Monitoring the diversity and metabolic shift of gut microbes during green tea feeding in an in vitro human colonic model

M Xu, K Yang, J Zhu - Molecules, 2020 - mdpi.com
The human gut microbiome plays an important role in human health, and many factors such
as environment, host genetics, age, and diet have been found to influence the microbial …

Green tea extract alters gut microbiota and their metabolism of adults with metabolic syndrome in a host-free human colonic model

S Zhang, M Xu, X Sun, H Shi, J Zhu - Food Research International, 2022 - Elsevier
Abstract Background Metabolic syndrome (MetS) is a common metatoblic disorder that leads
to various adverse health outcomes such as diabetes and cardiovascular diseases (CVDs) …

Microbial-Transferred Metabolites and Improvement of Biological Activities of Green Tea Catechins by Human Gut Microbiota

Y Su, K Hu, D Li, H Guo, L Sun, Z Xie - Foods, 2024 - mdpi.com
Green tea catechins (GTCs) are dietary polyphenols with broad bioactivities that undergo
extensive microbial metabolism in the human gut. However, microbial-transferred …

Green tea polyphenols reduce obesity in high‐fat diet‐induced mice by modulating intestinal microbiota composition

X Guo, M Cheng, X Zhang, J Cao… - International Journal of …, 2017 - Wiley Online Library
In this study, the modulatory effect of green tea polyphenols (GTP) on human intestinal
microbiota was investigated. Firstly, germ‐free mice were inoculated with faecal suspension …

Metagenomics analysis of gut microbiota modulatory effect of green tea polyphenols by high fat diet-induced obesity mice model

X Zhang, M Zhang, CT Ho, X Guo, Z Wu, P Weng… - Journal of Functional …, 2018 - Elsevier
This study focused on the modulatory effect of green tea polyphenols (GTP) on human
intestinal microbiota, and its underlying anti-obesity mechanisms. GTP was prepared from …

Effect of Duyun Compound Green Tea on Gut Microbiota Diversity in High‐Fat‐Diet‐Induced Mice Revealed by Illumina High‐Throughput Sequencing

C Zhou, X Zhou, Z Wen, Z Yang, R Mu… - Evidence‐Based …, 2021 - Wiley Online Library
Intake of a high‐fat diet (HFD) is closely related to disorders of the intestinal microbiota,
which plays a key role in the pathogenesis of obesity. Duyun compound green tea, an …

The effect of green tea polyphenols on gut microbial diversity and fat deposition in C57BL/6J HFA mice

L Wang, B Zeng, X Zhang, Z Liao, L Gu, Z Liu… - Food & Function, 2016 - pubs.rsc.org
Quantitative and qualitative changes in gut microbial composition have been linked to
obesity and obesity-related complications, and eating pattern has been shown to …

[HTML][HTML] Bidirectional interactions between green tea (GT) polyphenols and human gut bacteria

SR Choi, H Lee, D Singh, D Cho… - … of Microbiology and …, 2023 - ncbi.nlm.nih.gov
Green tea (GT) polyphenols undergo extensive metabolism within gastrointestinal tract
(GIT), where their derivatives compounds potentially modulate the gut microbiome. This …

The role of green tea on the regulation of gut microbes and prevention of high-fat diet-induced metabolic syndrome in mice

H Mei, J Li, S Liu, A Jeyaraj, J Zhuang, Y Wang… - Foods, 2023 - mdpi.com
Green tea is a popular non-alcoholic beverage consumed worldwide and has been shown
to be beneficial for human health. However, further exploration is needed to fully understand …

Gut microbiota-mediated metabolism of green tea catechins and the biological consequences: An updated review

C Liu, RY Gan, D Chen, L Zheng, SB Ng… - Critical Reviews in …, 2024 - Taylor & Francis
Multiple beneficial effects have been attributed to green tea catechins (GTCs). However, the
bioavailability of GTCs is generally low, with only a small portion directly absorbed in the …