Franch.) Nannf. Roots and Their Prebiotic Activity on Bifidobacterium longum.122.90

~~~

---
Liu, Xuerun et al.
Microorganisms. (2020).
8(2)
31991820
PM2020.01Biostimulating Gut Microbiome with Bilberry Anthocyanin Combo to Enhance Anti-PD-L1 Efficiency against Murine Colon Cancer.113.70

~~~

---
Jiang, Li et al.
Evid Based Complement Alternat Med. (2020).
2020:6432942
32184894
PM2020.00Phenolics and Carbohydrates in Buckwheat Honey Regulate the Human Intestinal Microbiota.113.60

~~~

---
Shi, Qing et al.
J Sci Food Agric. (2019).
99(11):4952-4962
30953347
PM2019.08Low intake of digestible carbohydrates ameliorates duodenal absorption of carbohydrates in mice with glucose metabolism disorders induced by artificial sweeteners.20.60

~~~

---
Lerner, Aaron et al.
Front Immunol. (2017).
8:1630
29230215
PM2017.00Potential Effects of Horizontal Gene Exchange in the Human Gut.609.91

~~~

---
Mortensen, Alicja et al.
EFSA J. (2017).
15(4):e04741
32625453
PM2017.04Re-evaluation of acacia gum (E 414) as a food additive.30.50

~~~

---
Wrzosek, Laura et al.
Gut. (2021).
70(7):1299-1308
33004548
PM2021.07Microbiota tryptophan metabolism induces aryl hydrocarbon receptor activation and improves alcohol-induced liver injury.3322.00

~~~

---
Rodriguez-Palacios, Alexander et al.
Inflamm Bowel Dis. (2018).
24(5):1005-1020
29554272
PM2018.04The Artificial Sweetener Splenda Promotes Gut Proteobacteria, Dysbiosis, and Myeloperoxidase Reactivity in Crohn's Disease-Like Ileitis.7315.46

~~~

---
Henry, Y et al.
Comp Biochem Physiol A Mol Integr Physiol. (2020).
241:110626
31790805
PM2020.03Dietary nutrient balance shapes phenotypic traits of Drosophila melanogaster in interaction with gut microbiota.72.50

~~~

---
van den Brule, Sybille et al.
Part Fibre Toxicol. (2016).
13(1):38
27393559
PM2016.07Dietary silver nanoparticles can disturb the gut microbiota in mice.396.09

~~~

---
An, Choa et al.
Appl Environ Microbiol. (2013).
79(3):860-6
23183985
PM2013.02FLX pyrosequencing analysis of the effects of the brown-algal fermentable polysaccharides alginate and laminaran on rat cecal microbiotas.171.70

~~~

---
Mortensen, Alicja et al.
EFSA J. (2017).
15(7):e04909
32625570
PM2017.07Re-evaluation of xanthan gum (E 415) as a food additive.112.00

~~~

---
Mika, Agnieszka et al.
Eur J Neurosci. (2017).
45(3):342-357
27763700
PM2017.02Early life diets with prebiotics and bioactive milk fractions attenuate the impact of stress on learned helplessness behaviours and alter gene expression within neural circuits important for stress resistance.233.90

~~~

---
Bernard, Henry et al.
J Infect Dis. (2015).
211(1):156-65
25139019
PM2015.01Dietary pectin-derived acidic oligosaccharides improve the pulmonary bacterial clearance of Pseudomonas aeruginosa lung infection in mice by modulating intestinal microbiota and immunity.182.21

~~~

---
Ravn-Haren, Gitte et al.
Eur J Nutr. (2013).
52(8):1875-89
23271615
PMC 2013.12Intake of whole apples or clear apple juice has contrasting effects on plasma lipids in healthy volunteers.556.12

~~~

---
Ndeh, Didier et al.
Nature. (2017).
544(7648):65-70
28329766
PM2017.04Complex pectin metabolism by gut bacteria reveals novel catalytic functions.17029.68

~~~

---
Gangadoo, Sheeana et al.
Anim Nutr. (2019).
5(4):424-431
31890921
PM2019.12In vitro growth of gut microbiota with selenium nanoparticles.103.20

~~~

---
Xu, Fuzhou et al.
Acta Crystallogr F Struct Biol Commun. (2016).
72(Pt 5):376-81
27139829
PM2016.05Crystal structure of bile salt hydrolase from Lactobacillus salivarius.111.60

~~~

---
He, Maozhang et al.
Front Microbiol. (2016).
7:2108
28066405
PM2016.00Evaluating the Contribution of Gut Microbiota to the Variation of Porcine Fatness with the Cecum and Fecal Samples.344.80

~~~

---
Dhakal, Sudip et al.
Microorganisms. (2020).
8(5)
32349400
PM2020.04Siccibacter turicensis from Kangaroo Scats: Possible Implication in Cellulose Digestion.10.40

~~~

---
Bernard, Henry et al.
PLoS One. (2015).
10(11):e0139686
26599638
PM2015.00Pectin-Derived Acidic Oligosaccharides Improve the Outcome of Pseudomonas aeruginosa Lung Infection in C57BL/6 Mice.40.50

~~~

---
Zhou, Guoling et al.
Front Microbiol. (2021).
12:700707
34421854
PM2021.00Biosynthesis and Characterization of Zinc Oxide Nanoparticles and Their Impact on the Composition of Gut Microbiota in Healthy and Attention-Deficit Hyperactivity Disorder Children.52.41

~~~

---
Zhang, Shanshan et al.
Food Chem X. (2021).
12:100158
34825168
PM2021.12Review of structure and bioactivity of the Plantago (Plantaginaceae) polysaccharides.21.80

~~~

---
Li, Min et al.
J Nutr. (2012).
142(4):681-9
22399522
PM2012.04Microbial composition and in vitro fermentation patterns of human milk oligosaccharides and prebiotics differ between formula-fed and sow-reared piglets.333.11

~~~

---
Vera-Ponce de León, Arturo et al.
Appl Environ Microbiol. (2020).
86(8)
32060023
PM2020.04Cultivable, Host-Specific Bacteroidetes Symbionts Exhibit Diverse Polysaccharolytic Strategies.124.40

~~~

---
Sappok, M A et al.
Animal. (2015).
9(9):1453-64
25997358
PM2015.09Adaptation of faecal microbiota in sows after diet changes and consequences for in vitro fermentation capacity.40.50

~~~

---
Lee, Wei-Ting et al.
Sci Rep. (2017).
7(1):8124
28811642
PM2017.08Octahedron Iron Oxide Nanocrystals Prohibited Clostridium difficile Spore Germination and Attenuated Local and Systemic Inflammation.61.11

~~~

---
Swidsinski, Alexander et al.
Inflamm Bowel Dis. (2009).
15(3):359-64
18844217
PM2009.03Bacterial overgrowth and inflammation of small intestine after carboxymethylcellulose ingestion in genetically susceptible mice.654.77

~~~

---
Hold, Georgina L
Gut. (2014).
63(1):5-6
23740189
PM2014.01Western lifestyle: a 'master' manipulator of the intestinal microbiota?232.60

~~~

---
Martinez-Medina, Margarita et al.
Gut. (2014).
63(1):116-24
23598352
PM2014.01Western diet induces dysbiosis with increased E coli in CEABAC10 mice, alters host barrier function favouring AIEC colonisation.20622.91

~~~

---
Charrier, Maryvonne et al.
Biol Res. (2006).
39(4):669-81
17657348
PM2006.00Isolation and characterization of cultivable fermentative bacteria from the intestine of two edible snails, Helixpomatia and Cornu aspersum (Gastropoda: Pulmonata).211.21

~~~

---
Tovaglieri, Alessio et al.
Microbiome. (2019).
7(1):43
30890187
PM2019.03Species-specific enhancement of enterohemorrhagic E. coli pathogenesis mediated by microbiome metabolites.369.40

~~~

---
Neyrinck, Audrey M et al.
Nutrients. (2021).
13(5)
33923174
PM2021.04Prebiotic Effect of Berberine and Curcumin Is Associated with the Improvement of Obesity in Mice.84.60

~~~

---
Gao, Jie et al.
J Transl Med. (2021).
19(1):351
34399766
PM2021.08Urinary metabolomic changes and microbiotic alterations in presenilin1/2 conditional double knockout mice.00.00

~~~

---
Yin, Yeshi et al.
Sci Rep. (2017).
7(1):7947
28801639
PM2017.08Investigation into the stability and culturability of Chinese enterotypes.101.80

~~~

---
Park, Seong-Hwan et al.
Toxicol In Vitro. (2017).
38:108-116
27737795
PM2017.02Mycotoxin detoxifiers attenuate deoxynivalenol-induced pro-inflammatory barrier insult in porcine enterocytes as an in vitro evaluation model of feed mycotoxin reduction.132.20

~~~

---
Theriot, Casey M et al.
Nat Commun. (2014).
5:3114
24445449
PM2014.00Antibiotic-induced shifts in the mouse gut microbiome and metabolome increase susceptibility to Clostridium difficile infection.42246.53

~~~

---
Woon, James Sy-Keen et al.
Mol Biotechnol. (2017).
59(7):271-283
28573450
PM2017.07Cloning, Production and Characterization of a Glycoside Hydrolase Family 7 Enzyme from the Gut Microbiota of the Termite Coptotermes curvignathus.40.70

~~~

---
Dantur, Karina I et al.
AMB Express. (2015).
5:15
25852992
PM2015.00Isolation of cellulolytic bacteria from the intestine of Diatraea saccharalis larvae and evaluation of their capacity to degrade sugarcane biomass.344.20

~~~

---
Kim, Whee-Soo et al.
Biomaterials. (2019).
218:119360
31336278
PM2019.10Novel production of natural bacteriocin via internalization of dextran nanoparticles into probiotics.61.81

~~~

---
Arnal, Grégory et al.
Appl Environ Microbiol. (2015).
81(1):31-9
25304507
PM2015.01Investigating the function of an arabinan utilization locus isolated from a termite gut community.70.91

~~~

---
Ziemer, Cherie J
Microb Ecol. (2013).
66(2):448-61
23354293
PM2013.08Broad diversity and newly cultured bacterial isolates from enrichment of pig feces on complex polysaccharides.50.51

~~~

---
Centanni, Manuela et al.
J Agric Food Chem. (2019).
67(27):7755-7764
31251611
PM2019.07Utilization of Complex Pectic Polysaccharides from New Zealand Plants (Tetragonia tetragonioides and Corynocarpus laevigatus) by Gut Bacteroides Species.51.41

~~~

---
Ferrario, Chiara et al.
Front Microbiol. (2017).
8:1749
28955319
PM2017.00How to Feed the Mammalian Gut Microbiota: Bacterial and Metabolic Modulation by Dietary Fibers.376.11

~~~

---
Tang, Rongxue et al.
Food Chem. (2022).
371:131065
34560336
PM2022.03Effects of food matrix elements (dietary fibres) on grapefruit peel flavanone profile and on faecal microbiota during in vitro fermentation.33.60

~~~

---
Tang, Alan T et al.
Sci Transl Med. (2019).
11(520)
31776290
PM2019.11Distinct cellular roles for PDCD10 define a gut-brain axis in cerebral cavernous malformation.247.60

~~~

---
Orso, Graziella et al.
Animals (Basel). (2021).
11(6)
34070355
PM2021.05Chestnut Shell Tannins: Effects on Intestinal Inflammation and Dysbiosis in Zebrafish.21.20

~~~

---
Michel, C et al.
Anaerobe. (1998).
4(6):257-66
16887651
PM1998.12In vitro prebiotic effects of Acacia gums onto the human intestinal microbiota depends on both botanical origin and environmental pH.200.80

~~~

---
Zhang, Xuejiao et al.
J Agric Food Chem. (2022).
70(1):171-183
34962394
PM2022.01Sweeteners Maintain Epithelial Barrier Function Through the miR-15b/RECK/MMP-9 Axis, Remodel Microbial Homeostasis, and Attenuate Dextran Sodium Sulfate-Induced Colitis in Mice.22.00

~~~

---
Clavel, Thomas et al.
J Nutr. (2005).
135(12):2786-92
16317121
PMC 2005.12Isoflavones and functional foods alter the dominant intestinal microbiota in postmenopausal women.402.31

~~~

---
Khan, Shahanavaj et al.
J Trace Elem Med Biol. (2019).
52:12-17
30732872
PM2019.03Preparation, characterizations and in vitro cytotoxic activity of nickel oxide nanoparticles on HT-29 and SW620 colon cancer cell lines.92.30

~~~

---
Gangadoo, Sheeana et al.
Environ Sci Pollut Res Int. (2020).
27(14):16159-16166
32107689
PM2020.05Nanoparticles of selenium as high bioavailable and non-toxic supplement alternatives for broiler chickens.166.00

~~~

---
Champagne-Jorgensen, Kevin et al.
Gut Microbes. (2021).
13(1):1993583
34747333
PM2021.00Bacterial membrane vesicles and phages in blood after consumption of lacticaseibacillus rhamnosus JB-1.41.90

~~~

---
Cassini, Carina et al.
Curr Med Chem. (2022).
29(18):3160-3178
34720074
PMR 2022.00Mutual Effects of Free and Nanoencapsulated Phenolic Compounds on Human Microbiota.00.00

~~~

---
Donsì, Francesco; Ferrari, Giovanna
Foods. (2020).
9(8)
32806512
PM2020.08Changing the Vision in Smart Food Design Utilizing the Next Generation of Nanometric Delivery Systems for Bioactive Compounds.31.20

~~~

---
Guerrero, Emiliano Ben et al.
Appl Microbiol Biotechnol. (2020).
104(19):8351-8366
32816085
PM2020.10Characterization of two GH5 endoglucanases from termite microbiome using synthetic metagenomics.10.40

~~~

---
Ju, Minzi et al.
Eur J Pharmacol. (2019).
857:172457
31202804
PM2019.08Baicalin improves intestinal microecology and abnormal metabolism induced by high-fat diet.133.80

~~~

---
Yu, Rongrong et al.
Materials (Basel). (2021).
14(19)
34639886
PM2021.09Impact of Zinc Oxide Nanoparticles on the Composition of Gut Microbiota in Healthy and Autism Spectrum Disorder Children.43.00

~~~

---
Huo, Xingchen et al.
Front Immunol. (2021).
12:811616
35087530
PM2021.00Oral Administration of Nanopeptide CMCS-20H Conspicuously Boosts Immunity and Precautionary Effect Against Bacterial Infection in Fish.21.00

~~~

---
Yin, Yushu et al.
Ann Biomed Eng. (2017).
45(4):1058-1068
27761766
PM2017.04De Novo Synthesis and Functional Analysis of Polyphosphate-Loaded Poly(Ethylene) Glycol Hydrogel Nanoparticles Targeting Pyocyanin and Pyoverdin Production in Pseudomonas aeruginosa as a Model Intestinal Pathogen.50.90

~~~

---
Salminen, Seppo et al.
J Pediatr Gastroenterol Nutr. (2016).
62(1):80-6
26230902
PMC 2016.01Early Gut Colonization With Lactobacilli and Staphylococcus in Infants: The Hygiene Hypothesis Extended.111.60

~~~

---
Swart, Elmer et al.
Nanomaterials (Basel). (2020).
10(7)
32659907
PM2020.07The Effects of In Vivo Exposure to Copper Oxide Nanoparticles on the Gut Microbiome, Host Immunity, and Susceptibility to a Bacterial Infection in Earthworms.62.40

~~~

---
Mazgaj, Rafał et al.
Int J Mol Sci. (2021).
22(18)
34576090
PM2021.09Comparative Evaluation of Sucrosomial Iron and Iron Oxide Nanoparticles as Oral Supplements in Iron Deficiency Anemia in Piglets.10.80

~~~

---
Jin, Ge et al.
mSystems. (2021).
6(2)
33727402
PM2021.03Maternal Emulsifier P80 Intake Induces Gut Dysbiosis in Offspring and Increases Their Susceptibility to Colitis in Adulthood.73.80

~~~

---
Sappok, Maria A et al.
J Sci Food Agric. (2013).
93(5):987-94
22936465
PM2013.03Repeated measurements of in vitro fermentation of fibre-rich substrates using large intestinal microbiota of sows.00.00

~~~

---
Ried, Karin et al.
Nutr Res. (2020).
76:37-51
32151878
PMC 2020.04Herbal formula improves upper and lower gastrointestinal symptoms and gut health in Australian adults with digestive disorders.103.60

~~~

---
Li, Saijuan et al.
Carbohydr Polym. (2018).
186:168-175
29455974
PM2018.04Structural elucidation of a pectic polysaccharide from Fructus Mori and its bioactivity on intestinal bacteria strains.81.70

~~~

---
Zahran, Sara A et al.
Sci Rep. (2019).
9(1):5508
30940826
PM2019.04Azoreductase activity of dye-decolorizing bacteria isolated from the human gut microbiota.174.50

~~~

---
Feng, Yanni et al.
Front Microbiol. (2017).
8:992
28626453
PM2017.00Zinc Oxide Nanoparticles Influence Microflora in Ileal Digesta and Correlate Well with Blood Metabolites.172.82

~~~

---
Fan, Wentao et al.
ACS Appl Mater Interfaces. (2021).
13(34):40249-40266
34424682
PM2021.09Genistein-Derived ROS-Responsive Nanoparticles Relieve Colitis by Regulating Mucosal Homeostasis.32.30

~~~

---
Hosseini, S A; Meimandipour, A
Br Poult Sci. (2018).
59(6):669-678
30196710
PM2018.12Feeding broilers with thyme essential oil loaded in chitosan nanoparticles: an efficient strategy for successful delivery.82.00

~~~

---
Luo, Min et al.
Colloids Surf B Biointerfaces. (2018).
164:11-19
29367052
PM2018.04Construction and optimization of pH-sensitive nanoparticle delivery system containing PLGA and UCCs-2 for targeted treatment of Helicobacter pylori.61.30

~~~

---
Beyoğlu, Diren et al.
Biochem Pharmacol. (2012).
83(10):1331-9
22227274
PM2012.05Dog bites man or man bites dog? The enigma of the amino acid conjugations.80.70

~~~

---
Beukema, Martin et al.
Mol Nutr Food Res. (2021).
65(19):e2100346
34369649
PM2021.10Pectins that Structurally Differ in the Distribution of Methyl-Esters Attenuate Citrobacter rodentium-Induced Colitis.10.80

~~~

---
Zhang, Zi-Jing et al.
Insect Sci. (2021).
28(2):302-314
32101381
PM2021.04Diversity and functional analysis of Chinese bumblebee gut microbiota reveal the metabolic niche and antibiotic resistance variation of Gilliamella.95.10

~~~

---
Wongkuna, Supapit et al.
PeerJ. (2021).
9:e11050
33986975
PM2021.00Mediterraneibacter catenae SW178 sp. nov., an intestinal bacterium of feral chicken.21.00

~~~

---
Eshrati, Maryam et al.
Langmuir. (2018).
34(37):11167-11175
30130114
PM2018.09Biopolymer-Based Minimal Formulations Boost Viability and Metabolic Functionality of Probiotics Lactobacillus rhamnosus GG through Gastrointestinal Passage.10.20

~~~

---
Oliveira, Bruno César Miranda et al.
PLoS Negl Trop Dis. (2019).
13(9):e0007411
31560681
PM2019.09Deprivation of dietary fiber enhances susceptibility of mice to cryptosporidiosis.72.10

~~~

---
Zhu, Suqin et al.
Int J Nanomedicine. (2019).
14:8361-8378
31749615
PM2019.00Platinum Nanoparticles As A Therapeutic Agent Against Dextran Sodium Sulfate-Induced Colitis In Mice.61.50

~~~

---
Palermo, Amelia et al.
ACS Nano. (2018).
12(7):6938-6948
29966083
PM2018.07Fluorinated Gold Nanoparticles for Nanostructure Imaging Mass Spectrometry.30.70

~~~

---
Song, Min et al.
Anim Nutr. (2021).
7(2):365-375
34258424
PM2021.06Dietary chenodeoxycholic acid improves growth performance and intestinal health by altering serum metabolic profiles and gut bacteria in weaned piglets.53.20

~~~

---
Ierardi, Enzo et al.
Scand J Gastroenterol. (2016).
51(3):277-80
26375876
PM2016.03Macronutrient intakes in obese subjects with or without small intestinal bacterial overgrowth: an alimentary survey.162.31

~~~

---
Ordoñez-Díaz, José et al.
Foods. (2020).
9(12)
33321767
PM2020.12In Vitro Gastrointestinal Digestion and Colonic Catabolism of Mango (Mangifera indica L.) Pulp Polyphenols.62.90

~~~

---
Yang, Zixin et al.
Foods. (2021).
10(6)
34208433
PM2021.06Dietary Fiber Modulates the Fermentation Patterns of Cyanidin-3-O-Glucoside in a Fiber-Type Dependent Manner.42.50

~~~

---
Nishiguchi, Ryohei et al.
Carcinogenesis. (2021).
42(6):842-852
33513602
PM2021.06Dietary interventions to prevent high-fructose diet-associated worsening of colitis and colitis-associated tumorigenesis in mice.31.90

~~~

---


30200383
PM.--20.00

~~~

---
Engel, Philipp et al.
Proc Natl Acad Sci U S A. (2012).
109(27):11002-7
22711827
PM2012.07Functional diversity within the simple gut microbiota of the honey bee.26725.43

~~~

---
Atherly, Todd; Ziemer, Cherie J
Microbiologyopen. (2014).
3(2):225-38
24532571
PM2014.04Bacteroides isolated from four mammalian hosts lack host-specific 16S rRNA gene phylogeny and carbon and nitrogen utilization patterns.80.90

~~~

---
Ziemer, Cherie J
Appl Environ Microbiol. (2014).
80(2):574-85
24212576
PM2014.01Newly cultured bacteria with broad diversity isolated from eight-week continuous culture enrichments of cow feces on complex polysaccharides.262.90

~~~

---
Lee, So-Yeon et al.
Int J Syst Evol Microbiol. (2019).
69(10):3148-3154
31385778
PM2019.10Undibacterium piscinae sp. nov., isolated from Korean shiner intestine.51.50

~~~

---
Dec, Marta et al.
Animals (Basel). (2021).
11(4)
33807321
PM2021.03Biodiversity of Ligilactobacillus salivarius Strains from Poultry and Domestic Pigeons.52.70

~~~

---
Wang, W et al.
J Anim Sci. (2012).
90 Suppl 4:400-2
23365392
PM2012.12The porcine gut microbial metagenomic library for mining novel cellulases established from growing pigs fed cellulose-supplemented high-fat diets.40.40

~~~

---
Banerjee, Sagarika et al.
Microb Cell Fact. (2021).
20(1):173
34488774
PM2021.09Transcriptomics reveal different metabolic strategies for acid resistance and gamma-aminobutyric acid (GABA) production in select Levilactobacillus brevis strains.21.50

~~~

---
Esther Lydia, D et al.
J Photochem Photobiol B. (2020).
206:111868
32259745
PM2020.04Photo-activated synthesis and characterization of gold nanoparticles from Punica granatum L. seed oil: An assessment on antioxidant and anticancer properties for functional yoghurt nutraceuticals.31.10

~~~

---
Zheng, L et al.
J Appl Microbiol. (2020).
128(6):1764-1775
32027448
PM2020.06Isolation of swine-derived Lactobacillus plantarum and its synergistic antimicrobial and health-promoting properties with ZnO nanoparticles.31.20

~~~

---
Tran, Tam T T et al.
Microbiome. (2019).
7(1):39
30867067
PM2019.03Prebiotic supplementation in frail older people affects specific gut microbiota taxa but not global diversity.307.82

~~~

---
Shen, Xi et al.
Mucosal Immunol. (2018).
11(5):1316-1328
29875401
PM2018.09Supplementation of p40, a Lactobacillus rhamnosus GG-derived protein, in early life promotes epidermal growth factor receptor-dependent intestinal development and long-term health outcomes.225.10

~~~

---
Ou, Keqin et al.
Mol Nutr Food Res. (2014).
58(11):2196-205
25045165
PM2014.11Microbial catabolism of procyanidins by human gut microbiota.253.10

~~~

---
Bottacini, Francesca et al.
BMC Genomics. (2014).
15(1):170
24581150
PM2014.03Comparative genomics of the Bifidobacterium breve taxon.697.80

~~~

---
Ludvigsen, Jane et al.
Mol Ecol. (2017).
26(23):6590-6607
29087008
PM2017.12Geographically widespread honeybee-gut symbiont subgroups show locally distinct antibiotic-resistant patterns.122.40

~~~

---
Klaassens, Eline S et al.
Gut Microbes. (2011).
2(4):217-26
21983068
PM2011.00The fecal bifidobacterial transcriptome of adults: a microarray approach.30.20

~~~

---
Zhao, Luqing et al.
Front Pharmacol. (2021).
12:644387
33959013
PM2021.00Berberine-Loaded Carboxylmethyl Chitosan Nanoparticles Ameliorate DSS-Induced Colitis and Remodel Gut Microbiota in Mice.62.90

~~~

---
Bondarenko, Olesja M et al.
Carbohydr Polym. (2016).
136:710-20
26572404
PM2016.01Bacterial polysaccharide levan as stabilizing, non-toxic and functional coating material for microelement-nanoparticles.111.60

~~~

---
Cheema, Amrita K et al.
Anim Microbiome. (2021).
3(1):71
34627406
PM2021.10Microbiome study in irradiated mice treated with BIO 300, a promising radiation countermeasure.10.80

~~~

---
Toivonen, Raine K et al.
Diabetologia. (2014).
57(10):2183-92
25031069
PM2014.10Fermentable fibres condition colon microbiota and promote diabetogenesis in NOD mice.151.80

~~~

---
Wu, Yuqin et al.
Front Microbiol. (2021).
12:683905
34122394
PM2021.00Metabolome and Microbiota Analysis Reveals the Conducive Effect of Pediococcus acidilactici BCC-1 and Xylan Oligosaccharides on Broiler Chickens.41.90

~~~

---
Diotallevi, Camilla et al.
Mol Nutr Food Res. (2022).
66(3):e2100405
34821456
PM2022.02Ex Vivo Fecal Fermentation of Human Ileal Fluid Collected After Wild Strawberry Consumption Modulates Human Microbiome Community Structure and Metabolic Output and Protects Against DNA Damage in Colonic Epithelial Cells.00.00

~~~

---
Cho, Youngji et al.
Am J Respir Cell Mol Biol. (2018).
59(3):346-354
29529379
PM2018.09The Microbiome Regulates Pulmonary Responses to Ozone in Mice.245.52

~~~

---
Gou, Shuangquan et al.
Biomaterials. (2019).
212:39-54
31103945
PM2019.08Multi-bioresponsive silk fibroin-based nanoparticles with on-demand cytoplasmic drug release capacity for CD44-targeted alleviation of ulcerative colitis.308.81

~~~

---
Lu, Zhaoyu et al.
Front Pharmacol. (2020).
11:606227
33551808
PM2020.00Nanoparticle-Mediated Delivery of Emodin via Colonic Irrigation Attenuates Renal Injury in 5/6 Nephrectomized Rats.41.30

~~~

---
Kim, Jinhee et al.
BMC Microbiol. (2021).
21(1):165
34082713
PM2021.06Lactobacillus rhamnosus GG modifies the metabolome of pathobionts in gnotobiotic mice.42.50

~~~

---
Marcial-Coba, Martín Sebastián et al.
Food Funct. (2018).
9(11):5868-5879
30362482
PM2018.11Viability of microencapsulated Akkermansia muciniphila and Lactobacillus plantarum during freeze-drying, storage and in vitro simulated upper gastrointestinal tract passage.71.70

~~~

---
Stenman, Lotta K et al.
EBioMedicine. (2016).
13:190-200
27810310
PMC 2016.11Probiotic With or Without Fiber Controls Body Fat Mass, Associated With Serum Zonulin, in Overweight and Obese Adults-Randomized Controlled Trial.477.63

~~~

---
Wu, Hui-Qing et al.
Front Nutr. (2021).
8:769181
34805250
PM2021.00Sequential Extraction, Characterization, and Analysis of Pumpkin Polysaccharides for Their Hypoglycemic Activities and Effects on Gut Microbiota in Mice.73.40

~~~

---
Majumdar, Sayari et al.
Food Funct. (2021).
12(12):5501-5523
34002192
PM2021.06Evaluation of nutraceutical application of xylooligosaccharide enzymatically produced from cauliflower stalk for its value addition through a sustainable approach.21.30

~~~

---
Rodríguez-Daza, Maria-Carolina et al.
Front Microbiol. (2020).
11:2032
32983031
PM2020.00Berry Polyphenols and Fibers Modulate Distinct Microbial Metabolic Functions and Gut Microbiota Enterotype-Like Clustering in Obese Mice.278.80

~~~

---
Muhammad, Abrar et al.
Sci Total Environ. (2022).
813:152608
34973320
PM2022.03Dietary exposure of copper and zinc oxides nanoparticles affect the fitness, enzyme activity, and microbial community of the model insect, silkworm Bombyx mori.56.00

~~~

---
Zheng, Shilian et al.
Food Res Int. (2021).
139:109833
33509458
PM2021.01Do short chain fatty acids and phenolic metabolites of the gut have synergistic anti-inflammatory effects? - New insights from a TNF-α-induced Caco-2 cell model.42.00

~~~

---
Shevlyakov, Artem et al.
Public Health Nutr. (2021):1-15
34105446
PM2021.06Reference values for intake of six types of soluble and insoluble fibre in healthy UK inhabitants based on the UK Biobank data.10.60

~~~

---
Gori, A et al.
Mucosal Immunol. (2011).
4(5):554-63
21525866
PMC 2011.09Specific prebiotics modulate gut microbiota and immune activation in HAART-naive HIV-infected adults: results of the "COPA" pilot randomized trial.907.90

~~~

---
Jiang, Xueyuan et al.
Front Microbiol. (2020).
11:2055
32983040
PM2020.00The Microbiome-Metabolome Response in the Colon of Piglets Under the Status of Weaning Stress.92.90

~~~

---
Suresh, Anagha Priya et al.
ACS Omega. (2021).
6(27):17635-17641
34278148
PM2021.07Low pH-Based Method to Increase the Yield of Plant-Derived Nanoparticles from Fresh Ginger Rhizomes.42.70

~~~

---
Kociova, Silvia et al.
J Anim Sci Biotechnol. (2020).
11:59
32528676
PM2020.00Zinc phosphate-based nanoparticles as alternatives to zinc oxide in diet of weaned piglets.103.20

~~~

---
Zhu, Suqin et al.
J Nanobiotechnology. (2018).
16(1):86
30384844
PM2018.11Orally administered gold nanoparticles protect against colitis by attenuating Toll-like receptor 4- and reactive oxygen/nitrogen species-mediated inflammatory responses but could induce gut dysbiosis in mice.102.42

~~~

---
Ghimire, Sudeep et al.
mSystems. (2020).
5(1)
32019832
PM2020.02Identification of Clostridioides difficile-Inhibiting Gut Commensals Using Culturomics, Phenotyping, and Combinatorial Community Assembly.279.31

~~~

---
Hansen, Rebecca L et al.
Anal Bioanal Chem. (2019).
411(1):147-156
30377739
PM2019.01Nanoparticle microarray for high-throughput microbiome metabolomics using matrix-assisted laser desorption ionization mass spectrometry.30.80

~~~

---
Liu, Yong-Jun et al.
Front Microbiol. (2021).
12:780943
34925285
PM2021.00Nano-La2O3 Induces Honeybee (Apis mellifera) Death and Enriches for Pathogens in Honeybee Gut Bacterial Communities.00.00

~~~

---
Carlson-Banning, Kimberly M; Sperandio, Vanessa
mBio. (2016).
7(6)
27879335
PM2016.11Catabolite and Oxygen Regulation of Enterohemorrhagic Escherichia coli Virulence.304.92

~~~

---
Rogler, Gerhard et al.
Dig Dis. (2016).
34 Suppl 1:48-55
27548430
PM2016.00The Search for Causative Environmental Factors in Inflammatory Bowel Disease.152.10

~~~

---
Radziwill-Bienkowska, Joanna M et al.
Front Microbiol. (2018).
9:794
29740421
PM2018.00Toxicity of Food-Grade TiO2 to Commensal Intestinal and Transient Food-Borne Bacteria: New Insights Using Nano-SIMS and Synchrotron UV Fluorescence Imaging.203.92

~~~

---
Kolb, Steven A et al.
Data Brief. (2019).
25:104375
31467957
PM2019.08Data on the characterization of phthalate-degrading bacteria from Asian carp microbiomes and riverine sediments.20.60

~~~

---
Monagas, María et al.
Br J Nutr. (2009).
102(2):201-6
19586571
PM2009.07Dihydroxylated phenolic acids derived from microbial metabolism reduce lipopolysaccharide-stimulated cytokine secretion by human peripheral blood mononuclear cells.382.83

~~~

---
Gugołek, Andrzej et al.
J Exp Zool A Ecol Genet Physiol. (2015).
323(9):637-44
26350446
PM2015.11Nutrient digestibility and colonic fermentation processes in species of the families Mustelidae and Canidae fed the same diet.81.11

~~~

---
Xia, Tian et al.
Oncotarget. (2017).
8(39):64878-64891
29029398
PM2017.09Dietary ZnO nanoparticles alters intestinal microbiota and inflammation response in weaned piglets.397.31

~~~

---
Nie, Xiaomin et al.
Comput Struct Biotechnol J. (2020).
18:2596-2609
33033580
PM2020.00A metagenome-wide association study of gut microbiome and visceral fat accumulation.154.90

~~~

---
Li, Xuemei et al.
J Microbiol. (2012).
50(1):29-37
22367934
PM2012.02Host species as a strong determinant of the intestinal microbiota of fish larvae.403.70

~~~

---
Bubnov, Rostyslav et al.
EPMA J. (2019).
10(4):317-335
31832109
PM2019.12Can tailored nanoceria act as a prebiotic? Report on improved lipid profile and gut microbiota in obese mice.185.80

~~~

---
Sun, Hui et al.
J Nanosci Nanotechnol. (2021).
21(10):5352-5362
33875129
PM2021.10Increased Production of Short-Chain Fatty Acids in Microbacteria Fermentation Treated by Fullerenols.00.00

~~~

---
Alkhaldy, Areej et al.
Eur J Nutr. (2019).
58(3):1095-1111
29488010
PM2019.04The urinary phenolic acid profile varies between younger and older adults after a polyphenol-rich meal despite limited differences in in vitro colonic catabolism.92.41

~~~

---
Wei, Yusen et al.
Microorganisms. (2021).
9(6)
34205785
PM2021.06Encapsulated Mixture of Methyl Salicylate and Tributyrin Modulates Intestinal Microbiota and Improves Growth Performance of Weaned Piglets.00.00

~~~

---
Wang, Yibing et al.
Animals (Basel). (2020).
10(10)
33053884
PM2020.10Potential Effects of Acidifier and Amylase as Substitutes for Antibiotic on the Growth Performance, Nutrient Digestion and Gut Microbiota in Yellow-Feathered Broilers.31.30

~~~

---
Liu, Haoyu et al.
J Anim Sci Biotechnol. (2013).
4(1):50
24341997
PM2013.12Chicory (Cichorium intybus L.) and cereals differently affect gut development in broiler chickens and young pigs.30.30

~~~

---
Caruana, Julie C et al.
Bio Protoc. (2021).
11(17):e4145
34604450
PM2021.09Isolation and Characterization of Membrane Vesicles from Lactobacillus Species.10.80

~~~

---
Kalyani, Dayanand C et al.
J Struct Biol X. (2021).
5:100048
34195602
PM2021.00Crystal structure of a homotrimeric verrucomicrobial exo-β-1,4-mannosidase active in the hindgut of the wood-feeding termite Reticulitermes flavipes.10.50

~~~

---
Zhu, Lifeng et al.
Evol Appl. (2021).
14(3):735-745
33767748
PM2021.03Gut microbiomes of bigheaded carps and hybrids provide insights into invasion: A hologenome perspective.63.30

~~~

---
Martemyanov, Vyacheslav V et al.
Ecol Evol. (2016).
6(20):7298-7310
28725398
PM2016.10Phenological asynchrony between host plant and gypsy moth reduces insect gut microbiota and susceptibility to Bacillus thuringiensis.81.30

~~~

---
Hayashi, Wataru et al.
Microb Drug Resist. (2021).
27(10):1433-1442
33835858
PM2021.10Presence of Colistin- and Tigecycline-Resistant Klebsiella pneumoniae ST29 in Municipal Wastewater Influents in Japan.43.20

~~~

---
Jiang, Zhen et al.
Adv Healthc Mater. (2021).
10(24):e2100356
34160147
PM2021.12Surfactant-Stripped Micelles with Aggregation-Induced Enhanced Emission for Bimodal Gut Imaging In Vivo and Microbiota Tagging Ex Vivo.10.90

~~~

---
Liang, Duo et al.
Crit Rev Food Sci Nutr. (2022).
62(16):4418-4434
33480263
PMR 2022.00Advances of microfluidic intestine-on-a-chip for analyzing anti-inflammation of food.21.80

~~~

---
Ye, Lin et al.
ISME J. (2014).
8(3):541-551
24132079
PM2014.03Fish gut microbiota analysis differentiates physiology and behavior of invasive Asian carp and indigenous American fish.849.51

~~~

---
Arya, Sankalp et al.
Environ Pollut. (2021).
275:116602
33582634
PM2021.04Towards a general model for predicting minimal metal concentrations co-selecting for antibiotic resistance plasmids.31.70

~~~

---
Schauf, Sofia et al.
J Anim Sci. (2018).
96(9):3684-3698
30060077
PM2018.09Effect of dietary fat to starch content on fecal microbiota composition and activity in dogs1.173.90

~~~

---
Hong, Liang et al.
Front Microbiol. (2021).
12:715241
34475865
PM2021.00Synbiotics Containing Nanoprebiotics: A Novel Therapeutic Strategy to Restore Gut Dysbiosis.00.00

~~~

---
Wu, Lei et al.
J Control Release. (2017).
262:273-283
28774842
PM2017.09Bioinspired butyrate-functionalized nanovehicles for targeted oral delivery of biomacromolecular drugs.132.40

~~~

---
Ren, Zhigang et al.
Small. (2020).
16(2):e1905233
31814271
PM2020.01Nanoparticle Conjugation of Ginsenoside Rg3 Inhibits Hepatocellular Carcinoma Development and Metastasis.3110.30

~~~

---
Peng, Yongjia et al.
BMC Microbiol. (2019).
19(1):109
31126241
PM2019.05Dietary probiotics have different effects on the composition of fecal microbiota in farmed raccoon dog (Nyctereutes procyonoides) and silver fox (Vulpes vulpes fulva).71.90

~~~

---
Jin, Zhaokui et al.
Biomaterials. (2021).
276:121030
34298442
PM2021.09Nanocapsule-mediated sustained H2 release in the gut ameliorates metabolic dysfunction-associated fatty liver disease.53.80

~~~

---
Li, Shangyong et al.
Drug Deliv. (2021).
28(1):1120-1131
34121560
PM2021.12An efficient enzyme-triggered controlled release system for colon-targeted oral delivery to combat dextran sodium sulfate (DSS)-induced colitis in mice.21.80

~~~

---
Wu, Yanglin et al.
J Nanobiotechnology. (2021).
19(1):170
34092246
PM2021.06Melatonin alleviates titanium nanoparticles induced osteolysis via activation of butyrate/GPR109A signaling pathway.116.90

~~~

---
Taormina, Michael J et al.
Biophys J. (2017).
113(4):957-965
28834731
PM2017.08Passive and Active Microrheology of the Intestinal Fluid of the Larval Zebrafish.91.70

~~~

---
Zhao, Zhe et al.
Acta Pharm Sin B. (2021).
11(9):2859-2879
34589401
PM2021.09Novel compound FLZ alleviates rotenone-induced PD mouse model by suppressing TLR4/MyD88/NF-κB pathway through microbiota-gut-brain axis.64.50

~~~

---
Wu, Xue et al.
Curr Med Chem. (2022).
29(40):6125-6140
34844533
PMR 2022.00Retinal Degeneration: Molecular Mechanisms and Therapeutic Strategies.00.00

~~~

---
Pereira, Dora I A et al.
Microbiologyopen. (2015).
4(1):12-27
25461615
PM2015.02Dietary iron depletion at weaning imprints low microbiome diversity and this is not recovered with oral Nano Fe(III).141.81

~~~

---
Jeevarathinam, A S et al.
Mater Today Bio. (2021).
9:100092
33554105
PM2021.01Enzyme functionalized microgels enable precise regulation of dissolved oxygen and anaerobe culture.21.00

~~~

---
Li, Chenwen et al.
Adv Sci (Weinh). (2019).
6(18):1900610
31559126
PM2019.09A Proresolving Peptide Nanotherapy for Site-Specific Treatment of Inflammatory Bowel Disease by Regulating Proinflammatory Microenvironment and Gut Microbiota.3711.11

~~~

---
Yang, Chunhua et al.
Pharmaceutics. (2021).
13(9)
34575431
PM2021.08Orally Administered Natural Lipid Nanoparticle-Loaded 6-Shogaol Shapes the Anti-Inflammatory Microbiota and Metabolome.21.40

~~~

---
Beloqui, Ana et al.
Nat Protoc. (2017).
12(7):1387-1399
28617450
PM2017.07A human intestinal M-cell-like model for investigating particle, antigen and microorganism translocation.152.70

~~~

---


32978613
PM.--30.00

~~~

---
More, Simon et al.
EFSA J. (2021).
19(8):e06768
34377190
PM2021.08Guidance on risk assessment of nanomaterials to be applied in the food and feed chain: human and animal health.3021.20

~~~

---
Li, Changjiang et al.
ACS Appl Mater Interfaces. (2021).
13(39):46406-46420
34569225
PM2021.10Oral Administration of Resveratrol-Selenium-Peptide Nanocomposites Alleviates Alzheimer's Disease-like Pathogenesis by Inhibiting Aβ Aggregation and Regulating Gut Microbiota.75.60

~~~

---
Bodkin, Darren et al.
Pediatr Res. (2022).
92(1):109-117
34455420
PM2022.07Neonatal intermittent hypoxia, fish oil, and/or antioxidant supplementation on gut microbiota in neonatal rats.00.00

~~~

---
Oh, Seung Min et al.
Asian-Australas J Anim Sci. (2020).
33(6):992-1001
32054217
PM2020.06Hot melt extruded-based nano zinc as an alternative to the pharmacological dose of ZnO in weanling piglets.83.10

~~~

---
Chen, Yue et al.
Appl Environ Microbiol. (2021).
87(23):e0163621
34524898
PM2021.11Protective Effects of Selenium Nanoparticle-Enriched Lactococcus lactis NZ9000 against Enterotoxigenic Escherichia coli K88-Induced Intestinal Barrier Damage in Mice.21.70

~~~

---
Shay, Jerry W. et al.
BMC Genomics. (2016).
17 Suppl 6(Suppl 6):487
27454254
PM2016.07Abstracts from the 3rd International Genomic Medicine Conference (3rd IGMC 2015) : Jeddah, Kingdom of Saudi Arabia. 30 November - 3 December 2015.50.80

~~~

---
Kan, JA et al.
. (). :
000551711700044
WoS.00Polyphenolic-enriched peach peels extract regulates lipid metabolism and improves the gut microbiota composition in high fat diet-fed mice00.00

~~~

---
Tang, D et al.
. (). :
000508491000056
WoS.00Chitosan attenuates obesity by modifying the intestinal microbiota and increasing serum leptin levels in mice00.00

~~~

---
Li, JJ et al.
. (). :
000585225100080
WoS.00DIFFERENT RESPONSE PATTERNS OF FISH FOREGUT AND HINDGUT MICROBIOTA TO HOST HABITATS AND GENOTYPES00.00

~~~

---
Peng, QN et al.
. (). :
000447818000053
WoS.00Monosodium glutamate induces limited modulation in gut microbiota00.00

~~~

---
Viennois, E; Chassaing, B
. (). :
000446650400008
WoS.00First victim, later aggressor: How the intestinal microbiota drives the pro-inflammatory effects of dietary emulsifiers?00.00

~~~

---
Li, Y et al.
. (). :
000458096800007
WoS.00Lactobacillus plantarum helps to suppress body weight gain, improve serum lipid profile and ameliorate low-grade inflammation in mice administered with glycerol monolaurate00.00

~~~

---
Fang, DL et al.
. (). :
000659406800005
WoS.00Auricularia polytricha noodles prevent hyperlipemia and modulate gut microbiota in high-fat diet fed mice00.00

~~~

---
Valadez, D et al.
. (). :
000488295500005
WoS.00Food Additives, the Gut Microbiota, and Inflammatory Bowel Disease: Interpreting the Interplay00.00

~~~

---
Hmar, EL et al.
. (). :
000607137700002
WoS.00Apprehending Ulcerative Colitis Management With Springing Up Therapeutic Approaches: Can Nanotechnology Play a Nascent Role?00.00

~~~

---
Rajoka, MSR et al.
. (). :
000603514900003
WoS.00Gut microbiota targeted nanomedicine for cancer therapy: Challenges and future considerations00.00

~~~

---
Meier, MJ et al.
. (). :
000693339600004
WoS.00Low dose antibiotic ingestion potentiates systemic and microbiome changes induced by silver nanoparticles00.00

~~~

---
Skendzic, E; Keler, C
. (). :
000458241800008
WoS.00Fruit Flies & the Gut Microbiome: Redesign-Your-Bacteria Lab Exercise00.00

~~~

---
Theriot, CM et al.
. (). :
000331084400023
WoS.00Antibiotic-induced shifts in the mouse gut microbiome and metabolome increase susceptibility to Clostridium difficile infection00.00

~~~

---
Matsumoto, M et al.
. (). :
000406080900003
WoS.00Effects of functional milk containing galactooligosaccharide, maltitol, and glucomannan on the production of hydrogen gas in the human intestine00.00

~~~

---
Luo, M et al.
. (). :
000691735600014
WoS.00Influences of food contaminants and additives on gut microbiota as well as protective effects of dietary bioactive compounds00.00

~~~

---
Michalski, MC et al.
. (). :
000376692300007
WoS.00Dietary lipid emulsions and endotoxemia00.00

~~~

---
Singh, B et al.
. (). :
000600555100005
WoS.00Gastrointestinal biotransformation of phytochemicals: Towards futuristic dietary therapeutics and functional foods00.00

~~~

---
Wu, B et al.
. (). :
000473076700024
WoS.00Differential influence of molybdenum disulfide at the nanometer and micron scales in the intestinal metabolome and microbiome of mice00.00

~~~

---
Dam, CTM et al.
. (). :
000617442100004
WoS.00Alternative Feed Raw Materials Modulate Intestinal Microbiota and Its Relationship with Digestibility in Yellowtail Kingfish Seriola lalandi00.00

~~~

---
Zhang, CN et al.
. (). :
000508491000030
WoS.00Xylan-oligosaccharides ameliorate high fat diet induced obesity and glucose intolerance and modulate plasma lipid profile and gut microbiota in mice00.00

~~~

---
Li, YD et al.
. (). :
000496482700023
WoS.00Interaction of antibacterial silver nanoparticles and microbiota-dependent holobionts revealed by metatranscriptomic analysis00.00

~~~

---
Wu, JT et al.
. (). :
000537092900017
WoS.00Release of silver from nanoparticle-based filter paper and the impacts to mouse gut microbiota00.00

~~~

---
Li, XB et al.
. (). :
000470659300018
WoS.00Prebiotic protects against anatase titanium dioxide nanoparticles-induced microbiota-mediated colonic barrier defects00.00

~~~

---
Wilkowska, A et al.
. (). :
000737161800001
WoS.00Influence of Human Age on the Prebiotic Effect of Pectin-Derived Oligosaccharides Obtained from Apple Pomace00.00

~~~

---
Chen, ZX et al.
. (). :
000719812400002
WoS.00Combination gut microbiota modulation and chemotherapy for orthotopic colorectal cancer therapy00.00

~~~

---
Campos, DA et al.
. (). :
000525739700004
WoS.00Impact of functional flours from pineapple by-products on human intestinal microbiota00.00

~~~

---
Xu, YY et al.
. (). :
000493806000010
WoS.00Effect of xylitol on gut microbiota in an in vitro colonic simulation00.00

~~~

---
Benkovic, ET et al.
. (). :
000415735300007
WoS.00Identification, in vitro and in vivo Antioxidant Activity, and Gastrointestinal Stability of Lignans from Silver Fir (Abies alba) Wood Extract00.00

~~~

---
Paturi, G et al.
. (). :
000425222000009
WoS.00Short-term feeding of fermentable dietary fibres influences the gut microbiota composition and metabolic activity in rats00.00

~~~

---
Suez, J et al.
. (). :
000342663100032
WoS.00Artificial sweeteners induce glucose intolerance by altering the gut microbiota00.00

~~~

---
Bondonno, NP et al.
. (). :
000415774200007
WoS.00The cardiovascular health benefits of apples: Whole fruit vs. isolated compounds00.00

~~~

---
Mercier-Bonin, M et al.
. (). :
000410349700006
WoS.00Oral exposure and fate of food nanoparticles within the gut: Examples of silver and titanium dioxide00.00

~~~

---
Bharani, SA; Namasivayam, SKR
. (). :
000398950800047
WoS.00Biogenic silver nanoparticles mediated stress on developmental period and gut physiology of major lepidopteran pest Spodoptera litura (Fab.) (Lepidoptera: Noctuidae)-An eco-friendly approach of insect pest control00.00

~~~

---
Zheng, XJ et al.
. (). :
000435795200005
WoS.00The modulatory effect of nanocomplexes loaded with EGCG3 '' Me on intestinal microbiota of high fat diet-induced obesity mice model00.00

~~~

---
Di, T et al.
. (). :
000428005500003
WoS.00In vitro digestion by saliva, simulated gastric and small intestinal juices and fermentation by human fecal microbiota of sulfated polysaccharides from Gracilaria rubra00.00

~~~

---
Comtet-Marre, S et al.
. (). :
000581124200006
WoS.00Effects of environmental and food pollutants on the gut microbiota00.00

~~~

---
Dennis-Wall, JC et al.
. (). :
000478858700042
WoS.00A beverage containing orange pomace improves laxation and modulates the microbiome in healthy adults: A randomised, blinded, controlled trial00.00

~~~

---
Chaud, SG et al.
. (). :
000254832500023
WoS.00Influence of yeast (Saccharomyces cerevisiae) cell wall fractions on serum indexes of glucose and lipids, intestinal microbiota and production of short-chain volatile fatty acids (VFA) in growing rats00.00

~~~

---
Li, N et al.
. (). :
000437992100021
WoS.00Analysis of the Intestinal Microbiota in Autistic Patients by Denaturing Gradient Gel Electrophoresis00.00

~~~

---
Guo, HH et al.
. (). :
000467109100015
WoS.00Dual-Stimuli-Responsive Gut Microbiota-Targeting Berberine-CS/PT-NPs Improved Metabolic Status in Obese Hamsters00.00

~~~

---
Balykina, AB et al.
. (). :
000449630700320
WoS.00The Influence Of The Animal Feed Components And Biologically Active Substances Into The Intestinal Microbiota State Of The Bird00.00

~~~

---
Hunting, ER et al.
. (). :
000684581500001
WoS.00Effect of carcass contamination on necrophagous invertebrate performance00.00

~~~

---
Dinca, Z et al.
. (). :
000673276800007
WoS.00BEHAVIOR OF SILVER AND GOLD NANOPARTICLES IN SIMULATED BIOLOGICAL FLUIDS: NEEDS AND CHALLENGES00.00

~~~

---
Kolb, SA et al.
. (). :
000488421200010
WoS.00Characterization of phthalate-degrading bacteria from Asian carp microbiomes and riverine sediments00.00

~~~

---
Yu, Y et al.
. (). :
000667604700004
WoS.00Particle size rather than concentration of silver nanoparticles mainly affects soil N-2-fixing bacterial communities00.00

~~~

---
Buks, F et al.
. (). :
000548525200001
WoS.00What do we know about how the terrestrial multicellular soil fauna reacts to microplastic?00.00

~~~

---
An, C et al.
. (). :
000315241500046
WoS.00Diet-induced changes in alginate- and laminaran-fermenting bacterial levels in the caecal contents of rats00.00

~~~

---
Houdeau, E et al.
. (). :
000451917200004
WoS.00Nanoparticles and food: An emerging risk for human health?00.00

~~~

---
Wang, HS et al.
. (). :
000360253300052
WoS.00Obesity prevention of synthetic polysaccharides in high-fat diet fed C57BL/6 mice00.00

~~~

---
Li, YD et al.
. (). :
000731425600001
WoS.00Gut-microbial adaptation and transformation of silver nanoparticles mediated the detoxification of Daphnia magna and their offspring00.00

~~~

---
Odun-Ayo, F et al.
. (). :
000411814900021
WoS.00The effect of modified citrus pectin-probiotic on faecal lactobacilli in Balb/c mice00.00

~~~

---
Wang, HY et al.
. (). :
000502884600018
WoS.00Polysaccharide from tuberous roots of Ophiopogon japonicus regulates gut microbiota and its metabolites during alleviation of high-fat diet-induced type-2 diabetes in mice00.00

~~~

---
Li, J et al.
. (). :
000445221300015
WoS.00Lipid- and gut microbiota-modulating effects of graphene oxide nanoparticles in high-fat diet-induced hyperlipidemic mice00.00

~~~

---
Paturi, G et al.
. (). :
000670126000001
WoS.00Gut microbiota responses to dietary fibre sources in rats fed starch-based or quasi-human background diets00.00

~~~

---
Shi, YN et al.
. (). :
000643932300015
WoS.00Encapsulation of bioactive polyphenols by starch and their impacts on gut microbiota00.00

~~~

---
Qian, LJ et al.
. (). :
000405312800021
WoS.00Impact of Rural and Urban Environmental Microbial Exposure on Intestinal Microbiota in Early Infancy00.00

~~~

---
Wang, HS et al.
. (). :
000463462700017
WoS.00In vitro fermentation of novel microwave-synthesized non-digestible oligosaccharides and their impact on the composition and metabolites of human gut microbiota00.00

~~~

---
Waller, T et al.
. (). :
000407119700001
WoS.00Food and Industrial Grade Titanium Dioxide Impacts Gut Microbiota00.00

~~~

---
Zhu, XQ et al.
. (). :
000599059500004
WoS.00Long-term exposure to titanium dioxide nanoparticles promotes diet-induced obesity through exacerbating intestinal mucus layer damage and microbiota dysbiosis00.00

~~~

---
Lebedev, S et al.
. (). :
000444761800022
WoS.00Influence of various chromium compounds on physiological, morpho-biochemical parameters, and digestive enzymes activity in Wistar rats00.00

~~~

---
Wicker, L et al.
. (). :
000343812500005
WoS.00Pectin as a bioactive polysaccharide - Extracting tailored function from less00.00

~~~

---
Yue, Y et al.
. (). :
000649924600001
WoS.00Effects of Colonic Fermentation Products of Polydextrose, Lactitol and Xylitol on Intestinal Barrier Repair In Vitro00.00

~~~

---
Bilan, MV et al.
. (). :
000484341700013
WoS.00Combined effect of glyphosate, saccharin and sodium benzoate on the gut microbiota of rats00.00

~~~

---
Liu, LY et al.
. (). :
000376332800018
WoS.00Effects of titanium dioxide nanoparticles on intestinal commensal bacteria00.00

~~~

---
Lieshchova, MA et al.
. (). :
000457793600018
WoS.00Combined effect of glyphosphate, saccharin and sodium benzoate on rats00.00

~~~

---
Sutili, FJ et al.
. (). :
000478858700051
WoS.00Effect of dietary supplementation with citral-loaded nanostructured systems on innate immune responses and gut microbiota of silver catfish (Rhamdia quelen)00.00

~~~

---
Aljewicz, M et al.
. (). :
000447818000023
WoS.00Effect of milk gel acidity and beta-glucan structure on fermentation processes in the caecum and bioavailability of mineral compounds in growing rats00.00

~~~

---
Perez-Perez, LM et al.
. (). :
000697511200001
WoS.00Interaction of the human intestinal microbiota with the release of bound phenolic compounds in chickpea (Cicer arietinum L.)00.00

~~~

---
Aquilina, G et al.
. (). :
000409055100012
WoS.00Revision of the currently authorised maximum copper content in complete feed EFSA Panel on Additives and Products or Substances used in Animal Feed (FEEDAP)00.00

~~~

---
Ma, YB et al.
. (). :
000435961700011
WoS.00Sex dependent effects of silver nanoparticles on the zebrafish gut microbiota00.00

~~~

---
Fantino, M
. (). :
000476855100006
WoS.00Sweeteners: more or less?00.00

~~~

---
Xu, RY et al.
. (). :
000473248500009
WoS.00Effects of the different dietary fibers on luminal microbiota composition and mucosal gene expression in pig colons00.00

~~~

---
Michalski, MC et al.
. (). :
000402375000004
WoS.00Metabolic and inflammatory impacts of emulsified fat00.00

~~~

---
Du Le, H et al.
. (). :
000518218000040
WoS.00Pectin emulsions for colon-targeted release of propionic acid00.00

~~~

---
Yilmaz-Ersan, L et al.
. (). :
000437783100051
WoS.00THE EFFECT OF GUMS ON THE GROWTH OF BIFIDOBACTERIUM LONGUM00.00

~~~

---
Burgess, ER et al.
. (). :
000686095100001
WoS.00Diets of erythritol, xylitol, and sucrose affect the digestive activity and gut bacterial community in adult house flies00.00

~~~

---
Schymura, S et al.
. (). :
000662207100001
WoS.00Dissolution-based uptake of CeO2 nanoparticles by freshwater shrimp - a dual-radiolabelling study of the fate of anthropogenic cerium in water organisms00.00

~~~

---
Zhou, MY et al.
. (). :
000707261400007
WoS.00Assessing the in vitro digestion of Sesbania gum, a galactomannan from S. cannabina, and subsequent impact on the fecal microbiota00.00

~~~

---
Duan, CJ et al.
. (). :
000603645900055
WoS.00Ascertaining the biochemical function of an essential pectin methylesterase in the gut microbe Bacteroides thetaiotaomicron00.00

~~~

---
Mahato, DK et al.
. (). :
000613277700003
WoS.00Optimisation of natural sweeteners for sugar reduction in chocolate flavoured milk and their impact on sensory attributes00.00

~~~

---
Mancini, A et al.
. (). :
000500843200002
WoS.00In vitro probiotic characterization of high GABA producing strain Lactobacilluas brevis DSM 32386 isolated from traditional "wild" Alpine cheese00.00

~~~

---
Elzeini, HM et al.
. (). :
000532017800001
WoS.00Isolation and identification of lactic acid bacteria from the intestinal tracts of honey bees, Apis mellifera L., in Egypt00.00

~~~

---
Lin, XY et al.
. (). :
000637808000005
WoS.00Nanosafety evaluation through feces: A comparison between selenium nanoparticles and selenite in rats00.00

~~~

---
Khorshidi, Z et al.
. (). :
000433227600010
WoS.00The Interactive Effect of Dietary Curcumin and Silver Nanoparticles on Gut Microbiota of Common Carp (Cyprinus carpio)00.00

~~~

---
Rosales, TKO et al.
. (). :
000612695000002
WoS.00Nanoencapsulation of anthocyanins from blackberry (Rubus spp.) through pectin and lysozyme self-assembling00.00

~~~

---
Zhang, DQ et al.
. (). :
000507763200001
WoS.00Dietary fibre extracted from different types of whole grains and beans: a comparative study00.00

~~~

---
Cui, JF et al.
. (). :
000565528700012
WoS.00Alkali plus cellulase-extracted citrus pectins exhibit compact conformation and good fermentation properties00.00

~~~

---
Rovalino-Cordova, AM et al.
. (). :
000579501700017
WoS.00Effect of bean structure on microbiota utilization of plant nutrients: An in-vitro study using the simulator of the human intestinal microbial ecosystem (SHIME (R))00.00

~~~

---
Hou, AX et al.
. (). :
000491506100001
WoS.00Effects of 1, 3-dioleoyl-2-palmitoylglycerol and its plant-oil formula on the toddler fecal microbiota during in vitro fermentation00.00

~~~

---
Diao, H et al.
. (). :
000426710300029
WoS.00Modulation of intestine development by fecal microbiota transplantation in suckling pigs00.00

~~~

---
Vignesh, V et al.
. (). :
000351556100073
WoS.00Formulation of iron oxide nanoparticles using exopolysaccharide: evaluation of their antibacterial and anticancer activities00.00

~~~

---
Neves, MIL et al.
. (). :
000689292800005
WoS.00Xylooligosaccharides as an innovative carrier matrix of spray-dried natural blue colorant00.00

~~~

---
Qin, YT et al.
. (). :
000687252400005
WoS.00Colonic mucus-accumulating tungsten oxide nanoparticles improve the colitis therapy by targeting Enterobacteriaceae00.00

~~~

---
Cui, JF et al.
. (). :
000632780500003
WoS.00Pectins from fruits: Relationships between extraction methods, structural characteristics, and functional properties00.00

~~~

---
Taylor, AA et al.
. (). :
000363873200006
WoS.00Metal Oxide Nanoparticles Induce Minimal Phenotypic Changes in a Model Colon Gut Microbiota00.00

~~~

---
Bazina, L et al.
. (). :
000707375200001
WoS.00Biotransformations and cytotoxicity of graphene and inorganic two-dimensional nanomaterials using simulated digestions coupled with a triculture in vitro model of the human gastrointestinal epithelium00.00

~~~

---
Aleshina, E et al.
. (). :
000511706600011
WoS.00Transformation of microbiota of fish intestines and gills against the background of molybdenum oxide nanoparticles in environment00.00

~~~

---
Makivuokko, H et al.
. (). :
000238661100005
WoS.00Health benefits of emerging and established pre- and probiotics00.00

~~~

---
Khan, S et al.
. (). :
000370717900094
WoS.00Design, synthesis and in vitro evaluation of anticancer and antibacterial potential of surface modified Tb(OH)(3)@SiO2 core-shell nanoparticles00.00

~~~

---
Singh, RP et al.
. (). :
000565531000015
WoS.00Generation of structurally diverse pectin oligosaccharides having prebiotic attributes00.00

~~~

---
Tester, R; Al-Ghazzewi, F
. (). :
000398868000028
WoS.00Glucomannans and nutrition00.00

~~~

---
Dorier, M et al.
. (). :
000473076700020
WoS.00The food additive E171 and titanium dioxide nanoparticles indirectly alter the homeostasis of human intestinal epithelial cells in vitro00.00

~~~

---
Konturek, PC
. (). :
000450300800007
WoS.00Carbohydrate Malassimilation A Frequent and Underestimated Cause of Food Intolerance00.00

~~~

---
Fraiture, MA et al.
. (). :
000494889700036
WoS.00Detection strategy targeting a chloramphenicol resistance gene from genetically modified bacteria in food and feed products00.00

~~~

---
Tsanova-Savova, S et al.
. (). :
000388655600006
WoS.00FLAVONOIDS CONTENT IN FOODS IN RESPECT OF THEIR BIOACCESSIBILITY AND BIOAVAILABILITY00.00

~~~

---
Mortensen, A et al.
. (). :
000409059900016
WoS.00Re-evaluation of agar (E 406) as a food additive00.00

~~~

---
Santos, MA et al.
. (). :
000483983800022
WoS.00Pasteurised sugarcane juice supplemented with Lactobacillus casei and prebiotics: physicochemical stability, sensory acceptance and probiotic survival00.00

~~~

---
Badica, P et al.
. (). :
000654693700010
WoS.00MgB2 powders and bioevaluation of their interaction with planktonic microbes, biofilms, and tumor cells00.00

~~~

---
An, CY et al.
. (). :
000419079700001
WoS.00Biotransformation of food spice curcumin by gut bacterium Bacillus megaterium DCMB-002 and its pharmacological implications00.00

~~~

---
Mandal, S; Ghosh, K
. (). :
000313553400020
WoS.00Isolation of tannase-producing microbiota from the gastrointestinal tracts of some freshwater fish00.00

~~~

---
Robert, C et al.
. (). :
000729473100004
WoS.00Vegetable lecithins: Their metabolic impacts as food-grade ingredients00.00

~~~

---
Li, S et al.
. (). :
000333947200035
WoS.00The Effects of Rebaudioside A on Microbial Diversity in Mouse Intestine00.00

~~~

---
Silveira, ACP et al.
. (). :
000596861800018
WoS.00Antimicrobial effect of bothropstoxin-i in broilers00.00

~~~

---
Koshani, R; Madadlou, A
. (). :
000423888800025
WoS.00A viewpoint on the gastrointestinal fate of cellulose nanocrystals00.00

~~~

---
Nikolic, MV et al.
. (). :
000703602900001
WoS.00Metal oxide nanoparticles for safe active and intelligent food packaging00.00

~~~

---
Jafari, B et al.
. (). :
000471601600013
WoS.00Evaluation of the effects of extracellular vesicles derived from Faecalibacterium prausnitzii on lung cancer cell line00.00

~~~

---
Chen, HQ et al.
. (). :
000417016000009
WoS.00The effects of orally administered Ag, TiO2 and SiO2 nanoparticles on gut microbiota composition and colitis induction in mice00.00

~~~

---
Lecocq, A et al.
. (). :
000696385700004
WoS.00Probiotic properties of an indigenous Pediococcus pentosaceus strain on Tenebrio molitor larval growth and survival00.00

~~~

---
Rong, HY et al.
. (). :
000449705700018
WoS.00In vitro characterization of reactive oxygen species (ROS) generation by the commercially available Mesosilver (TM) dietary supplement00.00

~~~

---
Dangles, O
. (). :
000560357500004
WoS.00The antioxidant capacity of foods: Myths and reality00.00

~~~

---
Zhang, TH et al.
. (). :
000392623700002
WoS.00Sodium Butyrate Reduces Colitogenic Immunoglobulin A-Coated Bacteria and Modifies the Composition of Microbiota in IL-10 Deficient Mice00.00

~~~

---
Lieshchova, MA; Brygadyrenko, VV
. (). :
000654294500025
WoS.00Influence of Lavandula angustifolia, Melissa officinalis and Vitex angus-castus on the organism of rats fed with excessive fat-containing diet00.00

~~~

---
Rusu, C et al.
. (). :
000353483700022
WoS.00RISK FACTORS IN AUTISM SPECTRUM DISORDERS: THE ROLE OF GENETIC, EPIGENETIC, IMMUNE AND ENVIRONMENTAL INTERACTIONS00.00

~~~

---
Yerlikaya, O et al.
. (). :
000532916700001
WoS.00Analysis of some physicochemical, rheological, sensorial properties, and probiotic viability of fermented milks containing Enterococcus faecium and Enterococcus durans strains00.00

~~~

---
Ju, Z et al.
. (). :
000600070100023
WoS.00Exposure to a combination of silica nanoparticles and low-dose radiation aggravates lung fibrosis in mice via gut microbiota modulation00.00

~~~

---
Ramirez-Rodrigues, MM et al.
. (). :
000673686100002
WoS.00Digestibility and Bioaccessibility of Leaf Protein Concentrates and their Impact on Children Gut Microbiota00.00

~~~

---
Knudsen, A et al.
. (). :
000315824000020
WoS.00Comparative fermentation of insoluble carbohydrates in an in vitro human feces model spiked with Lactobacillus acidophilus NCFM00.00

~~~

---
Berlanga, M; Guerrero, R
. (). :
000373743400006
WoS.00The holobiont concept: the case of xylophagous termites and cockroaches00.00

~~~

---
Michalski, MC et al.
. (). :
000416752100004
WoS.00Metabolic and inflammatory impacts of emulsified fats and oils00.00

~~~

---
Diao, H et al.
. (). :
000403668900034
WoS.00Stimulation of intestinal growth with distal ileal infusion of short-chain fatty acid: a reevaluation in a pig model00.00

~~~

---
Guevorkyan, AG et al.
. (). :
000432756500003
WoS.00EFFECTS OF THE SELECTED PROBIOTIC MIXTURE IN FREE AND IMMOBILIZED FORMS ON THE PATHOPHYSIOLOGY OF SODIUM DEXTRAN SULPHATE - INDUCED ULCERATIVE COLITIS AND ASSOCIATED MOOD DISTURBANCES00.00

~~~

---
Munoz-Gonzalez, I et al.
. (). :
000333531500014
WoS.00Evaluation of SPE as Preparative Technique for the Analysis of Phenolic Metabolites in Human Feces00.00

~~~

---
Viscardi, S et al.
. (). :
000708180800009
WoS.00VOLATILE PROFILE AND CONSUMER ACCEPTABILITY OF NATURAL YOGHURTS ELABORATED WITH CHILEAN NATIVE CULTURES OF ENTEROCOCCUS SP. STRAIN BB3 AND LACTOBACILLUS SP. STRAIN BB600.00

~~~

---
Lokuge, GMS et al.
. (). :
000454926800002
WoS.00Prebiotic carbohydrate profile and in vivo prebiotic effect of pumpkin (Cucurbita maxima) grown in Sri Lanka00.00

~~~

---
Wei, W et al.
. (). :
000683388600009
WoS.00Amelioration of oxidative stress, inflammation and tumor promotion by Tin oxide-Sodium alginate-Polyethylene glycol-Allyl isothiocyanate nanocomposites on the 1,2-Dimethylhydrazine induced colon carcinogenesis in rats00.00

~~~

---
Anestis, V et al.
. (). :
000533614800013
WoS.00Effect of a dietary modification for fattening pigs on the environmental performance of commercial pig production in Greece00.00

~~~

---
Babaei, H et al.
. (). :
000528850400004
WoS.00The Effect of Titanium Dioxide Nanoparticles Synthesized by Bacillus tequilensis on clb Gene Expression of Colorectal Cancer-causing Escherichia coli00.00

~~~

---
DENIS, I et al.
. (). :
A1990DN04600003
WoS.00FERMENTATION OF DIFFERENT TYPES OF PURIFIED PECTINS BY PIG HIND-GUT MICROFLORA IN A SEMICONTINUOUS CULTURE SYSTEM00.00

~~~

---
Mortensen, A et al.
. (). :
000409059900002
WoS.00Re-evaluation of karaya gum (E 416) as a food additive00.00

~~~

---
Turrini, F et al.
. (). :
000512060400003
WoS.00From pomegranate marcs to a potential bioactive ingredient: a recycling proposal for pomegranate-squeezed marcs00.00

~~~

---
Hutapea, AM et al.
. (). :
000074302500005
WoS.00Digestion of stevioside, a natural sweetener, by various digestive enzymes00.00

~~~

---
Mortensen, A et al.
. (). :
000409059900006
WoS.00Re-evaluation of beta-cyclodextrin (E 459) as a food additive00.00

~~~

---
Saki, AA et al.
. (). :
000281581500007
WoS.00Microflora population, intestinal condition and performance of broilers in response to various rates of pectin and cellulose in the diet00.00

~~~

---
Kim, BJ et al.
. (). :
000377417100015
WoS.00Effect of microencapsulated Bacillus subtilis strain CBD2-fermented grain on loperamide-induced constipation in mice00.00

~~~

---
Kang, SA et al.
. (). :
000234360500018
WoS.00Effects of dietary fructan on cecal enzyme activities in rats00.00

~~~

---
Drakoularakou, A et al.
. (). :
000225782000005
WoS.00Established aid emerging prebiotics and their effects on the gut microflora00.00

~~~

---
CANZI, E et al.
. (). :
A1994PH04400009
WoS.00INFLUENCE OF LONG-TERM FEEDING OF DIFFERENT PURIFIED DIETARY-FIBERS ON CECAL MICROFLORA COMPOSITION AND ITS METABOLIZING ACTIVITY ON BILE-ACIDS00.00

~~~

---
Siczek, K et al.
. (). :
000413658700002
WoS.00Evaluation of anti-inflammatory effect of silver-coated glass beads in mice with experimentally induced colitis as a new type of treatment in inflammatory bowel disease00.00

~~~

---
Rafeeq, M et al.
. (). :
000409565700040
WoS.00Evaluation of Alternatives to Antibiotic Feed Additives in Broiler Production00.00

~~~

---
Wu, CJ et al.
. (). :
000682797200001
WoS.00In vitro evaluation of lactic acid bacteria with probiotic activity isolated from local pickled leaf mustard from Wuwei in Anhui as substitutes for chemical synthetic additives00.00

~~~

---
Kumar, A et al.
. (). :
000601053700005
WoS.00Effect of co-administration of probiotics with guar gum, pectin and eudragit S100 based colon targeted mini tablets containing 5-Fluorouracil for site specific release00.00

~~~

---
Dongowski, G; Plass, R
. (). :
000074889700011
WoS.00Studies on rats fed a dietary fibre preparation from sugar beet00.00

~~~

---
Cerciello, A et al.
. (). :
000374366000007
WoS.00A novel core-shell chronotherapeutic system for the oral administration of ketoprofen00.00

~~~

---
Ibarra-Espain, JI et al.
. (). :
000518032100010
WoS.00Supplementation of broiler diets with propolis and oregano oil and its effect on production parameters, leukocytes, metabolites and breast meat antioxidant stability00.00

~~~

---
BJORCK, I; NILSSON, U
. (). :
A1991FR54800001
WoS.00ON THE POSSIBILITY OF ACID-HYDROLYSIS OF INULIN IN THE RAT STOMACH00.00

~~~

---
Bielaszewska, M; Karch, H
. (). :
000167779500003
WoS.00Non-O157 : H7 Shiga toxin (verocytotoxin)-producing Escherichia coli strains: epidemiological significance and microbiological diagnosis00.00

~~~

---
Han, NS et al.
. (). :
000174286600008
WoS.00Simultaneous biocatalytic synthesis of panose during lactate fermentation in kimchi00.00

~~~

---
Ushida, K et al.
. (). :
000288247300063
WoS.00Effect of long term ingestion of gum arabic on the adipose tissues of female mice00.00

~~~

---
Karthik, M; Bhavan, PS
. (). :
000418581300005
WoS.00Supplementation of Lactobacillus brevis for Growth Promotion of the Freshwater Prawn Macrobrachium rosenbergii Post Larvae and identification of Gut Microflora through 16s rDNA00.00

~~~

---
KLURFELD, DM
. (). :
A1992HL80800008
WoS.00DIETARY FIBER-MEDIATED MECHANISMS IN CARCINOGENESIS00.00

~~~

---
Xu, CH et al.
. (). :
000408552900008
WoS.00Probiotic Nutrition Solution Obtained from Fermentation Liquid of Flammulina velutiper Spent Mushroom Substrate00.00

~~~

---
KUMEMURA, M et al.
. (). :
A1992KL57300007
WoS.00EFFECTS OF ADMINISTRATION OF 4G-BETA-D-GALACTOSYLSUCROSE ON FECAL MICROFLORA, PUTREFACTIVE PRODUCTS, SHORT-CHAIN FATTY-ACIDS, WEIGHT, MOISTURE AND PH, AND SUBJECTIVE SENSATION OF DEFECATION IN THE ELDERLY WITH CONSTIPATION00.00

~~~

---
Sato, R; Tanaka, M
. (). :
A1996VD89900004
WoS.00Multiplication of orally administered Clostridium butyricum in rats00.00

~~~

---
Enoka, VIL et al.
. (). :
000643496300001
WoS.00Effect of garlic and onion extract chitosan nanoparticles on selected intestinal bacterial flora in indigenous rainbow rooster chicken in Kenya00.00

~~~

---
Azad, IS; AI-Marzouk, A
. (). :
000263801100014
WoS.00Autochthonous Aquaculture Probiotics - A critical Analysis00.00

~~~

---
Zhang S., Hu J., Sun Y., Tan H., Yin J., Geng F., Nie S.
. (). :
2-s2.0-85119205320
Scopus.00Review of structure and bioactivity of the Plantago (Plantaginaceae) polysaccharides00.00

~~~

---
Zhang M., Chen J., Yang M., Qian C., Liu Y., Qi Y., Feng R., Yang M., Liu W., Ma J.
. (). :
2-s2.0-85122663901
Scopus.00Low Doses of Sucralose Alter Fecal Microbiota in High-Fat Diet-Induced Obese Rats00.00

~~~

---
Zhang C., Yao D., Su Z., Chen H., Hao P., Liao Y., Guo Y., Yang D.
. (). :
2-s2.0-85121608391
Scopus.00Copper/Zinc-Modified Palygorskite Protects Against Salmonella Typhimurium Infection and Modulates the Intestinal Microbiota in Chickens00.00

~~~

---
Sun Y., Guan Y., Khoo H.E., Li X.
. (). :
2-s2.0-85121432097
Scopus.00In vitro Assessment of Chemical and Pre-biotic Properties of Carboxymethylated Polysaccharides From Passiflora edulis Peel, Xylan, and Citrus Pectin00.00

~~~

---
Liu Y.-J., Jing Z., Bai X.-T., Diao Q.-Y., Wang J., Wu Y.-Y., Zhao Q., Xia T., Xing B., Holden P.A., Ge Y.
. (). :
2-s2.0-85121388910
Scopus.00Nano-La2O3 Induces Honeybee (Apis mellifera) Death and Enriches for Pathogens in Honeybee Gut Bacterial Communities00.00

~~~

---
Abdalhamed A.M., Ghazy A.A., Ibrahim E.S., Arafa A.A., Zeedan G.S.G.
. (). :
2-s2.0-85123688807
Scopus.00Therapeutic effect of biosynthetic gold nanoparticles on multidrug-resistant Escherichia coli and Salmonella species isolated from ruminants00.00

~~~

---
Wu H.-Q., Ma Z.-L., Zhang D.-X., Wu P., Guo Y.-H., Yang F., Li D.-Y.
. (). :
2-s2.0-85119414858
Scopus.00Sequential Extraction, Characterization, and Analysis of Pumpkin Polysaccharides for Their Hypoglycemic Activities and Effects on Gut Microbiota in Mice00.00

~~~

---
Arne A., Ilgaza A.
. (). :
2-s2.0-85119084367
Scopus.00Prebiotic and synbiotic effect on rumen papilla length development and rumen pH in 12-week-old calves00.00

~~~

---
Nagpal R., Indugu N., Singh P.
. (). :
2-s2.0-85118561058
Scopus.00Distinct gut microbiota signatures in mice treated with commonly used food preservatives00.00

~~~

---
Coley E.J.L., Mayer E.A., Osadchiy V., Chen Z., Subramanyam V., Zhang Y., Hsiao E.Y., Gao K., Bhatt R., Dong T., Vora P., Naliboff B., Jacobs J.P., Gupta A.
. (). :
2-s2.0-85106932193
Scopus.00Early life adversity predicts brain-gut alterations associated with increased stress and mood00.00

~~~

---
Carpena N., Richards K., Bello Gonzalez T.D.J., Bravo-Blas A., Housden N.G., Gerasimidis K., Milling S.W.F., Douce G., Malik D.J., Walker D.
. (). :
2-s2.0-85118357659
Scopus.00Targeted Delivery of Narrow-Spectrum Protein Antibiotics to the Lower Gastrointestinal Tract in a Murine Model of Escherichia coli Colonization00.00

~~~

---
Wang S., Guo C., Xing Z., Li M., Yang H., Zhang Y., Ren F., Chen L., Mi S.
. (). :
2-s2.0-85117892723
Scopus.00Dietary Intervention With α-Amylase Inhibitor in White Kidney Beans Added Yogurt Modulated Gut Microbiota to Adjust Blood Glucose in Mice00.00

~~~

---
Zhai Z., Liu J., Niu K.-M., Lin C., Tu Y., Liu Y., Cai L., Liu H., Ouyang K.
. (). :
2-s2.0-85117922358
Scopus.00Integrated Metagenomics and Metabolomics to Reveal the Effects of Policosanol on Modulating the Gut Microbiota and Lipid Metabolism in Hyperlipidemic C57BL/6 Mice00.00

~~~

---
Xiao R., Liao W., Luo G., Qin Z., Han S., Lin Y.
. (). :
2-s2.0-85116602635
Scopus.00Modulation of Gut Microbiota Composition and Short-Chain Fatty Acid Synthesis by Mogroside v in an in Vitro Incubation System00.00

~~~

---
Suphoronski S.A., de Souza F.P., Chideroli R.T., Mantovani Favero L., Ferrari N.A., Ziemniczak H.M., Gonçalves D.D., Lopera Barrero N.M., Pereira U.D.P.
. (). :
2-s2.0-85117219115
Scopus.00Effect of Enterococcus faecium as a Water and/or Feed Additive on the Gut Microbiota, Hematologic and Immunological Parameters, and Resistance Against Francisellosis and Streptococcosis in Nile Tilapia (Oreochromis niloticus)00.00

~~~

---
Van den Abbeele P., Duysburgh C., Cleenwerck I., Albers R., Marzorati M., Mercenier A.
. (). :
2-s2.0-85116989566
Scopus.00Consistent prebiotic effects of carrot rg-i on the gut microbiota of four human adult donors in the shime® model despite baseline individual variability00.00

~~~

---
Yu R., Ahmed T., Jiang H., Zhou G., Zhang M., Lv L., Li B.
. (). :
2-s2.0-85115667817
Scopus.00Impact of zinc oxide nanoparticles on the composition of gut microbiota in healthy and autism spectrum disorder children00.00

~~~

---
Caruana J.C., Dean S.N., Walper S.A.
. (). :
2-s2.0-85116027805
Scopus.00Isolation and characterization of membrane vesicles from lactobacillus species00.00

~~~

---
Zhang D., Verstrepen L., De Medts J., Duysburgh C., Van den Abbeele P., Marzorati M., Khoo C.
. (). :
2-s2.0-85115647886
Scopus.00A cranberry concentrate decreases adhesion and invasion of escherichia coli (Aiec) lf82 in vitro00.00

~~~

---
Foltz M., Zahradnik A.C., Van den Abbeele P., Ghyselinck J., Marzorati M.
. (). :
2-s2.0-85115062591
Scopus.00A pectin-rich, baobab fruit pulp powder exerts prebiotic potential on the human gut microbiome in vitro00.00

~~~

---
Chen P., Huang J., Rao L., Zhu W., Yu Y., Xiao F., Chen X., Yu H., Wu Y., Xu K., Zheng X., Hu R., He Z., Yan Q.
. (). :
2-s2.0-85115017775
Scopus.00Resistance and resilience of fish gut microbiota to silver nanoparticles00.00

~~~

---
Yang C., Long D., Sung J., Alghoul Z., Merlin D.
. (). :
2-s2.0-85114371769
Scopus.00Orally administered natural lipid nanoparticle-loaded 6-shogaol shapes the anti-inflammatory microbiota and metabolome00.00

~~~

---
Zeng Z., He X., Li F., Zhang Y., Huang Z., Wang Y., Li K., Bao Y., Iqbal M., Fakhar-e-Alam Kulyar M., Li J.
. (). :
2-s2.0-85114287630
Scopus.00Probiotic Properties of Bacillus proteolyticus Isolated From Tibetan Yaks, China00.00

~~~

---
Hong L., Lee S.-M., Kim W.-S., Choi Y.-J., Oh S.-H., Li Y.-L., Choi S.-H., Chung D.H., Jung E., Kang S.-K., Cho C.-S.
. (). :
2-s2.0-85114045342
Scopus.00Synbiotics Containing Nanoprebiotics: A Novel Therapeutic Strategy to Restore Gut Dysbiosis00.00

~~~

---
Chen H., Li R., Zhang F., Yao Q., Guo Y.
. (). :
2-s2.0-85113204612
Scopus.00A Scientometric Visualization Analysis for Natural Products on Cancer Research from 2008 to 202000.00

~~~

---
Zhou G., Yu R., Ahmed T., Jiang H., Zhang M., Lv L., Alhumaydhi F.A., Allemailem K.S., Li B.
. (). :
2-s2.0-85113189397
Scopus.00Biosynthesis and Characterization of Zinc Oxide Nanoparticles and Their Impact on the Composition of Gut Microbiota in Healthy and Attention-Deficit Hyperactivity Disorder Children00.00

~~~

---
Yu X., Zuo T.
. (). :
2-s2.0-85112742782
Scopus.00Editorial: Food Additives, Cooking and Processing: Impact on the Microbiome00.00

~~~

---
Hankel J., Bodmann B., Todte M., Galvez E., Strowig T., Radko D., Antakli A., Visscher C.
. (). :
2-s2.0-85114094986
Scopus.00Comparison of chicken cecal microbiota after metaphylactic treatment or following administration of feed additives in a broiler farm with enterococcal spondylitis history00.00

~~~

---
More S., Bampidis V., Benford D., Bragard C., Halldorsson T., Hernández-Jerez A., Hougaard Bennekou S., Koutsoumanis K., Lambré C., Machera K., Naegeli H., Nielsen S., Schlatter J., Schrenk D., Silano V., Turck D., Younes M., Castenmiller J., Chaudhry Q., Cubadda F., Franz R., Gott D., Mast J., Mortensen A., Oomen A.G., Weigel S., Barthelemy E., Rincon A., Tarazona J., Schoonjans R., EFSA Scientific Committee
. (). :
2-s2.0-85114040975
Scopus.00Guidance on risk assessment of nanomaterials to be applied in the food and feed chain: human and animal health00.00

~~~

---
Antunes J.C., Seabra C.L., Domingues J.M., Teixeira M.O., Nunes C., Costa-Lima S.A., Homem N.C., Reis S., Amorim M.T.P., Felgueiras H.P.
. (). :
2-s2.0-85112090659
Scopus.00Drug targeting of inflammatory bowel diseases by biomolecules00.00

~~~

---
Suresh A.P., Kalarikkal S.P., Pullareddy B., Sundaram G.M.
. (). :
2-s2.0-85110990695
Scopus.00Low pH-Based method to increase the yield of plant-derived nanoparticles from fresh ginger rhizomes00.00

~~~

---
Lei C., Teng Y., He L., Sayed M., Mu J., Xu F., Zhang X., Kumar A., Sundaram K., Sriwastva M.K., Zhang L., Chen S.-Y., Feng W., Zhang S., Yan J., Park J.W., Merchant M.L., Zhang X., Zhang H.-G.
. (). :
2-s2.0-85106372902
Scopus.00Lemon exosome-like nanoparticles enhance stress survival of gut bacteria by RNase P-mediated specific tRNA decay00.00

~~~

---
Meijerink N., de Oliveira J.E., van Haarlem D.A., Hosotani G., Lamot D.M., Stegeman J.A., Rutten V.P.M.G., Jansen C.A.
. (). :
2-s2.0-85108887960
Scopus.00Glucose oligosaccharide and long-chain glucomannan feed additives induce enhanced activation of intraepithelial nk cells and relative abundance of commensal lactic acid bacteria in broiler chickens00.00

~~~

---
Wei Y., Mao J., Liu J., Zhang Y., Deng Z., Lv J., He M., Liu J., Wang H.
. (). :
2-s2.0-85108164107
Scopus.00Encapsulated mixture of methyl salicylate and tributyrin modulates intestinal microbiota and improves growth performance of weaned piglets00.00

~~~

---
Xu Y., Wang H., Zhang M., Zhang J., Yan W.
. (). :
2-s2.0-85108160176
Scopus.00Plasmon-enhanced antibacterial activity of chiral gold nanoparticles and in vivo therapeutic effect00.00

~~~

---
Gangadoo S., Nguyen H., Rajapaksha P., Zreiqat H., Latham K., Cozzolino D., Chapman J., Truong V.K.
. (). :
2-s2.0-85108158885
Scopus.00Inorganic nanoparticles as food additives and their influence on the human gut microbiota00.00

~~~

---
Wu Y., Lei Z., Wang Y., Yin D., Aggrey S.E., Guo Y., Yuan J.
. (). :
2-s2.0-85107574753
Scopus.00Metabolome and Microbiota Analysis Reveals the Conducive Effect of Pediococcus acidilactici BCC-1 and Xylan Oligosaccharides on Broiler Chickens00.00

~~~

---
Zahoor F., Sooklim C., Songdech P., Duangpakdee O., Soontorngun N.
. (). :
2-s2.0-85107191462
Scopus.00Selection of potential yeast probiotics and a cell factory for xylitol or acid production from honeybee samples00.00

~~~

---
Yoo A., Lin M., Mustapha A.
. (). :
2-s2.0-85106605907
Scopus.00Zinc oxide and silver nanoparticle effects on intestinal bacteria00.00

~~~

---
Fernández-Jalao I., Balderas C., Calvo M.V., Fontecha J., Sánchez-Moreno C., De Ancos B.
. (). :
2-s2.0-85105332180
Scopus.00Impact of high-pressure processed onion on colonic metabolism using a dynamic gastrointestinal digestion simulator00.00

~~~

---
Zhao L., Zhu X., Xia M., Li J., Guo A.-Y., Zhu Y., Yang X.
. (). :
2-s2.0-85105919071
Scopus.00Quercetin Ameliorates Gut Microbiota Dysbiosis That Drives Hypothalamic Damage and Hepatic Lipogenesis in Monosodium Glutamate-Induced Abdominal Obesity00.00

~~~

---
Wongkuna S., Ghimire S., Chankhamhaengdecha S., Janvilisri T., Scaria J.
. (). :
2-s2.0-85105117224
Scopus.00Mediterraneibacter catenae SW178 sp. nov., an intestinal bacterium of feral chicken00.00

~~~

---
Zhao L., Du X., Tian J., Kang X., Li Y., Dai W., Li D., Zhang S., Li C.
. (). :
2-s2.0-85105273943
Scopus.00Berberine-Loaded Carboxylmethyl Chitosan Nanoparticles Ameliorate DSS-Induced Colitis and Remodel Gut Microbiota in Mice00.00

~~~

---
Requena T., Song Y., Peláez C., Martínez-Cuesta M.C.
. (). :
2-s2.0-85100188702
Scopus.00Modulation and metabolism of obesity-associated microbiota in a dynamic simulator of the human gut microbiota00.00

~~~

---
Jin G., Tang Q., Ma J., Liu X., Zhou B., Sun Y., Pang X., Guo Z., Xie R., Liu T., Wang B., Cao H.
. (). :
2-s2.0-85103783614
Scopus.00Maternal emulsifier p80 intake induces gut dysbiosis in offspring and increases their susceptibility to colitis in adulthood00.00

~~~

---
Zhu L., Zhang Z., Chen H., Lamer J.T., Wang J., Wei W., Fu L., Tang M., Wang C., Lu G.
. (). :
2-s2.0-85097884290
Scopus.00Gut microbiomes of bigheaded carps and hybrids provide insights into invasion: A hologenome perspective00.00

~~~

---
Wang X., Zhang D., Jiang H., Zhang S., Pang X., Gao S., Zhang H., Zhang S., Xiao Q., Chen L., Wang S., Qi D., Li Y.
. (). :
2-s2.0-85102315872
Scopus.00Gut Microbiota Variation With Short-Term Intake of Ginger Juice on Human Health00.00

~~~

---
Li B., Chen H., Cao L., Hu Y., Chen D., Yin Y.
. (). :
2-s2.0-85102080075
Scopus.00Escherichia coli Exopolysaccharides Induced by Ceftriaxone Regulated Human Gut Microbiota in vitro00.00

~~~

---
Lu Z., Ji C., Luo X., Lan Y., Han L., Chen Y., Liu X., Lin Q., Lu F., Wu X., Guo R., Zou C.
. (). :
2-s2.0-85100581776
Scopus.00Nanoparticle-Mediated Delivery of Emodin via Colonic Irrigation Attenuates Renal Injury in 5/6 Nephrectomized Rats00.00

~~~

---
Belanche A., Patra A.K., Morgavi D.P., Suen G., Newbold C.J., Yáñez-Ruiz D.R.
. (). :
2-s2.0-85099745807
Scopus.00Editorial: Gut Microbiome Modulation in Ruminants: Enhancing Advantages and Minimizing Drawbacks00.00

~~~

---
Ceballos D., Hernández-Camba A., Ramos L.
. (). :
2-s2.0-85122450311
Scopus.00Diet and microbiome in the beginning of the sequence of gut inflammation00.00

~~~

---
Tanabe K., Okuda A., Nakamura S., Oku T.
. (). :
2-s2.0-85107375965
Scopus.00Revaluation of the available energy of difructose anhydride III and maltobionic acid based on the fermentability of breath hydrogen excretion in healthy humans [Revalorización de la energía disponible del anhídrido de difructosa III y del ácido maltobióni00.00

~~~

---
Mok W.K., Tan Y.X., Chen W.N.
. (). :
2-s2.0-85104353267
Scopus.00Evaluating the potential of Bacillus subtilis fermented okara as a functional food ingredient through in vitro digestion and fermentation00.00

~~~

---
Shi Z., Lei H., Chen G., Yuan P., Cao Z., Ser H.-L., Zhu X., Wu F., Liu C., Dong M., Song Y., Guo Y., Chen C., Hu K., Zhu Y., Zeng X.-A., Zhou J., Lu Y., Patterson A.D., Zhang L.
. (). :
2-s2.0-85103020355
Scopus.00Impaired intestinal akkermansia muciniphila and aryl hydrocarbon receptor ligands contribute to nonalcoholic fatty liver disease in mice00.00

~~~

---
Jeevarathinam A.S., Guo F., Williams T., Smolen J.A., Hyde J.A., McShane M.J., de Figueiredo P., Alge D.L.
. (). :
2-s2.0-85100234589
Scopus.00Enzyme functionalized microgels enable precise regulation of dissolved oxygen and anaerobe culture00.00

~~~

---
Sredkova P., Batsalova T., Moten D., Dzhambazov B.
. (). :
2-s2.0-85099796309
Scopus.00Prebiotics can change immunomodulatory properties of probiotics00.00

~~~

---
Wei X., Bottoms K.A., Stein H.H., Blavi L., Bradley C.L., Bergstrom J., Knapp J., Story R., Maxwell C., Tsai T., Zhao J.
. (). :
2-s2.0-85099301084
Scopus.00Dietary organic acids modulate gut microbiota and improve growth performance of nursery pigs00.00

~~~

---
Rago L., Popp D., Heiker J.T., Harnisch F.
. (). :
2-s2.0-85094318232
Scopus.00Electroactive microorganisms in mouse feces00.00

~~~

---
Wang K., Zhu Q., Kong X., Song M., Azad M.A.K., Xiong L., Zheng Y., He Q.
. (). :
2-s2.0-85098254548
Scopus.00Dietary Probiotics or Synbiotics Supplementation During Gestation, Lactation, and Nursery Periods Modifies Colonic Microbiota, Antioxidant Capacity, and Immune Function in Weaned Piglets00.00

~~~

---
Ordoñez-Díaz J.L., Moreno-Ortega A., Roldán-Guerra F.J., Ortíz-Somovilla V., Moreno-Rojas J.M., Pereira-Caro G.
. (). :
2-s2.0-85102469311
Scopus.00In vitro gastrointestinal digestion and colonic catabolism of mango (Mangifera indica l.) pulp polyphenols00.00

~~~

---
García-Rodríguez A., Moreno-Olivas F., Marcos R., Tako E., Marques C.N.H., Mahler G.J.
. (). :
2-s2.0-85098463062
Scopus.00The role of metal oxide nanoparticles,: Escherichia coli, and Lactobacillus rhamnosus on small intestinal enzyme activity00.00

~~~

---
Emami N.K., Calik A., White M.B., Kimminau E.A., Dalloul R.A.
. (). :
2-s2.0-85097367642
Scopus.00Effect of Probiotics and Multi-Component Feed Additives on Microbiota, Gut Barrier and Immune Responses in Broiler Chickens During Subclinical Necrotic Enteritis00.00

~~~

---
Lin C.-Y., Carroll M.Q., Miller M.J., Rabot R., Swanson K.S.
. (). :
2-s2.0-85096640720
Scopus.00Supplementation of Yeast Cell Wall Fraction Tends to Improve Intestinal Health in Adult Dogs Undergoing an Abrupt Diet Transition00.00

~~~

---
Miclotte L., De Paepe K., Rymenans L., Callewaert C., Raes J., Rajkovic A., Van Camp J., Van de Wiele T.
. (). :
2-s2.0-85096406251
Scopus.00Dietary Emulsifiers Alter Composition and Activity of the Human Gut Microbiota in vitro, Irrespective of Chemical or Natural Emulsifier Origin00.00

~~~

---
Yadav M., Pandey R., Chauhan N.S.
. (). :
2-s2.0-85094958072
Scopus.00Catabolic Machinery of the Human Gut Microbes Bestow Resilience Against Vanillin Antimicrobial Nature00.00

~~~

---
Jiang X., Lu N., Zhao H., Yuan H., Xia D., Lei H.
. (). :
2-s2.0-85090797579
Scopus.00The Microbiome–Metabolome Response in the Colon of Piglets Under the Status of Weaning Stress00.00

~~~

---
Zhu Y., Li Y., Liu M., Hu X., Zhu H.
. (). :
2-s2.0-85090843325
Scopus.00Guizhi Fuling Wan, Chinese Herbal Medicine, Ameliorates Insulin Sensitivity in PCOS Model Rats With Insulin Resistance via Remodeling Intestinal Homeostasis00.00

~~~

---
Rodríguez-Daza M.-C., Roquim M., Dudonné S., Pilon G., Levy E., Marette A., Roy D., Desjardins Y.
. (). :
2-s2.0-85090500366
Scopus.00Berry Polyphenols and Fibers Modulate Distinct Microbial Metabolic Functions and Gut Microbiota Enterotype-Like Clustering in Obese Mice00.00

~~~

---
Suárez-Moo P., Cruz-Rosales M., Ibarra-Laclette E., Desgarennes D., Huerta C., Lamelas A.
. (). :
2-s2.0-85089342090
Scopus.00Diversity and Composition of the Gut Microbiota in the Developmental Stages of the Dung Beetle Copris incertus Say (Coleoptera, Scarabaeidae)00.00

~~~

---
Lin Y.-C., Chen Y.-T., Li K.-Y., Chen M.-J.
. (). :
2-s2.0-85088479581
Scopus.00Investigating the Mechanistic Differences of Obesity-Inducing Lactobacillus kefiranofaciens M1 and Anti-obesity Lactobacillus mali APS1 by Microbolomics and Metabolomics00.00

~~~

---
Swart E., Dvorak J., Hernádi S., Goodall T., Kille P., Spurgeon D., Svendsen C., Prochazkova P.
. (). :
2-s2.0-85090752812
Scopus.00The effects of in vivo exposure to copper oxide nanoparticles on the gut microbiome, host immunity, and susceptibility to a bacterial infection in earthworms00.00

~~~

---
Lagos L., La Rosa S.L., Arntzen M.Ø., Ånestad R., Terrapon N., Gaby J.C., Westereng B.
. (). :
2-s2.0-85087375271
Scopus.00Isolation and characterization of extracellular vesicles secreted in vitro by porcine microbiota00.00

~~~

---
Li Y., Xiao H., Dong J., Luo D., Wang H., Zhang S., Zhu T., Zhu C., Cui M., Fan S.
. (). :
2-s2.0-85087717107
Scopus.00Gut Microbiota Metabolite Fights Against Dietary Polysorbate 80-Aggravated Radiation Enteritis00.00

~~~

---
Li X., Liu Y., Wang Y., Li X., Liu X., Guo M., Tan Y., Qin X., Wang X., Jiang M.
. (). :
2-s2.0-85086588447
Scopus.00Sucralose Promotes Colitis-Associated Colorectal Cancer Risk in a Murine Model Along With Changes in Microbiota00.00

~~~

---
Mathipi V., de Mandal S., Chawngthu Z., Lalfelpuii R., Kumar N.S., Lalthanzara H.
. (). :
2-s2.0-85088706099
Scopus.00Diversity and Metabolic Potential of Earthworm Gut Microbiota in Indo-Myanmar Biodiversity Hotspot00.00

~~~

---
Lapidot Y., Lapidot Y., Lapidot Y., Amir A., Nosenko R., Uzan-Yulzari A., Veitsman E., Veitsman E., Cohen-Ezra O., Davidov Y., Weiss P., Bradichevski T., Segev S., Koren O., Safran M., Safran M., Ben-Ari Z., Ben-Ari Z., Ben-Ari Z.
. (). :
2-s2.0-85087151761
Scopus.00Alterations in the gut microbiome in the progression of cirrhosis to hepatocellular carcinoma00.00

~~~

---
Xie Y., Chen Z., Wang D., Chen G., Sun X., He Q., Luo J., Chen T., Xi Q., Zhang Y., Sun J.
. (). :
2-s2.0-85086163244
Scopus.00Effects of Fermented Herbal Tea Residues on the Intestinal Microbiota Characteristics of Holstein Heifers Under Heat Stress00.00

~~~

---
Elmén L., Zlamal J.E., Scott D.A., Lee R.B., Chen D.J., Colas A.R., Rodionov D.A., Peterson S.N.
. (). :
2-s2.0-85085617168
Scopus.00Dietary Emulsifier Sodium Stearoyl Lactylate Alters Gut Microbiota in vitro and Inhibits Bacterial Butyrate Producers00.00

~~~

---
Yang X., Zheng M., Hao S., Shi H., Lin D., Chen X., Becvarovski A., Pan W., Zhang P., Hu M., Huang X.-F., Zheng K., Yu Y.
. (). :
2-s2.0-85085486285
Scopus.00Curdlan Prevents the Cognitive Deficits Induced by a High-Fat Diet in Mice via the Gut-Brain Axis00.00

~~~

---
Dhakal S., Boath J.M., Van T.T.H., Moore R.J., Macreadie I.G.
. (). :
2-s2.0-85083980083
Scopus.00Siccibacter turicensis from kangaroo scats: Possible implication in cellulose digestion00.00

~~~

---
Wali A.T., Alqayim M.A.J.
. (). :
2-s2.0-85098749402
Scopus.00Antibacterial Properties of Propolis Mediated Biogenic Selenium Nanoparticles and their Immunity Activation in Heat Stressed Rats00.00

~~~

---
Chae Y., An Y.-J.
. (). :
2-s2.0-85082538093
Scopus.00Nanoplastic ingestion induces behavioral disorders in terrestrial snails: Trophic transfer effects: Via vascular plants00.00

~~~

---
[No author name available]
. (). :
2-s2.0-85082139082
Scopus.00Erratum: Effects of Sweeteners on the Gut Microbiota: A Review of Experimental Studies and Clinical Trials (Advances in Nutrition (2019) 10 (S31-S48) DOI: 10.1093/advances/nmz112)00.00

~~~

---
Ghimire S., Wongkuna S., Kumar R., Nelson E., Christopher-Hennings J., Scaria J.
. (). :
2-s2.0-85078835786
Scopus.00Genome sequence and description of Blautia brookingsii SG772 sp. nov., a novel bacterial species isolated from human faeces00.00

~~~

---
Vandemark G., Thavarajah S., Siva N., Thavarajah D.
. (). :
2-s2.0-85081253144
Scopus.00Genotype and Environment Effects on Prebiotic Carbohydrate Concentrations in Kabuli Chickpea Cultivars and Breeding Lines Grown in the U.S. Pacific Northwest00.00

~~~

---
Adamberg K., Raba G., Adamberg S.
. (). :
2-s2.0-85079601499
Scopus.00Use of Changestat for Growth Rate Studies of Gut Microbiota00.00

~~~

---
Perrone L., Sampaolo S., Melone M.A.B.
. (). :
2-s2.0-85079542854
Scopus.00Bioactive phenolic compounds in the modulation of central and peripheral nervous system cancers: Facts and misdeeds00.00

~~~

---
Liu X., Wang L., Jing N., Jiang G., Liu Z.
. (). :
2-s2.0-85078976060
Scopus.00Biostimulating gut microbiome with bilberry anthocyanin combo to enhance anti-PD-l1 efficiency against murine colon cancer00.00

~~~

---
Kurniawan M.Y., Istiftiani N., Heryati L., Reinaldo C., Susanto F.
. (). :
2-s2.0-85101791030
Scopus.00Effect of polydextrose-containing beverage on bowel habits and gastrointestinal symptoms of constipated subjects: a pilot study00.00

~~~

---
Park S., Kang Y., Koh H., Kim S.
. (). :
2-s2.0-85089852085
Scopus.00Increasing incidence of inflammatory bowel disease in children and adolescents: Significance of environmental factors00.00

~~~

---
Falcon T., Foletto K.C., Siebert M., Pinto D.E., Andrades M., Bertoluci M.C.
. (). :
2-s2.0-85086030747
Scopus.00Metabarcoding reveals that a non-nutritive sweetener and sucrose yield similar gut microbiota patterns in wistar rats00.00

~~~

---
Wu W., Zhang L., Xia B., Tang S., Xie J., Zhang H.
. (). :
2-s2.0-85083702934
Scopus.00Modulation of pectin on mucosal innate immune function in pigs mediated by gut microbiota00.00

~~~

---
Jiang L., Xie M., Chen G., Qiao J., Zhang H., Zeng X.
. (). :
2-s2.0-85081224919
Scopus.00Phenolics and Carbohydrates in Buckwheat Honey Regulate the Human Intestinal Microbiota00.00

~~~

---
Hsu B.B., Way J.C., Silver P.A.
. (). :
2-s2.0-85079242746
Scopus.00Stable neutralization of a virulence factor in bacteria using temperate phage in the mammalian gut00.00

~~~

---
Ghimire S., Roy C., Wongkuna S., Antony L., Maji A., Keena M.C., Foley A., Scaria J.
. (). :
2-s2.0-85079239319
Scopus.00Identification of Clostridioides difficile-Inhibiting Gut Commensals Using Culturomics, Phenotyping, and Combinatorial Community Assembly00.00

~~~

---
Khoobani M., Hasheminezhad S.-H., Javandel F., Nosrati M., Seidavi A., Kadim I.T., Laudadio V., Tufarelli V.
. (). :
2-s2.0-85077187686
Scopus.00Effects of dietary chicory (Chicorium intybus l.) and probiotic blend as natural feed additives on performance traits, blood biochemistry, and gut microbiota of broiler chickens00.00

~~~

---
Partridge D., Lloyd K.A., Rhodes J.M., Walker A.W., Johnstone A.M., Campbell B.J.
. (). :
2-s2.0-85075522507
Scopus.00Food additives: Assessing the impact of exposure to permitted emulsifiers on bowel and metabolic health – introducing the FADiets study00.00

~~~

---
Bubnov R., Babenko L., Lazarenko L., Kryvtsova M., Shcherbakov O., Zholobak N., Golubnitschaja O., Spivak M.
. (). :
2-s2.0-85074690728
Scopus.00Can tailored nanoceria act as a prebiotic? Report on improved lipid profile and gut microbiota in obese mice00.00

~~~

---
Li H., Li H., Xie P., Li Z., Yin Y., Blachier F., Kong X.
. (). :
2-s2.0-85061923716
Scopus.00Dietary supplementation with fermented Mao-tai lees beneficially affects gut microbiota structure and function in pigs00.00

~~~

---
Guo X., Chen N., Meng X., Wang X., Li Y., Xie Q.
. (). :
2-s2.0-85078259850
Scopus.00Preparation of Sustained Release Mixture Aerogel Antibacterial Agent00.00

~~~

---
Badman J., Daly K., Kelly J., Moran A.W., Cameron J., Watson I., Newbold J., Shirazi-Beechey S.P.
. (). :
2-s2.0-85075566725
Scopus.00The Effect of Milk Replacer Composition on the Intestinal Microbiota of Pre-ruminant Dairy Calves00.00

~~~

---
Hrncirova L., Machova V., Trckova E., Krejsek J., Hrncir T.
. (). :
2-s2.0-85074278201
Scopus.00Food preservatives induce proteobacteria dysbiosis in human-microbiota associated Nod2-deficient mice00.00

~~~

---
Gupta S., Lokesh J., Abdelhafiz Y., Siriyappagouder P., Pierre R., Sørensen M., Fernandes J.M.O., Kiron V.
. (). :
2-s2.0-85072883342
Scopus.00Macroalga-Derived Alginate Oligosaccharide Alters Intestinal Bacteria of Atlantic Salmon00.00

~~~

---
Li C., Zhao Y., Cheng J., Guo J., Zhang Q., Zhang X., Ren J., Wang F., Huang J., Hu H., Wang R., Zhang J.
. (). :
2-s2.0-85070105408
Scopus.00A Proresolving Peptide Nanotherapy for Site-Specific Treatment of Inflammatory Bowel Disease by Regulating Proinflammatory Microenvironment and Gut Microbiota00.00

~~~

---
Tall M.L., Ndongo S., Ngom I.I., Delerce J., Khelaifia S., Raoult D., Fournier P.-E., Levasseur A.
. (). :
2-s2.0-85068601142
Scopus.00Massilimicrobiota timonensis gen. nov., sp. nov., a new bacterium isolated from the human gut microbiota00.00

~~~

---
Aritonang S.N., Roza E., Rossi E.
. (). :
2-s2.0-85071914561
Scopus.00The effect of whippy cream adding on the quality of frozen soyghurt as symbiotic ice cream00.00

~~~

---
Kolb S.A., O'Loughlin E.J., Gsell T.C.
. (). :
2-s2.0-85068966798
Scopus.00Data on the characterization of phthalate-degrading bacteria from Asian carp microbiomes and riverine sediments00.00

~~~

---
Pinget G., Tan J., Janac B., Kaakoush N.O., Angelatos A.S., O’sullivan J., Koay Y.C., Sierro F., Davis J., Divakarla S.K., Khanal D., Moore R.J., Stanley D., Chrzanowski W., Macia L.
. (). :
2-s2.0-85068816914
Scopus.00Corrigendum: Impact of the food additive titanium dioxide (e171) on gut microbiota-host interaction (Front. Nutr., (2019), 6, 10.3389/fnut.2019.00057)00.00

~~~

---
Pinget G., Tan J., Janac B., Kaakoush N.O., Angelatos A.S., O'Sullivan J., Koay Y.C., Sierro F., Davis J., Divakarla S.K., Khanal D., Moore R.J., Stanley D., Chrzanowski W., Macia L.
. (). :
2-s2.0-85067822810
Scopus.00Impact of the food additive titanium dioxide (e171) on gut microbiota-host interaction00.00

~~~

---
Sarmiento M.R.A., Paula T.O., Borges F.M., Ferreira-Machado A.B., Resende J.A., Moreira A.P.B., Luquetti S.C.P.D., Cesar D.E., Silva V.L., Diniz C.G.
. (). :
2-s2.0-85072815938
Scopus.00Obesity, xenobiotic intake and antimicrobial-resistance genes in the human gastrointestinal tract: A comparative study of eutrophic, overweight and obese individuals00.00

~~~

---
Ravenscraft A., Berry M., Hammer T., Peay K., Boggs C.
. (). :
2-s2.0-85060553851
Scopus.00Structure and function of the bacterial and fungal gut microbiota of Neotropical butterflies00.00

~~~

---
Paley E.L.
. (). :
2-s2.0-85071285369
Scopus.00Diet-Related Metabolic Perturbations of Gut Microbial Shikimate Pathway-Tryptamine-tRNA Aminoacylation-Protein Synthesis in Human Health and Disease00.00

~~~

---
Huang J.-R., Lee M.-H., Li W.-S., Wu H.-C.
. (). :
2-s2.0-85063392681
Scopus.00Liposomal irinotecan for treatment of colorectal cancer in a preclinical model00.00

~~~

---
Okuzumi A., Hatano T., Ueno S.-I., Ogawa T., Saiki S., Mori A., Koinuma T., Oji Y., Ishikawa K.-I., Fujimaki M., Sato S., Ramamoorthy S., Mohney R.P., Hattori N.
. (). :
2-s2.0-85062839015
Scopus.00Metabolomics-based identification of metabolic alterations in PARK200.00

~~~

---
Hemati M., Fakhraei J., Yaghobfar A., Yarahmadi H.M.
. (). :
2-s2.0-85085500856
Scopus.00Effects of hydroalcoholic extract of hogweed and anise on broiler meat quality, immune responses, and intestinal microflora and morphology00.00

~~~

---
Miroshnikov S., Yausheva E., Sizova E., Miroshnikova E.
. (). :
2-s2.0-85084338991
Scopus.00Qualitative and quantitative composition of zebrafish intestinal microflora in case of water pollution by nanoscale cerium00.00

~~~

---
Ryuk J.A., Kang S., Daily J.W., Ko B.-S., Park S.
. (). :
2-s2.0-85077114926
Scopus.00Moderate intake of aspartame and sucralose with meals, but not fructose, does not exacerbate energy and glucose metabolism in estrogen-deficient rats00.00

~~~

---
Lebedev S.V., Gavrish I.A., Gubaydullina I.Z.
. (). :
2-s2.0-85075910606
Scopus.00Different chrome sources influence on morpho-biochemical indicators and activity of digestive enzymes in Wistar rats00.00

~~~

---
Wölnerhanssen B.K., Meyer-Gerspach A.C.
. (). :
2-s2.0-85075618343
Scopus.00Health effects of sugar consumption and possible alternatives [Effekte von Zuckerkonsum auf die Gesundheit und mögliche Alternativen]00.00

~~~

---
Jia P.-P., Sun T., Junaid M., Xiong Y.-H., Wang Y.-Q., Liu L., Pu S.-Y., Pei D.-S.
. (). :
2-s2.0-85070538165
Scopus.00Chronic exposure to graphene oxide (GO) induced inflammation and differentially disturbed the intestinal microbiota in zebrafish00.00

~~~

---
Olivier-Van Stichelen S., Rother K.I., Hanover J.A.
. (). :
2-s2.0-85069037426
Scopus.00Maternal exposure to non-nutritive sweeteners impacts Progeny's metabolism and microbiome00.00

~~~

---
Tang Z.-Z., Chen G., Hong Q., Huang S., Smith H.M., Shah R.D., Scholz M., Ferguson J.F.
. (). :
2-s2.0-85067868297
Scopus.00Multi-omic analysis of the microbiome and metabolome in healthy subjects reveals microbiome-dependent relationships between diet and metabolites00.00

~~~

---
Yu J.-B., Zhao Z.-X., Peng R., Pan L.-B., Fu J., Ma S.-R., Han P., Cong L., Zhang Z.-W., Sun L.-X., Jiang J.-D., Wang Y.
. (). :
2-s2.0-85066452750
Scopus.00Gut microbiota-based pharmacokinetics and the antidepressant mechanism of paeoniflorin00.00

~~~

---
Larsen N., De Souza C.B., Krych L., Cahú T.B., Wiese M., Kot W., Hansen K.M., Blennow A., Venema K., Jespersen L.
. (). :
2-s2.0-85065913963
Scopus.00Potential of pectins to beneficially modulate the gut microbiota depends on their structural properties00.00

~~~

---
Seo S.-H., Park S.-E., Kim E.-J., Youn D., Lee Y.-M., Lee S.-Y., Bok S.-H., Park D.-H., Seo C.-S., Byun S.-H., Jun K.Y., Kim D.S., Na C.-S., Son H.-S.
. (). :
2-s2.0-85061368248
Scopus.00GC/MS-Based Metabolomics Approach to Evaluate the Effect of Jackyakgamcho-Tang on Acute Colitis00.00

~~~

---
Mao Z., Li Y., Dong T., Zhang L., Zhang Y., Li S., Hu H., Sun C., Xia Y.
. (). :
2-s2.0-85060284289
Scopus.00Exposure to Titanium Dioxide Nanoparticles During Pregnancy Changed Maternal Gut Microbiota and Increased Blood Glucose of Rat00.00

~~~

---
Vo T.D., Lynch B.S., Roberts A.
. (). :
2-s2.0-85059039280
Scopus.00Dietary Exposures to Common Emulsifiers and Their Impact on the Gut Microbiota: Is There a Cause for Concern?00.00

~~~

---
Kreuch D., Keating D.J., Wu T., Horowitz M., Rayner C.K., Young R.L.
. (). :
2-s2.0-85064055716
Scopus.00Gut Mechanisms Linking Intestinal Sweet Sensing to Glycemic Control00.00

~~~

---
Beaumont M., Neyrinck A.M., Olivares M., Rodriguez J., De Rocca Serra A., Roumain M., Bindels L.B., Cani P.D., Evenepoel P., Muccioli G.G., Demoulin J.-B., Delzenne N.M.
. (). :
2-s2.0-85055470325
Scopus.00The gut microbiota metabolite indole alleviates liver inflammation in mice00.00

~~~

---
Bang S.-J., Kim G., Lim M.Y., Song E.-J., Jung D.-H., Kum J.-S., Nam Y.-D., Park C.-S., Seo D.-H.
. (). :
2-s2.0-85048729971
Scopus.00The influence of in vitro pectin fermentation on the human fecal microbiome00.00

~~~

---
Ohara T., Suzutani T.
. (). :
2-s2.0-85052940599
Scopus.00Efficacy of fecal microbiota transplantation in a patient with chronic intractable constipation00.00

~~~

---
Marzocco S., Fazeli G., Di Micco L., Autore G., Adesso S., Dal Piaz F., Heidland A., Di Iorio B.
. (). :
2-s2.0-85068476932
Scopus.00Supplementation of short-chain fatty acid, sodium propionate, in patients on maintenance—“beneficial effects on inflammatory parameters and gut-derived uremic toxins”—a pilot study (Plan study)00.00

~~~

---
Xu C., Guo Y., Qiao L., Ma L., Cheng Y., Roman A.
. (). :
2-s2.0-85048639285
Scopus.00Biogenic synthesis of novel functionalized selenium nanoparticles by Lactobacillus casei ATCC 393 and its protective effects on intestinal barrier dysfunction caused by Enterotoxigenic Escherichia coli K8800.00

~~~

---
Gough R., Rubio R.C., O'Connor P.M., Crispie F., Brodkorb A., Miao S., Hill C., Ross R.P., Cotter P.D., Nilaweera K.N., Rea M.C.
. (). :
2-s2.0-85048577914
Scopus.00Oral delivery of nisin in resistant starch based matrices alters the gut microbiota in mice00.00

~~~

---
Younes M., Aggett P., Aguilar F., Crebelli R., Filipic M., Frutos M.J., Galtier P., Gott D., Gundert-Remy U., Kuhnle G.G., Lambré C., Leblanc J.-C., Lillegaard I.T., Moldeus P., Mortensen A., Oskarsson A., Stankovic I., Waalkens-Berendsen I., Woutersen R.A., Wright M., Brimer L., Mosesso P., Christodoulidou A., Cascio C., Tard A., Lodi F., Dusemund B., EFSA Panelon Food Additives and Nutrient Sources added to Food (ANS)
. (). :
2-s2.0-85062082267
Scopus.00Re-evaluation of gellan gum (E 418) as food additive00.00

~~~

---
Radziwill-Bienkowska J.M., Talbot P., Kamphuis J.B.J., Robert V., Cartier C., Fourquaux I., Lentzen E., Audinot J.-N., Jamme F., Réfrégiers M., Bardowski J.K., Langella P., Kowalczyk M., Houdeau E., Thomas M., Mercier-Bonin M.
. (). :
2-s2.0-85045884091
Scopus.00Toxicity of Food-Grade TiO2 to commensal intestinal and transient food-borne bacteria: New insights using Nano-SIMS and synchrotron UV fluorescence imaging00.00

~~~

---
Kuprys-Caruk M., Michalczuk M., Chablowska B., Stefanska I., Kotyrba D., Parzeniecka-Jaworska M.
. (). :
2-s2.0-85048030833
Scopus.00Efficacy and safety assessment of microbiological feed additive for chicken broilers in tolerance studies00.00

~~~

---
Frick A., Lang M.
. (). :
2-s2.0-85044378651
Scopus.00Chemoprevention and nutrition in colorectal cancer [Chemoprävention und Ernährungsfaktoren bei Darmkrebs]00.00

~~~

---
Sahasrabudhe N.M., Beukema M., Tian L., Troost B., Scholte J., Bruininx E., Bruggeman G., van den Berg M., Scheurink A., Schols H.A., Faas M.M., de Vos P.
. (). :
2-s2.0-85042708682
Scopus.00Dietary fiber pectin directly blocks toll-like receptor 2-1 and prevents doxorubicin-induced ileitis00.00

~~~

---
Dudek-Wicher R.K., Junka A., Bartoszewicz M.
. (). :
2-s2.0-85049859102
Scopus.00The influence of antibiotics and dietary components on gut microbiota00.00

~~~

---
Bryant W.A., Stentz R., Gall G.L., Sternberg M.J.E., Carding S.R., Wilhelm T.
. (). :
2-s2.0-85037724791
Scopus.00In Silico analysis of the small molecule content of outer membrane vesicles produced by Bacteroides thetaiotaomicron indicates an extensive metabolic link between microbe and host00.00

~~~

---
Subali D., Silo W., Listyani L., Endriani C., Kartawidjajaputra F., Suwanto A.
. (). :
2-s2.0-85064766668
Scopus.00The effect of sugar and artificial sweetener on molecular markers of metabolic syndrome: A mice study00.00

~~~

---
Shindyapina A.V., Komarova T.V., Sheshukova E.V., Ershova N.M., Tashlitsky V.N., Kurkin A.V., Yusupov I.R., Mkrtchyan G.V., Shagidulin M.Y., Dorokhov Y.L.
. (). :
2-s2.0-85036526185
Scopus.00The antioxidant cofactor alpha-lipoic acid may control endogenous formaldehyde metabolism in mammals00.00

~~~

---
Lerner A., Matthias T., Aminov R.
. (). :
2-s2.0-85035020911
Scopus.00Potential effects of horizontal gene exchange in the human gut00.00

~~~

---
Veljovic K., Dinic M., Lukic J., Mihajlovic S., Tolinacki M., Živkovic M., Begovic J., Mrvaljevic I., Golic N., Terzic-Vidojevic A.
. (). :
2-s2.0-85031716146
Scopus.00Promotion of early gut colonization by probiotic intervention on microbiota diversity in pregnant sows00.00

~~~

---
Martinez-Gutierrez F., Ratering S., Juárez-Flores B., Godinez-Hernandez C., Geissler-Plaum R., Prell F., Zorn H., Czermak P., Schnell S.
. (). :
2-s2.0-85019980614
Scopus.00Potential use of Agave salmiana as a prebiotic that stimulates the growth of probiotic bacteria00.00

~~~

---
Cheng W., Lu J., Li B., Lin W., Zhang Z., Wei X., Sun C., Chi M., Bi W., Yang B., Jiang A., Yuan J.
. (). :
2-s2.0-85029670862
Scopus.00Effect of functional oligosaccharides and ordinary dietary fiber on intestinal microbiota diversity00.00

~~~

---
Ferrario C., Statello R., Carnevali L., Mancabelli L., Milani C., Mangifesta M., Duranti S., Lugli G.A., Jimenez B., Lodge S., Viappiani A., Alessandri G., Dall'Asta M., Rio D.D., Sgoifo A., van Sinderen D., Ventura M., Turroni F.
. (). :
2-s2.0-85029637903
Scopus.00How to feed the Mammalian gut microbiota: Bacterial and metabolic modulation by dietary fibers00.00

~~~

---
Bian X., Chi L., Gao B., Tu P., Ru H., Lu K.
. (). :
2-s2.0-85025806028
Scopus.00Gut microbiome response to sucralose and its potential role in inducing liver inflammation in mice00.00

~~~

---
Mortensen A., Aguilar F., Crebelli R., Di Domenico A., Dusemund B., Frutos M.J., Galtier P., Gott D., Gundert-Remy U., Lambré C., Leblanc J.-C., Lindtner O., Moldeus P., Mosesso P., Oskarsson A., Parent-Massin D., Stankovic I., Waalkens-Berendsen I., Wright M., Younes M., Tobback P., Ioannidou S., Tasiopoulou S., Woutersen R.A., EFSA Panelon Food Additives and Nutrient Sources added to Food (ANS)
. (). :
2-s2.0-85077639008
Scopus.00Re-evaluation of pectin (E 440i) and amidated pectin (E 440ii) as food additives00.00

~~~

---
Mortensen A., Aguilar F., Crebelli R., Di Domenico A., Frutos M.J., Galtier P., Gott D., Gundert-Remy U., Lambré C., Leblanc J.-C., Lindtner O., Moldeus P., Mosesso P., Oskarsson A., Parent-Massin D., Stankovic I., Waalkens-Berendsen I., Woutersen R.A., Wright M., Younes M., Brimer L., Christodoulidou A., Lodi F., Gelgelova P., Dusemund B., EFSA Panelon Food Additives and Nutrient Sources added to Food (ANS)
. (). :
2-s2.0-85071841276
Scopus.00Re-evaluation of xanthan gum (E 415) as a food additive00.00

~~~

---
Namasivayam S.K.R., Poornima V.
. (). :
2-s2.0-85038390670
Scopus.00An investigation of polymer coated metallic nanoparticles mediated influence on gut microbiota of zebra fish (Danio rerio)00.00

~~~

---
Feng Y., Min L., Zhang W., Liu J., Hou Z., Chu M., Li L., Shen W., Zhao Y., Zhang H.
. (). :
2-s2.0-85020680931
Scopus.00Zinc oxide nanoparticles influence microflora in ileal digesta and correlate well with blood metabolites00.00

~~~

---
Poornachandra Rao K., Hemanth Kumar N.K., Sreenivasa M.Y.
. (). :
2-s2.0-85019660975
Scopus.00Characterization of probiotic Lactobacillus plantarum MYS14 isolated from Sannas, a traditional fermented food for its therapeutic potential00.00

~~~

---
Luo C., Yi C., Ni L., Guo L.
. (). :
2-s2.0-85016951481
Scopus.00Characterization of dominant and cellulolytic bacterial communities along the gut of silver carp Hypophthalmichthys molitrix during cyanobacterial blooms00.00

~~~

---
Gong W., Jia J., Zhang B., Mi S., Zhang L., Xie X., Guo H., Shi J., Tu C.
. (). :
2-s2.0-85018252894
Scopus.00Serum metabolomic profiling of piglets infected with virulent classical swine fever virus00.00

~~~

---
Yang Q., Huang X., Zhao S., Sun W., Yan Z., Wang P., Li S., Huang W., Zhang S., Liu L., Gun S.
. (). :
2-s2.0-85016619681
Scopus.00Structure and function of the fecal microbiota in diarrheic neonatal piglets00.00

~~~

---
Shen L., Liu L., Ji H.-F.
. (). :
2-s2.0-85040090897
Scopus.00Regulative effects of curcumin spice administration on gut microbiota and its pharmacological implications00.00

~~~

---
Huebbe P., Nikolai S., Schloesser A., Herebian D., Campbell G., Glüer C.-C., Zeyner A., Demetrowitsch T., Schwarz K., Metges C.C., Roeder T., Schultheiss G., Ipharraguerre I.R., Rimbach G.
. (). :
2-s2.0-85030123698
Scopus.00An extract from the Atlantic brown algae Saccorhiza polyschides counteracts diet-induced obesity in mice via a gut related multifactorial mechanisms00.00

~~~

---
Xia T., Lai W., Han M., Han M., Ma X., Zhang L.
. (). :
2-s2.0-85030089239
Scopus.00Dietary ZnO nanoparticles alters intestinal microbiota and inflammation response in weaned piglets00.00

~~~

---
Melgar S.
. (). :
2-s2.0-85028511152
Scopus.00The microbiome and food that fuels the fire of inflammation00.00

~~~

---
Clemens R.A., Pressman P.
. (). :
2-s2.0-85012100234
Scopus.00Food Gums: An Overview00.00

~~~

---
Cantu-Jungles T.M., Cipriani T.R., Iacomini M., Hamaker B.R., Cordeiro L.M.C.
. (). :
2-s2.0-84998723965
Scopus.00A pectic polysaccharide from peach palm fruits (Bactris gasipaes) and its fermentation profile by the human gut microbiota in vitro00.00

~~~

---
Friedman M.
. (). :
2-s2.0-85101918096
Scopus.00Mushroom polysaccharides: Chemistry and antiobesity, antidiabetes, anticancer, and antibiotic properties in cells, rodents, and humans00.00

~~~

---
Nielsen C.K., Kjems J., Mygind T., Snabe T., Meyer R.L.
. (). :
2-s2.0-85006711860
Scopus.00Effects of tween 80 on growth and biofilm formation in laboratory media00.00

~~~

---
Wei X., Jiang S., Zhao X., Li H., Lin W., Li B., Lu J., Sun Y., Yuan J.
. (). :
2-s2.0-85006699510
Scopus.00Community-metabolome correlations of gut microbiota from child-turcotte-pugh of A and B patients00.00

~~~

---
Martemyanov V.V., Belousova I.A., Pavlushin S.V., Dubovskiy I.M., Ershov N.I., Alikina T.Y., Kabilov M.R., Glupov V.V.
. (). :
2-s2.0-84988905764
Scopus.00Phenological asynchrony between host plant and gypsy moth reduces insect gut microbiota and susceptibility to Bacillus thuringiensis00.00

~~~

---
Arbulu S., Jiménez J.J., Gútiez L., Campanero C., Del Campo R., Cintas L.M., Herranz C., Hernández P.E.
. (). :
2-s2.0-84995468929
Scopus.00Evaluation of bacteriocinogenic activity, safety traits and biotechnological potential of fecal lactic acid bacteria (LAB), isolated from Griffon Vultures (Gyps fulvus subsp. fulvus)00.00

~~~

---
[No author name available]
. (). :
2-s2.0-84982234751
Scopus.00Erratum: Dietary emulsifiers impact the mouse gut microbiota promoting colitis and metabolic syndrome (Nature (2015) 519 (92-96) DOI: 10.1038/nature14232)00.00

~~~

---
[No author name available]
. (). :
2-s2.0-84979709420
Scopus.00Erratum: Fish gut microbiota analysis differentiates physiology and behavior of invasive Asian carp and indigenous American fish (ISME Journal (2014) 8 (541-551))00.00

~~~

---
Morales P., Fujio S., Navarrete P., Ugalde J.A., Magne F., Carrasco-Pozo C., Tralma K., Quezada M., Hurtado C., Covarrubias N., Brignardello J., Henriquez D., Gotteland M.
. (). :
2-s2.0-84963569135
Scopus.00Impact of Dietary Lipids on Colonic Function and Microbiota: An Experimental Approach Involving Orlistat-Induced Fat Malabsorption in Human Volunteers00.00

~~~

---
He M., Fang S., Huang X., Zhao Y., Ke S., Yang H., Li Z., Gao J., Chen C., Huang L.
. (). :
2-s2.0-85009398273
Scopus.00Evaluating the contribution of gut microbiota to the variation of porcine fatness with the cecum and fecal samples00.00

~~~

---
Stenman L.K., Waget A., Garret C., Briand F., Burcelin R., Sulpice T., Lahtinen S.
. (). :
2-s2.0-84941695870
Scopus.00Probiotic B420 and prebiotic polydextrose improve efficacy of antidiabetic drugs in mice00.00

~~~

---
Zeller E., Schollenberger M., Kühn I., Rodehutscord M.
. (). :
2-s2.0-84944180439
Scopus.00Hydrolysis of phytate and formation of inositol phosphate isomers without or with supplemented phytases in different segments of the digestive tract of broilers00.00

~~~

---
Suez J., Korem T., Zeevi D., Zilberman-Schapira G., Thaiss C.A., Maza O., Israeli D., Zmora N., Gilad S., Weinberger A., Kuperman Y., Harmelin A., Kolodkin-Gal I., Shapiro H., Halpern Z., Segal E., Elinav E.
. (). :
2-s2.0-84925854272
Scopus.00Artificial sweeteners induce glucose intolerance by altering the gut microbiota00.00

~~~

---
Dantur K.I., Enrique R., Welin B., Castagnaro A.P.
. (). :
2-s2.0-84923683847
Scopus.00Isolation of cellulolytic bacteria from the intestine of Diatraea saccharalis larvae and evaluation of their capacity to degrade sugarcane biomass00.00

~~~

---
Bernard H., Desseyn J.-L., Bartke N., Kleinjans L., Stahl B., Belzer C., Knol J., Gottrand F., Husson M.-O.
. (). :
2-s2.0-84922439272
Scopus.00Dietary Pectin-Derived Acidic Oligosaccharides Improve the Pulmonary Bacterial Clearance of Pseudomonas aeruginosa Lung Infection in Mice by Modulating Intestinal Microbiota and Immunity00.00

~~~

---
Rosendale D., Vetharaniam I., Cookson A.L., Roy N.
. (). :
2-s2.0-84921671680
Scopus.00Modelling the effect of undigested dietary carbohydrate on the health and function of the large bowel00.00

~~~

---
Holscher H.D., Gregory Caporaso J., Hooda S., Brulc J.M., Fahey G.C., Jr., Swanson K.S.
. (). :
2-s2.0-84919642253
Scopus.00Fiber supplementation influences phylogenetic structure and functional capacity of the human intestinal microbiome: Follow-up of a randomized controlled trial00.00

~~~

---
Jiménez-Girón A., Muñoz-González I., Martín-Álvarez P.J., Moreno-Arribas M.V., Bartolomé B.
. (). :
2-s2.0-85016493633
Scopus.00Towards the fecal metabolome derived from moderate red wine intake00.00

~~~

---
Sun J.
. (). :
2-s2.0-84978086982
Scopus.00Artificial sweeteners are not sweet to the gut microbiome00.00

~~~

---
Cuervo A., Valdés L., Salazar N., De Los Reyes-Gavilán C.G., Ruas-Madiedo P., Gueimonde M., González S.
. (). :
2-s2.0-84902252078
Scopus.00Pilot study of diet and microbiota: Interactive associations of fibers and polyphenols with human intestinal bacteria00.00

~~~

---
Rodes L., Tomaro-Duchesneau C., Saha S., Paul A., Malhotra M., Marinescu D., Shao W., Kahouli I., Prakash S.
. (). :
2-s2.0-84909984862
Scopus.00Enrichment of Bifidobacterium longum subsp. infantis ATCC 15697 within the human gut microbiota using alginate-poly-l-lysine-alginate microencapsulation oral delivery system: An in vitro analysis using a computer-controlled dynamic human gastrointestinal 00.00

~~~

---
Bianchi F., Rossi E.A., Sakamoto I.K., Adorno M.A.T., Van de Wiele T., Sivieri K.
. (). :
2-s2.0-84903458491
Scopus.00Beneficial effects of fermented vegetal beverages on human gastrointestinal microbial ecosystem in a simulator00.00

~~~

---
Rodes L., Saha S., Tomaro-Duchesneau C., Prakash S.
. (). :
2-s2.0-84902173122
Scopus.00Microencapsulated Bifidobacterium longum subsp. infantis ATCC 15697 favorably modulates gut microbiota and reduces circulating endotoxins in F344 rats00.00

~~~

---
Vong L.B., Yoshitomi T., Morikawa K., Saito S., Matsui H., Nagasaki Y.
. (). :
2-s2.0-84901408959
Scopus.00Oral nanotherapeutics: Effect of redox nanoparticle on microflora in mice with dextran sodium sulfate-induced colitis00.00

~~~

---
Atherly T., Ziemer C.J.
. (). :
2-s2.0-84898006017
Scopus.00Bacteroides isolated from four mammalian hosts lack host-specific 16S rRNA gene phylogeny and carbon and nitrogen utilization patterns00.00

~~~

---
Papineni R.V.L., Umar S.
. (). :
2-s2.0-84962780792
Scopus.00Spot light on intestinal microbiota00.00

~~~

---
Peng X., Li S., Luo J., Wu X., Liu L.
. (). :
2-s2.0-84878733315
Scopus.00Effects of dietary fibers and their mixtures on short chain fatty acids and microbiota in mice guts00.00

~~~

---
Petkova D., Staneva G., Markovska T., Iliev I., Ivanova I., Pankov R., Chakarov S., Momchilova A.
. (). :
2-s2.0-84862580453
Scopus.00Fructooligosaccharide intake alters the phospholipid and fatty acid composition of liver plasma membranes00.00

~~~

---
Beyolu D., Smith R.L., Idle J.R.
. (). :
2-s2.0-84862776600
Scopus.00Dog bites man or man bites dog? the enigma of the amino acid conjugations00.00

~~~

---
Mou H., Zhou F., Jiang X., Liu Z.
. (). :
2-s2.0-80053478050
Scopus.00Production, purification and properties of β-mannanase from soil bacterium bacillus circulans m-2100.00

~~~

---
Tamura M., Ohnishi Y., Kotani T., Gato N.
. (). :
2-s2.0-79953906279
Scopus.00Effects of new dietary fiber from Japanese apricot (Prunus mume Sieb. et Zucc.) on gut function and intestinal microflora in adult mice00.00

~~~

---
White W.L., Coveny A.H., Robertson J., Clements K.D.
. (). :
2-s2.0-77955282109
Scopus.00Utilisation of mannitol by temperate marine herbivorous fishes00.00

~~~

---
Del Bò C., Ciappellano S., Klimis-Zacas D., Daniela M., Claudio G., Riso P., Porrini M.
. (). :
2-s2.0-77249175334
Scopus.00Anthocyanin absorption, metabolism, and distribution from a wild blueberry-enriched diet (vaccinium angustifolium) is affected by diet duration in the sprague-dawley rat00.00

~~~

---
Bernardi T., Tamburini E.
. (). :
2-s2.0-71049122332
Scopus.00An HPTLC-AMD method for understanding the metabolic behavior of microorganisms in the presence of mixed carbon sources. the case of Bifidobacterium adolescentis MB 23900.00

~~~

---
Moura P., Cabanas S., Lourenço P., Gírio F., Loureiro-Dias M.C., Esteves M.P.
. (). :
2-s2.0-50849090945
Scopus.00In vitro fermentation of selected xylo-oligosaccharides by piglet intestinal microbiota00.00

~~~

---
Cani P.-D., Amar J., Burcelin R.
. (). :
2-s2.0-36649019383
Scopus.00Healthy intestinal flora for healthy energy metabolism [Une flore intestinale saine pour un métabolisme énergé tique sain]00.00

~~~

---
Sampedro L., Jeannotte R., Whalen J.K.
. (). :
2-s2.0-33746803255
Scopus.00Trophic transfer of fatty acids from gut microbiota to the earthworm Lumbricus terrestris L00.00

~~~

---
Kuda T., Yano T., Matsuda N., Nishizawa M.
. (). :
2-s2.0-13244295466
Scopus.00Inhibitory effects of laminaran and low molecular alginate against the putrefactive compounds produced by intestinal microflora in vitro and in rats00.00

~~~

---
Harmsen H.J.M., Raangs G.C., Franks A.H., Wildeboer-Veloo A.C.M., Welling G.W.
. (). :
2-s2.0-0036880094
Scopus.00The effect of the prebiotic inulin and the probiotic Bifidobacterium longum on the fecal microflora of healthy volunteers measured by FISH and DGGE00.00

~~~

---
Michel C., Kravtchenko T.P., David A., Gueneau S., Kozlowski F., Cherbut C.
. (). :
2-s2.0-0032321821
Scopus.00In Vitro prebiotic effects of Acacia gums onto the human intestinal microbiota depends on both botanical origin and environmental pH00.00

~~~

---
Phipps A.N., Stewart J., Wright B., Wilson I.D.
. (). :
2-s2.0-0031839564
Scopus.00Effect of diet on the urinary excretion of hippuric acid and other dietary-derived aromatics in rat. A complex interaction between diet, gut microflora and substrate specificity00.00

~~~

---
Hutapea A.M., Toskulkao C., Buddhasukh D., Wilairat P., Glinsukon T.
. (). :
2-s2.0-0031401275
Scopus.00Digestion of stevioside, a natural sweetener, by various digestive enzymes00.00

~~~

---
Brune A., Miambi E., Breznak J.A.
. (). :
2-s2.0-0029037054
Scopus.00Roles of oxygen and the intestinal microflora in the metabolism of lignin- derived phenylpropanoids and other monoaromatic compounds by termites00.00

~~~

---
Paul J., Saxena S., Varma A.
. (). :
2-s2.0-34250078793
Scopus.00Ultrastructural studies of the termite (Odontotermes obesus) gut microflora and its cellulolytic properties00.00

~~~

---
Kuriki T., Yanase M., Takata H., Takesada Y., Imanaka T., Okada S.
. (). :
2-s2.0-0027450658
Scopus.00A new way of producing isomalto-oligosaccharide syrup by using the transglycosylation reaction of neopullulanase00.00

~~~

---
Brighenti F., Testolin G., Canzi E., Ferrari A., Wolever T.M.S., Ciappellano S., Porrini M., Simonetti P.
. (). :
2-s2.0-0024397545
Scopus.00Influence of long-term feeding of different purified dietary fibers on the volatile fatty acid (VFA) profile, pH and fiber-degrading activity of the cecal contents in rats00.00

~~~

---
Englyst H.N., Hay S., Macfarlane G.T.
. (). :
2-s2.0-45949120994
Scopus.00Polysaccharide breakdown by mixed populations of human faecal bacteria00.00

~~~

---
Mikami N., Yoshimura J., Kaneko H., Yamada H., Miyamoto J.
. (). :
2-s2.0-84987043568
Scopus.00Metabolism in rats of 3‐phenoxybenzyl alcohol and 3‐phenoxybenzoic acid glucoside conjugates formed in plants00.00

~~~

---
Renwick A.G.
. (). :
2-s2.0-0021955248
Scopus.00The fate of intense sweeteners in the body00.00

~~~

---
Kearsley M.W., Birch G.G., Lian‐Loh R.H.P.
. (). :
2-s2.0-84987240486
Scopus.00The Metabolic Fate of Hydrogenated Glucose Syrups00.00

~~~

---
Rackis J.J.
. (). :
2-s2.0-51249181613
Scopus.00Flatulence caused by soya and its control through processing00.00

~~~

---
D005243Feces138/1078[+PMIDs]
D001419Bacteriataxid:2115/1078[+PMIDs]
D010368Pectins89na02m4rx 9000-69-5 92/1078[+PMIDs]
D004043Dietary Fiber77/1078[+PMIDs]
D005232Fatty Acids, Volatile75/1078[+PMIDs]
D012336RNA, Ribosomal, 16S64/1078[+PMIDs]
D000328Adult56/1078[+PMIDs]
D000821Animal Feed54/1078[+PMIDs]
D056692Prebiotics49/1078[+PMIDs]
D005503Food Additives44/1078[+PMIDs]
D019936Probioticstaxid:41/1078[+PMIDs]
D009844Oligosaccharides36/1078[+PMIDs]
D019587Dietary Supplements36/1078[+PMIDs]
D008875Middle Aged29/1078[+PMIDs]
D005936Glucans26/1078[+PMIDs]
D009765Obesity26/1078[+PMIDs]
D007778Lactobacillustaxid:157824/1078[+PMIDs]
D055815Young Adult23/1078[+PMIDs]
D019422Dietary Sucrose23/1078[+PMIDs]
D003092Colitis23/1078[+PMIDs]
D041963Bacteroidetestaxid:97622/1078[+PMIDs]
D001644Bifidobacteriumtaxid:167822/1078[+PMIDs]
D011134Polysaccharides22/1078[+PMIDs]
D004040Dietary Carbohydrates20/1078[+PMIDs]
D002482Cellulose9004-34-6 18/1078[+PMIDs]
D013395Sucrose57-50-1 18/1078[+PMIDs]
D000368Aged18/1078[+PMIDs]
D004926Escherichia colitaxid:56218/1078[+PMIDs]
D002087Butyrates17/1078[+PMIDs]
D001439Bacteroidestaxid:81617/1078[+PMIDs]
D001426Bacterial Proteins16/1078[+PMIDs]
D000068536Firmicutestaxid:123913/1078[+PMIDs]
D000893Anti-Inflammatory Agents13/1078[+PMIDs]
D005638Fruit13/1078[+PMIDs]
D005227Fatty Acids13/1078[+PMIDs]
D004269DNA, Bacterial13/1078[+PMIDs]
D016264Dextran Sulfate9042-14-2 12/1078[+PMIDs]
D007444Inulin9005-80-5 12/1078[+PMIDs]
D010936Plant Extracts12/1078[+PMIDs]
D016207Cytokines12/1078[+PMIDs]
D001647Bile Acids and Salts12/1078[+PMIDs]
D014280Triglycerides11/1078[+PMIDs]
D020560Proteobacteriataxid:122411/1078[+PMIDs]
D002784Cholesterol97c5t2uq7j 57-88-5 10/1078[+PMIDs]
D008070Lipopolysaccharides10/1078[+PMIDs]
D018149Glucose Intolerance10/1078[+PMIDs]
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D000293Adolescent9/1078[+PMIDs]
D001786Blood Glucose9/1078[+PMIDs]
D012439Saccharin9/1078[+PMIDs]
D013213Starch9005-25-8 9/1078[+PMIDs]
D003300Copper789u1901c5 7440-50-8 9/1078[+PMIDs]
D002266Carboxymethylcellulose Sodium9/1078[+PMIDs]
D015034Zinc Oxide9/1078[+PMIDs]
D019817Benzoic Acid8skn0b0mim 582-25-2 65-85-0 763yqn2k7k 9/1078[+PMIDs]
D013402Sugar Alcohols9/1078[+PMIDs]
D004041Dietary Fats9/1078[+PMIDs]
D014993Xylitol8/1078[+PMIDs]
D005502Food8/1078[+PMIDs]
D008351Mannans8/1078[+PMIDs]
D014409Tumor Necrosis Factor-alpha8/1078[+PMIDs]
D048271Chitosan9012-76-4 8/1078[+PMIDs]
D000464Alginates8/1078[+PMIDs]
D001218Aspartame8/1078[+PMIDs]
D008055Lipids8/1078[+PMIDs]
D005690Galactose7/1078[+PMIDs]
D006603Hexuronic Acids7/1078[+PMIDs]
D041943Infant Formula7/1078[+PMIDs]
D003424Crohn Disease7/1078[+PMIDs]
D019344Lactic Acid33x04xa5at 3q6m5set7w 50-21-5 67m901l9nq f9s9ffu82n 7/1078[+PMIDs]
D006026Glycoside Hydrolases7/1078[+PMIDs]
D059808Polyphenols7/1078[+PMIDs]
D005947Glucose7/1078[+PMIDs]
D003093Colitis, Ulcerative7/1078[+PMIDs]
D015212Inflammatory Bowel Diseases7/1078[+PMIDs]
D000975Antioxidants7/1078[+PMIDs]
D011201Poultry Diseases7/1078[+PMIDs]
D005632Fructose30237-26-4 7/1078[+PMIDs]
D011136Polysorbates7/1078[+PMIDs]
D018836Inflammation Mediators6/1078[+PMIDs]
D000596Amino Acids6/1078[+PMIDs]
D014990Xylans6/1078[+PMIDs]
D018720Prevotellataxid:8386/1078[+PMIDs]
D065626Non-alcoholic Fatty Liver Disease6/1078[+PMIDs]
D010455Peptides6/1078[+PMIDs]
D003013Clostridiumtaxid:14856/1078[+PMIDs]
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D007223Infant6/1078[+PMIDs]
D012333RNA, Messenger6/1078[+PMIDs]
D010636Phenols6/1078[+PMIDs]
D006046Gold7440-57-5 5/1078[+PMIDs]
D007004Hypoglycemic Agents5/1078[+PMIDs]
D008892Milk5/1078[+PMIDs]
D001546Bentonite1302-78-9 a585mn1h2l 5/1078[+PMIDs]
D016753Interleukin-10130068-27-8 5/1078[+PMIDs]
D006094Gram-Positive Bacteriataxid:5/1078[+PMIDs]
D043562Receptors, G-Protein-Coupled5/1078[+PMIDs]
D003924Diabetes Mellitus, Type 25/1078[+PMIDs]
D000890Anti-Infective Agents5/1078[+PMIDs]
D001412Bacillus subtilistaxid:14235/1078[+PMIDs]
D012643Selenium5/1078[+PMIDs]
D007785Lactose5/1078[+PMIDs]
D013012Sorbitol506t60a25r 50-70-4 5/1078[+PMIDs]
D000070077Bacteroides thetaiotaomicrontaxid:8185/1078[+PMIDs]
D012329RNA, Bacterial5/1078[+PMIDs]
D002245Carbon Dioxide142m471b3j 124-38-9 5/1078[+PMIDs]
D003470Culture Media5/1078[+PMIDs]
D011994Recombinant Proteins5/1078[+PMIDs]
D007070Immunoglobulin A5/1078[+PMIDs]
D004275DNA, Ribosomal5/1078[+PMIDs]
D005766Gastrointestinal Contents5/1078[+PMIDs]
D013843Thiazines5/1078[+PMIDs]
D004044Dietary Proteins5/1078[+PMIDs]
D020563Gammaproteobacteriataxid:12364/1078[+PMIDs]
D000077182Polylactic Acid-Polyglycolic Acid Copolymer1sia8062rs 4/1078[+PMIDs]
D013315Stress, Psychological4/1078[+PMIDs]
D010648Phenylacetates4/1078[+PMIDs]
D000970Antineoplastic Agents4/1078[+PMIDs]
D066248High Fructose Corn Syrup4/1078[+PMIDs]
D004755Enterobacteriaceaetaxid:5434/1078[+PMIDs]
D003474Curcumin4/1078[+PMIDs]
D001565Benzoates4/1078[+PMIDs]
D055951Functional Food4/1078[+PMIDs]
D004927Escherichia coli Infections4/1078[+PMIDs]
D012970Sodium Glutamate4/1078[+PMIDs]
D007074Immunoglobulin G4/1078[+PMIDs]
D007328Insulin4/1078[+PMIDs]
D009077Mucins4/1078[+PMIDs]
D016983Enterococcustaxid:13504/1078[+PMIDs]
D001391Azo Compounds4/1078[+PMIDs]
D006090Gram-Negative Bacteriataxid:4/1078[+PMIDs]
D010743Phospholipids4/1078[+PMIDs]
D011550Pseudomonas aeruginosataxid:2874/1078[+PMIDs]
D001421Bacteria, Anaerobictaxid:4/1078[+PMIDs]
D007234Infant, Premature4/1078[+PMIDs]
D005685Galactans4/1078[+PMIDs]
D006626Hippurates4/1078[+PMIDs]
D008895Milk, Human4/1078[+PMIDs]
D013293Enterococcus faecalistaxid:13514/1078[+PMIDs]
D003967Diarrhea4/1078[+PMIDs]
D048191Lactobacillus plantarumtaxid:15903/1078[+PMIDs]
D012431Rutin5g06tvy3r7 153-18-4 3/1078[+PMIDs]
D002169Campylobacter Infections3/1078[+PMIDs]
D005419Flavonoids3/1078[+PMIDs]
D001628Beverages3/1078[+PMIDs]
D003015Clostridium Infections3/1078[+PMIDs]
D013211Staphylococcus aureustaxid:12803/1078[+PMIDs]
D043364Endo-1,4-beta Xylanases3/1078[+PMIDs]
D008031Lignin9005-53-2 3/1078[+PMIDs]
D058616Synbiotics3/1078[+PMIDs]
D000069978Bifidobacterium longumtaxid:2168163/1078[+PMIDs]
D005051Eubacteriumtaxid:17303/1078[+PMIDs]
D020723Glucuronic Acid8a5d83q4rw 10048-73-4 10587-95-8 576-37-4 7182-77-6 3/1078[+PMIDs]
D008565Membrane Proteins3/1078[+PMIDs]
D007079Ileitis3/1078[+PMIDs]
D005966Glucuronidase3/1078[+PMIDs]
D000086102Akkermansiataxid:2399343/1078[+PMIDs]
D053583Interleukin-1beta3/1078[+PMIDs]
D011073Polyamines3/1078[+PMIDs]
D004756Enterobacteriaceae Infections3/1078[+PMIDs]
D000069996Ligilactobacillus salivariustaxid:16243/1078[+PMIDs]
D003408Cresols3/1078[+PMIDs]
D011092Polyethylene Glycols3wjq0sdw1a 3/1078[+PMIDs]
D002648Child3/1078[+PMIDs]
D007792Lactulose4618-18-2 3/1078[+PMIDs]
D016123Campylobacter jejunitaxid:1973/1078[+PMIDs]
D005680gamma-Aminobutyric Acid56-12-2 31075-51-1 5959-35-3 6610-05-5 70582-09-1 92138-11-9 3/1078[+PMIDs]
D044082Citrobacter rodentiumtaxid:678253/1078[+PMIDs]
D005960Glucosides3/1078[+PMIDs]
D000369Aged, 80 and over3/1078[+PMIDs]
D000078622Nutrients3/1078[+PMIDs]
D016967Fusobacterium nucleatumtaxid:8513/1078[+PMIDs]
D000894Anti-Inflammatory Agents, Non-Steroidal3/1078[+PMIDs]
D015850Interleukin-63/1078[+PMIDs]
D000071199NLR Family, Pyrin Domain-Containing 3 Protein3/1078[+PMIDs]
D009601Nitroreductases3/1078[+PMIDs]
D001414Bacitracin1405-87-4 1405-89-6 3/1078[+PMIDs]
D002908Chronic Disease3/1078[+PMIDs]
D016360Clostridioides difficiletaxid:14963/1078[+PMIDs]
D004396Coloring Agents3/1078[+PMIDs]
D009093Mucus3/1078[+PMIDs]
D012486Salmonella typhimuriumtaxid:903713/1078[+PMIDs]
D010421Pentanoic Acids3/1078[+PMIDs]
D035683MicroRNAs3/1078[+PMIDs]
D006027Glycosides3/1078[+PMIDs]
D004896Erythritol3/1078[+PMIDs]
D017382Reactive Oxygen Species3/1078[+PMIDs]
D051197Toll-Like Receptor 43/1078[+PMIDs]
D000085Acetates3/1078[+PMIDs]
D002241Carbohydrates3/1078[+PMIDs]
D011135Polysaccharides, Bacterial3/1078[+PMIDs]
D054324Enterohemorrhagic Escherichia colitaxid:3/1078[+PMIDs]
D062385Hydroxybenzoates3/1078[+PMIDs]
D005234Fatty Liver3/1078[+PMIDs]
D007378Interleukins2/1078[+PMIDs]
D008108Liver Diseases, Alcoholic2/1078[+PMIDs]
D001765Blind Loop Syndrome2/1078[+PMIDs]
D001007Anxiety2/1078[+PMIDs]
D010666Phenylpropionates2/1078[+PMIDs]
D020543Proteome2/1078[+PMIDs]
D018696Neuroprotective Agents2/1078[+PMIDs]
D000070037Faecalibacterium prausnitziitaxid:8532/1078[+PMIDs]
D009346Neisseriaceaetaxid:4812/1078[+PMIDs]
D010118Oxytetracycline2/1078[+PMIDs]
D007136Immunoglobulins2/1078[+PMIDs]
D016209Interleukin-82/1078[+PMIDs]
D045182Fusobacteriataxid:320662/1078[+PMIDs]
D024821Metabolic Syndrome2/1078[+PMIDs]
D000069985Bifidobacterium bifidumtaxid:16812/1078[+PMIDs]
D058847Inflammasomes2/1078[+PMIDs]
D005978Glutathione2/1078[+PMIDs]
D000581Amidohydrolases2/1078[+PMIDs]
D054307Enterotoxigenic Escherichia colitaxid:2/1078[+PMIDs]
D006949Hyperlipidemias2/1078[+PMIDs]
D008171Lung Diseases2/1078[+PMIDs]
D015014Yogurt2/1078[+PMIDs]
D000077322Alginic Acid8c3z4148wz 2/1078[+PMIDs]
D011506Proteins2/1078[+PMIDs]
D001952Bridged-Ring Compounds2/1078[+PMIDs]
D043183Irritable Bowel Syndrome2/1078[+PMIDs]
D006861Hydrogen Peroxide2/1078[+PMIDs]
D002352Carrier Proteins2/1078[+PMIDs]
D005408Flagellin12777-81-0 2/1078[+PMIDs]
D000073893Sugars2/1078[+PMIDs]
D003248Constipation2/1078[+PMIDs]
D062725Tight Junction Proteins2/1078[+PMIDs]
D015534Trans-Activators2/1078[+PMIDs]
D006722Honey2/1078[+PMIDs]
D002606Charcoal16291-96-6 64365-11-3 2/1078[+PMIDs]
D013011Sorbic Acid2/1078[+PMIDs]
D014769Virginiamycin11006-76-1 2/1078[+PMIDs]
D054709Lecithins2/1078[+PMIDs]
D011794Quercetin9ikm0i5t1e 117-39-5 2/1078[+PMIDs]
D037521Virulence Factors2/1078[+PMIDs]
D003692Delayed-Action Preparations2/1078[+PMIDs]
D005527Food, Fortified2/1078[+PMIDs]
D052196Levilactobacillus brevistaxid:15802/1078[+PMIDs]
D014302Trinitrobenzenesulfonic Acid8t3hqg2zc4 2508-19-2 5400-70-4 2/1078[+PMIDs]
D018038Sodium Selenite2/1078[+PMIDs]
D000641Ammonia7664-41-7 2/1078[+PMIDs]
D056486Chemical and Drug Induced Liver Injury2/1078[+PMIDs]
D018336Receptors, Aryl Hydrocarbon2/1078[+PMIDs]
D000069980Lacticaseibacillus paracaseitaxid:15972/1078[+PMIDs]
D010957Plasmids2/1078[+PMIDs]
D002400Cathartics2/1078[+PMIDs]
D016328NF-kappa B2/1078[+PMIDs]
D002392Catechin8r1v1stn48 154-23-4 16198-00-8 321-01-7 34phs7tu43 490-46-0 2/1078[+PMIDs]
D011732Pyridoxal Phosphate5v5ioj8338 54-47-7 2/1078[+PMIDs]
D019476Insect Proteins2/1078[+PMIDs]
D061327Verrucomicrobiataxid:742012/1078[+PMIDs]
D008320Maltose69-79-4 2/1078[+PMIDs]
D013553Swine Diseases2/1078[+PMIDs]
D047071beta-Glucans2/1078[+PMIDs]
D003911Dextrans2/1078[+PMIDs]
D006937Hypercholesterolemia2/1078[+PMIDs]
D015032Zinc2/1078[+PMIDs]
D007777Lactobacillaceaetaxid:339582/1078[+PMIDs]
D004798Enzymes2/1078[+PMIDs]
D000872Anthocyanins2/1078[+PMIDs]
D004751Enteritis2/1078[+PMIDs]
D050171Dyslipidemias2/1078[+PMIDs]
D001089Arabinose2/1078[+PMIDs]
D013267Stilbenes2/1078[+PMIDs]
D007501Iron2/1078[+PMIDs]
D008078Cholesterol, LDL2/1078[+PMIDs]
D013943Thymol3j50xa376e 89-83-8 2/1078[+PMIDs]
D047392beta-Cyclodextrins2/1078[+PMIDs]
D011552Pseudomonas Infections2/1078[+PMIDs]
D020148Butyric Acid107-92-6 556-45-6 2/1078[+PMIDs]
D012481Salmonella Infections, Animal2/1078[+PMIDs]
D050177Overweight2/1078[+PMIDs]
D002167Campylobactertaxid:1942/1078[+PMIDs]
D000073561Clostridiaceaetaxid:319792/1078[+PMIDs]
D000208Acute Disease2/1078[+PMIDs]
D009565Nitrate Reductases2/1078[+PMIDs]
D045786Diterpenes, Kaurane2/1078[+PMIDs]
D009579Nitrobenzoates2/1078[+PMIDs]
D009822Oils, Volatile2/1078[+PMIDs]
D016480Helicobacter pyloritaxid:2102/1078[+PMIDs]
D000667Ampicillin7c782967rd 69-52-3 69-53-4 7177-48-2 hxq6a1n7r6 jfn36l5s8k 2/1078[+PMIDs]
D004187Disaccharides2/1078[+PMIDs]
D002265Carboxylic Ester Hydrolases2/1078[+PMIDs]
D003922Diabetes Mellitus, Type 12/1078[+PMIDs]
D001249Asthma2/1078[+PMIDs]
D001424Bacterial Infections2/1078[+PMIDs]
D008697Methane2/1078[+PMIDs]
D011620Psyllium8063-16-9 9c60y73166 2/1078[+PMIDs]
D000458Cyanobacteriataxid:11172/1078[+PMIDs]
D014631Valerates2/1078[+PMIDs]
D011401Promoter Regions, Genetic2/1078[+PMIDs]
D007410Intestinal Diseases2/1078[+PMIDs]
D002364Caseins2/1078[+PMIDs]
D014255Trichothecenes2/1078[+PMIDs]
D044946Biflavonoids2/1078[+PMIDs]
D044945Proanthocyanidins2/1078[+PMIDs]
D020382Interleukin-182/1078[+PMIDs]
D029968Escherichia coli Proteins2/1078[+PMIDs]
D005765Gastrointestinal Agents2/1078[+PMIDs]
D001219Aspartate Aminotransferases2/1078[+PMIDs]
D015847Interleukin-4207137-56-2 2/1078[+PMIDs]
D005561Formates2/1078[+PMIDs]
D014131Trace Elements2/1078[+PMIDs]
D014315Triterpenes2/1078[+PMIDs]
D007781Lactoferrin2/1078[+PMIDs]
D012459Salicylates2/1078[+PMIDs]
D055549Volatile Organic Compounds2/1078[+PMIDs]
D009195Peroxidase2/1078[+PMIDs]
D013501Surface-Active Agents2/1078[+PMIDs]
D000070000Bacillus coagulanstaxid:13982/1078[+PMIDs]
D005526Food, Formulated2/1078[+PMIDs]
D009532Nickel7ov03qg267 7440-02-0 2/1078[+PMIDs]
D007529Isoflavones2/1078[+PMIDs]
D010446Peptide Fragments2/1078[+PMIDs]
D014364Tryptophan8duh1n11bx 6912-86-3 73-22-3 2/1078[+PMIDs]
D009247NADH, NADPH Oxidoreductases2/1078[+PMIDs]
D010833Phytic Acid7igf0s7r8i 83-86-3 88496g1erl l1wk0t5s7z n1dep08lnk 2/1078[+PMIDs]
D005609Free Radicals2/1078[+PMIDs]
D000077185Resveratrol2/1078[+PMIDs]
D002351Carrageenan9000-07-1 2/1078[+PMIDs]
D002570Ceruloplasmin2/1078[+PMIDs]
D052016Mucositis2/1078[+PMIDs]
D007779Lactobacillus acidophilustaxid:15792/1078[+PMIDs]
D005630Fructans2/1078[+PMIDs]
D003404Creatinine1/1078[+PMIDs]
D052439Lipid Metabolism Disorders1/1078[+PMIDs]
D014810Vitamin E1406-18-4 1/1078[+PMIDs]
D052200Limosilactobacillus reuteritaxid:15981/1078[+PMIDs]
D013449Sulfonamides1/1078[+PMIDs]
D006458Hemolymph1/1078[+PMIDs]
D012335RNA, Ribosomal1/1078[+PMIDs]
D041862Chloroflexitaxid:2007951/1078[+PMIDs]
D016229Amyloid beta-Peptides1/1078[+PMIDs]
D003930Diabetic Retinopathy1/1078[+PMIDs]
D003731Dental Caries1/1078[+PMIDs]
D017861Porphyromonastaxid:8361/1078[+PMIDs]
D036145Ginsenosides1/1078[+PMIDs]
D002630Chemotactic Factors1/1078[+PMIDs]
D007075Immunoglobulin M1/1078[+PMIDs]
D005456Fluorescent Dyes1/1078[+PMIDs]
D005054Eugenol3t8h1794qw 97-53-0 1/1078[+PMIDs]
D010047Ovalbumin9006-59-1 1/1078[+PMIDs]
D007225Infant Food1/1078[+PMIDs]
D060754Equol531-95-3 10499-17-9 66036-38-2 1/1078[+PMIDs]
D000073417Dietary Sugars1/1078[+PMIDs]
D000077204Temozolomide1/1078[+PMIDs]
D012559Schizophrenia1/1078[+PMIDs]
D060766Drinking Water1/1078[+PMIDs]
D044967Serum1/1078[+PMIDs]
D062407Meals1/1078[+PMIDs]
D001555Benzene Derivatives1/1078[+PMIDs]
D008706Methemoglobin9008-37-1 1/1078[+PMIDs]
D003016Clostridium perfringenstaxid:15021/1078[+PMIDs]
D016291Dizocilpine Maleate6lr8c1b66q 77086-21-6 77086-22-7 7py8kh681i 1/1078[+PMIDs]
D016984Enterococcus faeciumtaxid:13521/1078[+PMIDs]
D044882Glucose Metabolism Disorders1/1078[+PMIDs]
D010880Piperidines1/1078[+PMIDs]
D000082662Magnetic Iron Oxide Nanoparticles1/1078[+PMIDs]
D045782Hemiterpenes1/1078[+PMIDs]
D015815Cell Adhesion Molecules1/1078[+PMIDs]
D055767Immobilized Proteins1/1078[+PMIDs]
D018435ATP Binding Cassette Transporter, Subfamily B1/1078[+PMIDs]
D007773Lactates1/1078[+PMIDs]
D013113Spin Labels1/1078[+PMIDs]
D020170Caspase 11/1078[+PMIDs]
D013167Spondylitis, Ankylosing1/1078[+PMIDs]
D005395Fish Oils1/1078[+PMIDs]
D005346Fibroblast Growth Factors62031-54-3 1/1078[+PMIDs]
D009419Nerve Tissue Proteins1/1078[+PMIDs]
D016376Oligonucleotides, Antisense1/1078[+PMIDs]
D0101294-Aminobenzoic Acid1/1078[+PMIDs]
D001104Arbutin1/1078[+PMIDs]
D012685Sepharose9012-36-6 1/1078[+PMIDs]
D011518Proto-Oncogene Proteins1/1078[+PMIDs]
D005349Fibroins9007-76-5 1/1078[+PMIDs]
D044282Receptor, Serotonin, 5-HT1A112692-38-3 1/1078[+PMIDs]
D003520Cyclophosphamide8n3dw7272p 50-18-0 60007-96-7 60030-72-0 6uxw23996m 1/1078[+PMIDs]
D005750Gastric Juice1/1078[+PMIDs]
D008293Malates1/1078[+PMIDs]
D020536Enzyme Activators1/1078[+PMIDs]
D000960Hypolipidemic Agents1/1078[+PMIDs]
D000410Alanine Transaminase1/1078[+PMIDs]
D003876Dermatitis, Atopic1/1078[+PMIDs]
D000079262Obesity, Maternal1/1078[+PMIDs]
D004761Enterocolitis, Pseudomembranous1/1078[+PMIDs]
D005486Flavin Mononucleotide7n464ure7e 130-40-5 146-17-8 22251-85-0 32972-48-8 6184-17-4 1/1078[+PMIDs]
D010194Pancreatin8049-47-6 1/1078[+PMIDs]
D051545Cyclooxygenase 11/1078[+PMIDs]
D066246ErbB Receptors1/1078[+PMIDs]
D051546Cyclooxygenase 21/1078[+PMIDs]
D018377Neurotransmitter Agents1/1078[+PMIDs]
D005998Glycine1/1078[+PMIDs]
D002253Carbonated Beverages1/1078[+PMIDs]
D004791Enzyme Inhibitors1/1078[+PMIDs]
D000217Acyltransferases1/1078[+PMIDs]
D004967Estrogens1/1078[+PMIDs]
D001559Benzhydryl Compounds1/1078[+PMIDs]
D015378Imipenem71otz9ze0a 74431-23-5 q20im7he75 1/1078[+PMIDs]
D0151023,4-Dihydroxyphenylacetic Acid102-32-9 79428-07-2 1/1078[+PMIDs]
D005968Glutamate Decarboxylase1/1078[+PMIDs]
D000083822Microbacteriumtaxid:338821/1078[+PMIDs]
D012168Retinal Pigments1/1078[+PMIDs]
D014675Vegetables1/1078[+PMIDs]
D051194Toll-Like Receptor 11/1078[+PMIDs]
D014737Vibrionaceaetaxid:6411/1078[+PMIDs]
D010850Picornaviridae Infections1/1078[+PMIDs]
D010940Plant Proteins1/1078[+PMIDs]
D013295Streptococcus mutanstaxid:13091/1078[+PMIDs]
D043371Fatty Acids, Omega-61/1078[+PMIDs]
D005965Glucuronates1/1078[+PMIDs]
D017365Spices1/1078[+PMIDs]
D019208Brain-Derived Neurotrophic Factor1/1078[+PMIDs]
D018960Hyaluronan Receptors1/1078[+PMIDs]
D011133Polysaccharide-Lyases1/1078[+PMIDs]
D001769Blood1/1078[+PMIDs]
D000548Amaranth Dye915-67-3 1/1078[+PMIDs]
D000072596Hepatitis A Virus Cellular Receptor 11/1078[+PMIDs]
D014443Tyrosine42hk56048u 55520-40-6 60-18-4 1/1078[+PMIDs]
D018554Avena1/1078[+PMIDs]
D000084922Resistant Starch1/1078[+PMIDs]
D007211Indoles1/1078[+PMIDs]
D020345Enterocolitis, Necrotizing1/1078[+PMIDs]
D042802Oxalobacteraceaetaxid:756821/1078[+PMIDs]
D019833Genistein1/1078[+PMIDs]
D008460Meat1/1078[+PMIDs]
D003049Coccidiostats1/1078[+PMIDs]
D003864Depression, Chemical1/1078[+PMIDs]
D000431Ethanol3k9958v90m 64-17-5 1/1078[+PMIDs]
D004952Esters1/1078[+PMIDs]
D001614beta-Amylase1/1078[+PMIDs]
D007071Immunoglobulin A, Secretory1/1078[+PMIDs]
D050990GATA3 Transcription Factor1/1078[+PMIDs]
D000069296Type III Secretion Systems1/1078[+PMIDs]
D012313RNA63231-63-0 1/1078[+PMIDs]
D018691Excitatory Amino Acid Antagonists1/1078[+PMIDs]
D006899Mixed Function Oxygenases1/1078[+PMIDs]
D016905Gram-Negative Bacterial Infections1/1078[+PMIDs]
D002097C-Reactive Protein9007-41-4 1/1078[+PMIDs]
D004247DNA9007-49-2 1/1078[+PMIDs]
D002118Calcium1/1078[+PMIDs]
D044902beta-Mannosidase1/1078[+PMIDs]
D001420Bacteria, Aerobictaxid:1/1078[+PMIDs]
D012235Rhodamines1/1078[+PMIDs]
D045663Quantum Dots1/1078[+PMIDs]
D054392Adipokines1/1078[+PMIDs]
D009251NADPH-Ferrihemoprotein Reductase1/1078[+PMIDs]
D016330Frail Elderly1/1078[+PMIDs]
D006170Gum Arabic9000-01-5 1/1078[+PMIDs]
D010655Phenylenediamines1/1078[+PMIDs]
D016908Gram-Positive Bacterial Infections1/1078[+PMIDs]
D054407Chemokine CCL41/1078[+PMIDs]
D012645Selenomethionine964mrk2pel 13091-98-0 1464-42-2 2578-28-1 3211-76-5 61125-47-1 p6708e7555 1/1078[+PMIDs]
D013311Streptozocin5w494urq81 18883-66-4 1/1078[+PMIDs]
D000075927KRIT1 Protein1/1078[+PMIDs]
D002331Carnitine1/1078[+PMIDs]
D001407Bacillustaxid:13861/1078[+PMIDs]
D011137Polystyrenes1/1078[+PMIDs]
D039903Actinobacteriataxid:17601/1078[+PMIDs]
D000073396Metal-Organic Frameworks1/1078[+PMIDs]
D011493Protein Kinase C1/1078[+PMIDs]
D005673Fusobacteriumtaxid:8481/1078[+PMIDs]
D053468CARD Signaling Adaptor Proteins1/1078[+PMIDs]
D007371Interferon-gamma82115-62-6 1/1078[+PMIDs]
D005988Glyceric Acids1/1078[+PMIDs]
D017747Seafood1/1078[+PMIDs]
D010447Peptide Hydrolases1/1078[+PMIDs]
D014260Triclosan4nm5039y5x 3380-34-5 1/1078[+PMIDs]
D012118Resorcinols1/1078[+PMIDs]
D010460Peptococcustaxid:27401/1078[+PMIDs]
D016593Terfenadine7ba5g9y06q 50679-08-8 1/1078[+PMIDs]
D013662Tea1/1078[+PMIDs]
D012097Repressor Proteins1/1078[+PMIDs]
D018272Porins1/1078[+PMIDs]
D000658Amoxicillin804826j2hu 26787-78-0 26889-93-0 34642-78-9 544y3d6myh 61336-70-7 9em05410q9 1/1078[+PMIDs]
D000069976Bacillus licheniformistaxid:14021/1078[+PMIDs]
D014508Urea8w8t17847w 57-13-6 1/1078[+PMIDs]
D048168Escherichia coli K12taxid:833331/1078[+PMIDs]
D020825T-Box Domain Proteins1/1078[+PMIDs]
D012450Safflower Oil8001-23-8 1/1078[+PMIDs]
D020780Matrix Metalloproteinase 91/1078[+PMIDs]
D044950Flavanones1/1078[+PMIDs]
D006639Histidine4qd397987e 7006-35-1 71-00-1 1/1078[+PMIDs]
D010300Parkinson Disease1/1078[+PMIDs]
D063326Exosome Multienzyme Ribonuclease Complex1/1078[+PMIDs]
D010938Plant Oils1/1078[+PMIDs]
D005512Food Hypersensitivity1/1078[+PMIDs]
D000080424Cytokine Release Syndrome1/1078[+PMIDs]
D009005Monosaccharides1/1078[+PMIDs]
D005414Flatulence1/1078[+PMIDs]
D013294Lactococcus lactistaxid:13581/1078[+PMIDs]
D013256Steroids1/1078[+PMIDs]
D000078304Tigecycline70je2n95kr 1/1078[+PMIDs]
D051195Toll-Like Receptor 21/1078[+PMIDs]
D009767Obesity, Morbid1/1078[+PMIDs]
D006713Homogentisic Acid1/1078[+PMIDs]
D018798Anemia, Iron-Deficiency1/1078[+PMIDs]
D043182Carboxylesterase1/1078[+PMIDs]
D006851Hydrochloric Acid1/1078[+PMIDs]
D012463Saliva1/1078[+PMIDs]
D013107Sphingolipids1/1078[+PMIDs]
D009930Organic Chemicals1/1078[+PMIDs]
D000089882Antimicrobial Peptides1/1078[+PMIDs]
D052203Ferrosoferric Oxide1/1078[+PMIDs]
D028321Plant Preparations1/1078[+PMIDs]
D016481Helicobacter Infections1/1078[+PMIDs]
D002480Cellulase1/1078[+PMIDs]
D004317Doxorubicin80168379ag 23214-92-8 25316-40-9 82f2g7bl4e 1/1078[+PMIDs]
D006147Guanine5z93l87a1r 73-40-5 1/1078[+PMIDs]
D018950Lipopolysaccharide Receptors1/1078[+PMIDs]
D005663Furans1/1078[+PMIDs]
D001397Azoxymethane1/1078[+PMIDs]
D053284Polyunsaturated Alkamides1/1078[+PMIDs]
D014556Urine1/1078[+PMIDs]
D014168Transferrin1/1078[+PMIDs]
D000086382COVID-191/1078[+PMIDs]
D012210Rhamnose1/1078[+PMIDs]
D012794Sialic Acids1/1078[+PMIDs]
D020033Protein Isoforms1/1078[+PMIDs]
D001679Biogenic Amines1/1078[+PMIDs]
D011725Pyridines1/1078[+PMIDs]
D001646Bile1/1078[+PMIDs]
D006088Gram-Negative Aerobic Bacteriataxid:1/1078[+PMIDs]
D011726Pyridinium Compounds1/1078[+PMIDs]
D000544Alzheimer Disease1/1078[+PMIDs]
D008659Metabolic Diseases1/1078[+PMIDs]
D023181Antimicrobial Cationic Peptides1/1078[+PMIDs]
D013261Sterols1/1078[+PMIDs]
D006854Hydrocortisone1/1078[+PMIDs]
D009183Mycotoxins1/1078[+PMIDs]
D002227Carbazoles1/1078[+PMIDs]
D005767Gastrointestinal Diseases1/1078[+PMIDs]
D020381Interleukin-171/1078[+PMIDs]
D001238Asphyxia Neonatorum1/1078[+PMIDs]
D016760Proto-Oncogene Proteins c-fos1/1078[+PMIDs]
D006538Heptanoic Acids1/1078[+PMIDs]
D004151Dipeptides1/1078[+PMIDs]
D007770L-Lactate Dehydrogenase1/1078[+PMIDs]
D000519alpha-Galactosidase1/1078[+PMIDs]
D000470Alkaloids1/1078[+PMIDs]
D013291Streptococcustaxid:13011/1078[+PMIDs]
D051017Apoptosis Regulatory Proteins1/1078[+PMIDs]
D007192Indenes1/1078[+PMIDs]
D003577Cytochrome P-450 Enzyme System9035-51-2 1/1078[+PMIDs]
D011236Prediabetic State1/1078[+PMIDs]
D001438Bacteroidaceaetaxid:8151/1078[+PMIDs]
D005937Glucaric Acid1/1078[+PMIDs]
D000071019ATP Binding Cassette Transporter, Subfamily G, Member 81/1078[+PMIDs]
D004950Esterases1/1078[+PMIDs]
D009249NADP53-59-8 1/1078[+PMIDs]
D004492Edetic Acid9g34hu7rv0 139-33-3 14667-04-0 17421-79-3 2001-94-7 24267-45-6 24669-13-4 53404-51-6 60-00-4 62-33-9 6381-92-6 7379-27-3 7379-28-4 76353-66-7 7785-82-2 7fld91c86k ndt563s5vz 1/1078[+PMIDs]
D001992Bronchoalveolar Lavage Fluid1/1078[+PMIDs]
D010196Pancreatic Elastase1/1078[+PMIDs]
D014803Vitamin B Complex12001-76-2 1/1078[+PMIDs]
D003066Coenzyme A Ligases1/1078[+PMIDs]
D002614Chelating Agents1/1078[+PMIDs]
D051198Toll-Like Receptor 51/1078[+PMIDs]
D002109Caffeic Acids1/1078[+PMIDs]
D001599Berberine1/1078[+PMIDs]
D010945Plants, Edible1/1078[+PMIDs]
D002772Cholera Toxin9012-63-9 ec 1/1078[+PMIDs]
D062793Occludin1/1078[+PMIDs]
D061271Acidobacteriataxid:577231/1078[+PMIDs]
D002374Catalase1/1078[+PMIDs]
D010226Parabens1/1078[+PMIDs]
D015377Cilastatin141a6amn38 5428wxz74m 81129-83-1 82009-34-5 1/1078[+PMIDs]
D012475Salmonellataxid:5901/1078[+PMIDs]
D062366para-Aminobenzoates1/1078[+PMIDs]
D000418Albumins1/1078[+PMIDs]
D008286Malabsorption Syndromes1/1078[+PMIDs]
D013302Streptomycestaxid:18831/1078[+PMIDs]
D014226Triazenes1/1078[+PMIDs]
D064451Hepcidins1/1078[+PMIDs]
D000998Antiviral Agents1/1078[+PMIDs]
D003373Coumaric Acids1/1078[+PMIDs]
D052117Benzodioxoles1/1078[+PMIDs]
D000070036Faecalibacteriumtaxid:2168511/1078[+PMIDs]
D020168ATP Binding Cassette Transporter, Subfamily B, Member 11/1078[+PMIDs]
D003907Dexamethasone7s5i7g3jql 50-02-2 1/1078[+PMIDs]
D014157Transcription Factors1/1078[+PMIDs]
D004531Eggs1/1078[+PMIDs]
D010406Penicillins1/1078[+PMIDs]
D008081Liposomes1/1078[+PMIDs]
D002475Cellobiose16462-44-5 1/1078[+PMIDs]
D019342Acetic Acid1/1078[+PMIDs]
D010376Pediococcustaxid:12531/1078[+PMIDs]
D003920Diabetes Mellitus1/1078[+PMIDs]
D012639Seeds1/1078[+PMIDs]
D017962alpha-Linolenic Acid1/1078[+PMIDs]
D019287Zinc Sulfate7733-02-0 7446-20-0 1/1078[+PMIDs]
D000072377Syk Kinase1/1078[+PMIDs]
D019802Succinic Acid1/1078[+PMIDs]
D011498Protein Precursors1/1078[+PMIDs]
D009838Oligodeoxyribonucleotides1/1078[+PMIDs]
D036341Intercellular Signaling Peptides and Proteins1/1078[+PMIDs]
D029961Zebrafish Proteins1/1078[+PMIDs]
D039563Histamine H1 Antagonists, Non-Sedating1/1078[+PMIDs]
D002103Cadaverine1/1078[+PMIDs]
D009243NAD1/1078[+PMIDs]
D051996Transcription Factor RelA1/1078[+PMIDs]
D016194Receptors, N-Methyl-D-Aspartate1/1078[+PMIDs]
D000077146Irinotecan7673326042 042laq1iis 0h43101t0j 1/1078[+PMIDs]
D005983Glutens8002-80-0 1/1078[+PMIDs]
D012140Respiratory Tract Diseases1/1078[+PMIDs]
D027361Organic Anion Transporters1/1078[+PMIDs]
D003497Cyclic N-Oxides1/1078[+PMIDs]
D016604Aflatoxin B19n2n2y55mh 10279-73-9 1162-65-8 43043-21-6 77076-87-0 77076-88-1 84415-24-7 1/1078[+PMIDs]
D004415Dyspepsia1/1078[+PMIDs]
D029941Fish Proteins1/1078[+PMIDs]
D053545Spirulinataxid:11541/1078[+PMIDs]
D008076Cholesterol, HDL1/1078[+PMIDs]
D002318Cardiovascular Diseases1/1078[+PMIDs]
D000069463Olive Oil1/1078[+PMIDs]
D001622Betaine3scv180c9w 107-43-7 590-46-5 jk8u8k4d6k 1/1078[+PMIDs]
D004888Erysipelothrixtaxid:16471/1078[+PMIDs]
D000924Anticholesteremic Agents1/1078[+PMIDs]
D018805Sepsis1/1078[+PMIDs]
D000348Aflatoxins1/1078[+PMIDs]
D006023Glycoproteins1/1078[+PMIDs]
D054371Chemokine CXCL111/1078[+PMIDs]
D015820Cadherins1/1078[+PMIDs]
D005839Gentamicins1/1078[+PMIDs]
D012162Retinal Degeneration1/1078[+PMIDs]
D008562Membrane Glycoproteins1/1078[+PMIDs]
D061046Biological Control Agents1/1078[+PMIDs]
D052216Glucagon-Like Peptide 189750-14-1 1/1078[+PMIDs]
D017931DNA Primers1/1078[+PMIDs]
D015645Tylosin1/1078[+PMIDs]
D008107Liver Diseases1/1078[+PMIDs]
D005759Gastroenteritis1/1078[+PMIDs]
D047250Calixarenes130036-26-9 1/1078[+PMIDs]
D017077Culture Media, Conditioned1/1078[+PMIDs]
D019800Phenol339ncg44tv 108-95-2 139-02-6 4nc0t56v35 1/1078[+PMIDs]
D009569Nitric Oxide31c4ky9esh 10102-43-9 1/1078[+PMIDs]
D014885Waxes1/1078[+PMIDs]
D058610Isobutyrates1/1078[+PMIDs]
D015843Serpins1/1078[+PMIDs]
D001617beta-Glucosidase1/1078[+PMIDs]
D006569Hesperidin1/1078[+PMIDs]
D000193Actinomycetales Infections1/1078[+PMIDs]
D008461Meat Products1/1078[+PMIDs]
D009578Nitrobenzenes1/1078[+PMIDs]
D005732Gangliosides1/1078[+PMIDs]
D002918Chymotrypsin1/1078[+PMIDs]
D053759Interleukin-231/1078[+PMIDs]
D037341Fumonisins1/1078[+PMIDs]
D003352Corynebacteriumtaxid:17161/1078[+PMIDs]
D000209Acute-Phase Proteins1/1078[+PMIDs]
D055262Mucin-21/1078[+PMIDs]
D054411Receptors, Leptin1/1078[+PMIDs]
D011956Receptors, Cell Surface1/1078[+PMIDs]
D026361Reactive Nitrogen Species1/1078[+PMIDs]
D046972Clostridium butyricumtaxid:14921/1078[+PMIDs]
D016212Transforming Growth Factor beta1/1078[+PMIDs]
D012337RNA, Ribosomal, 18S1/1078[+PMIDs]
D007709Klebsiellataxid:5701/1078[+PMIDs]
D010456Peptides, Cyclic1/1078[+PMIDs]
D051437Renal Insufficiency1/1078[+PMIDs]
D058086Microalgaetaxid:1/1078[+PMIDs]
D047188Chalcones1/1078[+PMIDs]
D045604Extracellular Fluid1/1078[+PMIDs]
D015698Genomic Library1/1078[+PMIDs]
D003605D-Amino-Acid Oxidase1/1078[+PMIDs]
D018398Homeodomain Proteins1/1078[+PMIDs]
D020156Salicylic Acid1/1078[+PMIDs]
D004318Doxycycline1/1078[+PMIDs]
D008103Liver Cirrhosis1/1078[+PMIDs]
D002208Caproates1/1078[+PMIDs]
D002135Calcium-Binding Proteins1/1078[+PMIDs]
D004610Ellagic Acid19yrn3zs9p 476-66-4 1/1078[+PMIDs]
D005393Fish Diseases1/1078[+PMIDs]
D051269Sodium-Glucose Transporter 11/1078[+PMIDs]
D002182Candy1/1078[+PMIDs]
D019343Citric Acid2968phw8qp 77-92-9 xf417d3psl 1/1078[+PMIDs]
D013839Thiamphenicol1/1078[+PMIDs]
D000469Alkaline Phosphatase1/1078[+PMIDs]
D019779Salmonella entericataxid:289011/1078[+PMIDs]
D061026Programmed Cell Death 1 Receptor1/1078[+PMIDs]
D055372AMP-Activated Protein Kinases1/1078[+PMIDs]
D002945Cisplatin1/1078[+PMIDs]
D050901Nitrate Reductase1/1078[+PMIDs]
D018160Receptors, Cytoplasmic and Nuclear1/1078[+PMIDs]
D006017Glycolipids1/1078[+PMIDs]
D015262Xenobiotics1/1078[+PMIDs]
D000070059Paenibacillus larvaetaxid:14641/1078[+PMIDs]
D020719Glucuronides1/1078[+PMIDs]
D003047Coccidioidomycosis1/1078[+PMIDs]
D053594Myeloid Differentiation Factor 881/1078[+PMIDs]
D008074Lipoproteins1/1078[+PMIDs]
D011710Pyocyanine9oqm399341 85-66-5 1/1078[+PMIDs]
D008550Melatonin1/1078[+PMIDs]
D004224Diterpenes1/1078[+PMIDs]
D003457Cryptosporidiosis1/1078[+PMIDs]
D044602Cellulases1/1078[+PMIDs]
D000276Adjuvants, Immunologic1/1078[+PMIDs]
D004281Docosahexaenoic Acids25167-62-8 121191-40-0 122045-76-5 123301-30-4 123301-31-5 124020-09-3 2091-24-9 32839-18-2 6217-54-5 6610-27-1 89022-31-1 91403-70-2 1/1078[+PMIDs]
D002523Edible Grain1/1078[+PMIDs]
D006242Haptoglobins1/1078[+PMIDs]
D016052Protozoan Vaccines1/1078[+PMIDs]
D013645Tartrazine1/1078[+PMIDs]
D002809Chondroitin Sulfates9007-28-7 106440-56-6 123896-38-8 12678-07-8 24967-93-9 25322-46-7 39455-18-0 54391-57-0 62996-11-6 66173-57-7 66173-60-2 86016-46-8 9082-07-9 9088-44-2 1/1078[+PMIDs]
D015796HLA-B27 Antigen1/1078[+PMIDs]
D010538Peritonitis1/1078[+PMIDs]
D000071228Polyelectrolytes1/1078[+PMIDs]
D000077410Aluminum Chloride3cyt62d3ga 10124-27-3 7446-70-0 lif1n9568y 1/1078[+PMIDs]
D007073Immunoglobulin E37341-29-0 1/1078[+PMIDs]
D007711Klebsiella pneumoniaetaxid:5731/1078[+PMIDs]
D019453Escherichia coli O157taxid:10450101/1078[+PMIDs]
D010088Oxidoreductases1/1078[+PMIDs]
D011100Polyglycolic Acid26009-03-0 1/1078[+PMIDs]
D001430Bacteriocins1/1078[+PMIDs]
D005973Glutamine1/1078[+PMIDs]
D002218Carbadox1/1078[+PMIDs]
D001441Bacteroides fragilistaxid:8171/1078[+PMIDs]
D005688Galactosamine7535-00-4 1/1078[+PMIDs]
D011096Polygalacturonase1/1078[+PMIDs]
D007213Indomethacin1/1078[+PMIDs]
D001409Bacillus cereustaxid:13961/1078[+PMIDs]
D008767Methylmercury Compounds1/1078[+PMIDs]
D008687Metformin9100l32l2n 1115-70-4 657-24-9 786z46389e 1/1078[+PMIDs]
D024243HMGB1 Protein1/1078[+PMIDs]
D011700Putrescine1/1078[+PMIDs]
D013450Sulfones1/1078[+PMIDs]
D057141Food, Preserved1/1078[+PMIDs]
D063766Pediatric Obesity1/1078[+PMIDs]
D012697Serine Endopeptidases1/1078[+PMIDs]
D000069982Bifidobacterium animalistaxid:280251/1078[+PMIDs]
D009609Nitrous Oxide1/1078[+PMIDs]
D004268DNA-Binding Proteins1/1078[+PMIDs]
D051792Basic Helix-Loop-Helix Transcription Factors1/1078[+PMIDs]
D011014Pneumonia1/1078[+PMIDs]
D003633Dichlorodiphenyl Dichloroethylene4m7fs82u08 1022-22-6 72-55-9 1/1078[+PMIDs]
D020962Heterotrimeric GTP-Binding Proteins1/1078[+PMIDs]
D000090783Nanoparticle Drug Delivery System1/1078[+PMIDs]
D048249Streptococcus thermophilustaxid:13081/1078[+PMIDs]
D026901Membrane Transport Proteins1/1078[+PMIDs]
D013463Sulfuric Acid Esters1/1078[+PMIDs]
D018926Anti-Allergic Agents1/1078[+PMIDs]
D000091Acetobactertaxid:4341/1078[+PMIDs]
D013217Starvation1/1078[+PMIDs]
D016588Anticarcinogenic Agents1/1078[+PMIDs]
D005472Fluorouracil1/1078[+PMIDs]
D003611Dairy Products1/1078[+PMIDs]
D011736Pyridoxine1/1078[+PMIDs]
D005223Fats1/1078[+PMIDs]
D011425Propionibacterium acnestaxid:17471/1078[+PMIDs]
D007093Imidazoles1/1078[+PMIDs]
D015658HIV Infections1/1078[+PMIDs]
D001205Ascorbic Acid1/1078[+PMIDs]
D000928Antidepressive Agents1/1078[+PMIDs]
D004251DNA Transposable Elements1/1078[+PMIDs]
D019440Anti-Obesity Agents1/1078[+PMIDs]
D064206Aggregatibactertaxid:4169161/1078[+PMIDs]
D002264Carboxylic Acids1/1078[+PMIDs]
D018906Antineoplastic Agents, Alkylating1/1078[+PMIDs]
D051543Hepatocyte Nuclear Factor 3-gamma135845-91-9 1/1078[+PMIDs]
D002739Chloroquinolinols1/1078[+PMIDs]
D000073943Neonicotinoids1/1078[+PMIDs]
D015525Fatty Acids, Omega-31/1078[+PMIDs]
D014451Ubiquinone1339-63-5 1/1078[+PMIDs]
D003596Cytosine8j337d1hzy 71-30-7 1/1078[+PMIDs]
D013729Terpenes1/1078[+PMIDs]
D000622Aminolevulinic Acid88755taz87 106-60-5 v35kbm8jgr 1/1078[+PMIDs]
D006963Hyperphagia1/1078[+PMIDs]
D009842Oligopeptides1/1078[+PMIDs]
D000071518Liver X Receptors1/1078[+PMIDs]
D011205Povidone1/1078[+PMIDs]
D011837Radiation-Protective Agents1/1078[+PMIDs]
D006943Hyperglycemia1/1078[+PMIDs]
D012710Serum Albumin, Bovine27432cm55q 1/1078[+PMIDs]
D000074421Fermented Foods1/1078[+PMIDs]
D004279DNA, Viral1/1078[+PMIDs]
D009711Nucleotides1/1078[+PMIDs]
D018932Chemokine CCL21/1078[+PMIDs]
D009574Nitro Compounds1/1078[+PMIDs]
D000071018ATP Binding Cassette Transporter, Subfamily G, Member 51/1078[+PMIDs]
Details
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