Unravelling the hypoglycemic mechanism of Fuzhuan brick tea: insights into intestinal microbiota and metabolites in type 2 diabetes mellitus mice

Author:

Liu Yukun1,Xiang Xingliang2,Zeng Zhaoxiang1,Guo Meiling1,Li Yiping1,Zhan Zecai1,Huang Rongzeng1,Zhao Min34ORCID,Jin Shuna34ORCID,Song Chengwu145

Affiliation:

1. School of Pharmacy Hubei University of Chinese Medicine Wuhan 430065 China

2. School of Life and Health Sciences Hainan University Haikou 570228 China

3. School of Basic Medicine Sciences Hubei University of Chinese Medicine Wuhan 430065 China

4. Hubei Shizhen Laboratory Wuhan 430065 Hubei China

5. Center of Traditional Chinese Medicine Modernization for Liver Diseases Hubei University of Chinese Medicine Wuhan 430065 China

Abstract

SummaryFuzhuan brick tea (FBT), a post‐fermented tea, has been demonstrated to have an antidiabetic effect. However, evidence of its hypoglycemic effect via gut microbiota and intestinal metabolites has been limited. This work aimed to reveal the potential mechanism of FBT against type 2 diabetes mellitus (T2DM) mice by regulating gut flora and short‐chain fatty acids (SCFAs). Thus, we established a T2DM mice model induced by streptozotocin and a high‐fat diet, and the 16S rDNA gene sequencing analysed gut microbiota changes, while GC/MS detected SCFAs levels in colonic contents. As a result, after being treated with FBT, the biochemical index of mice revealed significant improvement and the levels of colonic SCFAs were enhanced. Through correlation analysis, the key gut microbiota for the hypoglycemic effect of FBT were identified including Cyanobacteria, Alloprevotella, Erysipelatoclostridium, etc. Additionally, the antidiabetic actions of FBT were mediated by the SCFAs‐GPR41/43‐GLP‐1 pathway and alleviating inflammation related to the increased gut barrier with the tight junction proteins (Claudin‐1, Occludin and ZO‐1). To sum up, our study provides insights into the possible mechanism of FBT in T2DM and might promote the application of FBT as a potential hypoglycemic agent in the future.

Funder

Natural Science Foundation of Hubei Province

Publisher

Wiley

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