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Abstract Title:

J1 prevents obesity by altering the gut microbiota and regulating bile acid metabolism in obese mice.

Abstract Source:

Food Funct. 2022 Jun 20 ;13(12):6688-6701. Epub 2022 Jun 20. PMID: 35647914

Abstract Author(s):

Chenxi Zhang, Ruxue Fang, Xingru Lu, Yu Zhang, Mo Yang, Yue Su, Yujun Jiang, Chaoxin Man

Article Affiliation:

Chenxi Zhang

Abstract:

Obesity is closely related to metabolic syndromes such as hyperlipidemia and diabetes and has become a global public health problem. Probiotics are now used as a treatment for obesity, but the mechanism by which probiotics treat obesity remains unclear. Herein, we investigated the effects ofJ1 (.J1) on obese mice with the strain being administered at 10, 10and 10CFU mLand explored the possible underlying molecular mechanism. The results revealed thatJ1 prevented weight gain, lowered fat mass and relieved dyslipidemia, and improved glucose homeostasis and insulin sensitivity. Moreover, the effect of obesity reversal exhibited dose-dependence to some extent. More importantly, mice treated withJ1 altered the gut microbiota and bile acid (BA) composition. Analysis of the gut microbiome showed thatJ1 increased the relative abundances of,and, which strongly correlated with ursodeoxycholic acid (UDCA) and lithocholic acid (LCA). UDCA and LCA are thought to inhibit farnesoid X receptor (FXR) and activate transmembrane G protein-coupled receptor 5 (TGR5) expression, respectively. Consistent with the increase in the BA pool,J1 treatment inhibited the ileum FXR/FGF15 signaling pathway but activated the hepatic FXR/SHP signaling pathway, resulting in reduced hepatic triglyceride accumulation. In addition,J1 treatment promoted adipose browning by upregulating the expression of uncoupling protein 1 (UCP1), which was mainly due to the BA receptor TGR5. These results demonstrated thatJ1 could treat obesity by inhibiting the FXR signaling pathways and remodeling white adipose tissue, linked with UDCA and LCA which are affected by intestinal microbiota.

Study Type : Animal Study

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