Recent additions may not be included but will usually appear in 24 hrs or less.
| Rational | Source |
|---|---|
|
Decaffeinated green and black tea polyphenols decrease weight gain and alter microbiome populations and function in diet-induced obese mice. β
Go to Publication β
European journal of nutrition (Eur J Nutr ) Vol: Issue Pages: Pub: 2017 Sep 30 Epub: 2017 Sep 30 Authors Henning SM , Yang J , Hsu M , Lee RP , Grojean EM , Ly A , Tseng CH , Heber D , Li Z , |
|
|
Decaffeinated green and black tea polyphenols decrease weight gain and alter microbiome populations and function in diet-induced obese mice. β
Go to Publication β
European journal of nutrition (Eur J Nutr ) Vol: Issue Pages: Pub: 2017 Sep 30 Epub: 2017 Sep 30 Authors Henning SM , Yang J , Hsu M , Lee RP , Grojean EM , Ly A , Tseng CH , Heber D , Li Z , |
|
|
Decaffeinated green and black tea polyphenols decrease weight gain and alter microbiome populations and function in diet-induced obese mice. β
Go to Publication β
European journal of nutrition (Eur J Nutr ) Vol: Issue Pages: Pub: 2017 Sep 30 Epub: 2017 Sep 30 Authors Henning SM , Yang J , Hsu M , Lee RP , Grojean EM , Ly A , Tseng CH , Heber D , Li Z , |
|
|
The green tea modulates large intestinal microbiome and exo/endogenous metabolome altered through chronic UVB-exposure. β
Go to Publication β
PloS one (PLoS One ) Vol: 12 Issue 11 Pages: e0187154 Pub: 2017 Epub: 2017 Nov 8 Authors Jung ES , Park HM , Hyun SM , Shon JC , Singh D , Liu KH , Whon TW , Bae JW , Hwang JS , Lee CH , |
|
|
The green tea modulates large intestinal microbiome and exo/endogenous metabolome altered through chronic UVB-exposure. β
Go to Publication β
PloS one (PLoS One ) Vol: 12 Issue 11 Pages: e0187154 Pub: 2017 Epub: 2017 Nov 8 Authors Jung ES , Park HM , Hyun SM , Shon JC , Singh D , Liu KH , Whon TW , Bae JW , Hwang JS , Lee CH , |
|
|
Curated database of commensal, symbiotic and pathogenic microbiota β
Generative Bioinformatics (Center of Excellence in Generative Medicine ) Vol: Issue Pages: Pub: 2014 Jun Epub: Authors D'Adamo Peter , |
|
|
Extensive impact of non-antibiotic drugs on human gut bacteria. β
Go to Publication β
Nature (Nature ) Vol: 555 Issue 7698 Pages: 623-628 Pub: 2018 Mar 29 Epub: 2018 Mar 19 Authors Maier L , Pruteanu M , Kuhn M , Zeller G , Telzerow A , Anderson EE , Brochado AR , Fernandez KC , Dose H , Mori H , Patil KR , Bork P , Typas A , |
|
|
Camelina Seed Supplementation at Two Dietary Fat Levels Change Ruminal Bacterial Community Composition in a Dual-Flow Continuous Culture System. β
Go to Publication β
Frontiers in microbiology (Front Microbiol ) Vol: 8 Issue Pages: 2147 Pub: 2017 Epub: 2017 Nov 3 Authors Dai X , Weimer PJ , Dill-McFarland KA , Brandao VLN , Suen G , Faciola AP , |
|
|
Camelina Seed Supplementation at Two Dietary Fat Levels Change Ruminal Bacterial Community Composition in a Dual-Flow Continuous Culture System. β
Go to Publication β
Frontiers in microbiology (Front Microbiol ) Vol: 8 Issue Pages: 2147 Pub: 2017 Epub: 2017 Nov 3 Authors Dai X , Weimer PJ , Dill-McFarland KA , Brandao VLN , Suen G , Faciola AP , |
|
|
Camelina Seed Supplementation at Two Dietary Fat Levels Change Ruminal Bacterial Community Composition in a Dual-Flow Continuous Culture System. β
Go to Publication β
Frontiers in microbiology (Front Microbiol ) Vol: 8 Issue Pages: 2147 Pub: 2017 Epub: 2017 Nov 3 Authors Dai X , Weimer PJ , Dill-McFarland KA , Brandao VLN , Suen G , Faciola AP , |
|
|
Microbial Metabolism of Theaflavin-3,3`-digallate and Its Gut Microbiota Composition Modulatory Effects. β
Go to Publication β
Journal of agricultural and food chemistry (J Agric Food Chem ) Vol: 69 Issue 1 Pages: 232-245 Pub: 2021 Jan 13 Epub: 2020 Dec 21 Authors Liu Z , de Bruijn WJC , Bruins ME , Vincken JP , |
|
|
Oral administration of camellia oil ameliorates obesity and modifies the gut microbiota composition in mice fed a high-fat diet. β
FEMS microbiology letters (FEMS Microbiol Lett ) Vol: 368 Issue 10 Pages: Pub: 2021 Jun 11 Epub: Authors Huang T , Zhou W , Ma X , Jiang J , Zhang F , Zhou W , He H , Cui G , |
|
|
Camellia oil (Camellia oleifera Abel.) treatment improves high-fat diet-induced atherosclerosis in apolipoprotein E (ApoE)(-/-) mice. β
Go to Publication β
Bioscience of microbiota, food and health (Biosci Microbiota Food Health ) Vol: 42 Issue 1 Pages: 56-64 Pub: 2023 Epub: 2022 Sep 2 Authors Huang T , Jiang J , Cao Y , Huang J , Zhang F , Cui G , |
|
|
Prebiotics effects in vitro of polysaccharides from tea flowers on gut microbiota of healthy persons and patients with inflammatory bowel disease. β
Go to Publication β
International journal of biological macromolecules (Int J Biol Macromol ) Vol: 158 Issue Pages: 968-976 Pub: 2020 May 3 Epub: 2020 May 3 Authors Chen D , Chen G , Chen C , Zeng X , Ye H , |
|
|
Prebiotics effects in vitro of polysaccharides from tea flowers on gut microbiota of healthy persons and patients with inflammatory bowel disease. β
Go to Publication β
International journal of biological macromolecules (Int J Biol Macromol ) Vol: 158 Issue Pages: 968-976 Pub: 2020 May 3 Epub: 2020 May 3 Authors Chen D , Chen G , Chen C , Zeng X , Ye H , |
|
|
Prebiotics effects in vitro of polysaccharides from tea flowers on gut microbiota of healthy persons and patients with inflammatory bowel disease. β
Go to Publication β
International journal of biological macromolecules (Int J Biol Macromol ) Vol: 158 Issue Pages: 968-976 Pub: 2020 May 3 Epub: 2020 May 3 Authors Chen D , Chen G , Chen C , Zeng X , Ye H , |
|
|
Prebiotics effects in vitro of polysaccharides from tea flowers on gut microbiota of healthy persons and patients with inflammatory bowel disease. β
Go to Publication β
International journal of biological macromolecules (Int J Biol Macromol ) Vol: 158 Issue Pages: 968-976 Pub: 2020 May 3 Epub: 2020 May 3 Authors Chen D , Chen G , Chen C , Zeng X , Ye H , |
|
|
Prebiotics effects in vitro of polysaccharides from tea flowers on gut microbiota of healthy persons and patients with inflammatory bowel disease. β
Go to Publication β
International journal of biological macromolecules (Int J Biol Macromol ) Vol: 158 Issue Pages: 968-976 Pub: 2020 May 3 Epub: 2020 May 3 Authors Chen D , Chen G , Chen C , Zeng X , Ye H , |
|
|
Prebiotics effects in vitro of polysaccharides from tea flowers on gut microbiota of healthy persons and patients with inflammatory bowel disease. β
Go to Publication β
International journal of biological macromolecules (Int J Biol Macromol ) Vol: 158 Issue Pages: 968-976 Pub: 2020 May 3 Epub: 2020 May 3 Authors Chen D , Chen G , Chen C , Zeng X , Ye H , |
|
|
Prebiotics effects in vitro of polysaccharides from tea flowers on gut microbiota of healthy persons and patients with inflammatory bowel disease. β
Go to Publication β
International journal of biological macromolecules (Int J Biol Macromol ) Vol: 158 Issue Pages: 968-976 Pub: 2020 May 3 Epub: 2020 May 3 Authors Chen D , Chen G , Chen C , Zeng X , Ye H , |
|
|
Green tea polyphenol (epigallocatechin-3-gallate) improves gut dysbiosis and serum bile acids dysregulation in high-fat diet-fed mice. β
Go to Publication β
Journal of clinical biochemistry and nutrition (J Clin Biochem Nutr ) Vol: 65 Issue 1 Pages: 34-46 Pub: 2019 Jul Epub: 2019 Apr 6 Authors Ushiroda C , Naito Y , Takagi T , Uchiyama K , Mizushima K , Higashimura Y , Yasukawa Z , Okubo T , Inoue R , Honda A , Matsuzaki Y , Itoh Y , |
|
|
Gut microbiota from green tea polyphenol-dosed mice improves intestinal epithelial homeostasis and ameliorates experimental colitis. β
Go to Publication β
Microbiome (Microbiome ) Vol: 9 Issue 1 Pages: 184 Pub: 2021 Sep 7 Epub: 2021 Sep 7 Authors Wu Z , Huang S , Li T , Li N , Han D , Zhang B , Xu ZZ , Zhang S , Pang J , Wang S , Zhang G , Zhao J , Wang J , |
|
|
Mechanisms of epigallocatechin gallate (EGCG) in ameliorating hyperuricemia: insights into gut microbiota and intestinal function in a mouse model. β
Go to Publication β
Food & function (Food Funct ) Vol: 15 Issue 11 Pages: 6068-6081 Pub: 2024 Jun 4 Epub: 2024 Jun 4 Authors Yu H , Lou Z , Wu T , Wan X , Huang H , Wu Y , Li B , Tu Y , He P , Liu J , |
|
|
Dietary Epigallocatechin-3-Gallate Alters the Gut Microbiota of Obese Diabetic db/db Mice: Lactobacillus Is a Putative Target. β
Go to Publication β
Journal of medicinal food (J Med Food ) Vol: 23 Issue 10 Pages: 1033-1042 Pub: 2020 Oct Epub: Authors Park JM , Shin Y , Kim SH , Jin M , Choi JJ , |
|
|
Reciprocal Interactions between Epigallocatechin-3-gallate (EGCG) and Human Gut Microbiota In Vitro. β
Go to Publication β
Journal of agricultural and food chemistry (J Agric Food Chem ) Vol: 68 Issue 36 Pages: 9804-9815 Pub: 2020 Sep 9 Epub: 2020 Aug 26 Authors Liu Z , de Bruijn WJC , Bruins ME , Vincken JP , |
|
|
Theabrownin from Qingzhuan tea prevents high-fat diet-induced MASLD via regulating intestinal microbiota. β
Go to Publication β
Biomedicine & pharmacotherapy = Biomedecine & pharmacotherapie (Biomed Pharmacother ) Vol: 174 Issue Pages: 116582 Pub: 2024 May Epub: 2024 Apr 19 Authors Chen Y , Xie C , Lei Y , Ye D , Wang L , Xiong F , Wu H , He Q , Zhou H , Li L , Xing J , Wang C , Zheng M , |
|
|
Camellia sinensis and Litsea coreana Ameliorate Intestinal Inflammation and Modulate Gut Microbiota in Dextran Sulfate Sodium-Induced Colitis Mice. β
Go to Publication β
Molecular nutrition & food research (Mol Nutr Food Res ) Vol: 64 Issue 6 Pages: e1900943 Pub: 2020 Mar Epub: 2020 Feb 17 Authors Liu Y , Wang X , Chen Q , Luo L , Ma M , Xiao B , Zeng L , |
All suggestions are computed solely on their predicted microbiome impact. Safety, side-effects etc must be evaluated by your medical professionals before starting. Some items suggests have significant risk of adverse consequences for some people.
Special thanks to David F Morrison and Geert Van Houcke for doing Quality Assurance. Special thanks to Oliver Luk, B.Sc. (Biology) from BiomeSight for spot checking the coding of data from the US National Library of Medicine
This is an Academic site. It generates theoretical models of what may benefit a specific microbiome results.
Copyright 2016-2023 Lassesen Consulting, LLC [2007], DBA, Microbiome Prescription. All rights served.
Permission to data scrap or reverse engineer is explicitly denied to all users. U.S. Code Title 18 PART I CHAPTER 47 Β§β―1030, CETS No.185, CFAA
Use of data on this site is prohibited except under written license. There is no charge for individual personal use. Use for any commercial applications or research requires a written license.
Caveat emptor: Analysis and suggestions are based on modelling (and thus infererence) based on studies. The data sources are usually given for those that wish to consider alternative inferences. theories and models.
Inventions/Methodologies on this site are Patent Pending.
Microbiome Prescription do not make any representations that data or analyses available on this site is suitable for human diagnostic purposes, for informing treatment decisions, or for any other purposes and accept no responsibility or liability whatsoever for such use.
This site is not Health Insurance Portability and Accountability Act of 1996 (HIPAA) compliant.
