双歧杆菌
长双歧杆菌
生物
双歧杆菌
脂肪组织
生物化学
乳酸菌
发酵
作者
Gihyeon Kim,Youngmin Yoon,Jin‐Ho Park,Jae Won Park,Myung‐Giun Noh,Hyun Kim,Chang-Ho Park,Hyuktae Kwon,Jeong Hyeon Park,Yena Kim,Jinyoung Sohn,Shinyoung Park,Hyeonhui Kim,Sun‐Kyoung Im,Yeongmin Kim,Ha Yung Chung,Myung Hee Nam,Jee Young Kwon,Il Yong Kim,Yong Jae Kim
出处
期刊:Microbiome
[BioMed Central]
日期:2022-11-04
卷期号:10 (1)
被引量:39
标识
DOI:10.1186/s40168-022-01374-0
摘要
Abstract Background Comparisons of the gut microbiome of lean and obese humans have revealed that obesity is associated with the gut microbiome plus changes in numerous environmental factors, including high-fat diet (HFD). Here, we report that two species of Bifidobacterium are crucial to controlling metabolic parameters in the Korean population. Results Based on gut microbial analysis from 99 Korean individuals, we observed the abundance of Bifidobacterium longum and Bifidobacterium bifidum was markedly reduced in individuals with increased visceral adipose tissue (VAT), body mass index (BMI), blood triglyceride (TG), and fatty liver. Bacterial transcriptomic analysis revealed that carbohydrate/nucleoside metabolic processes of Bifidobacterium longum and Bifidobacterium bifidum were associated with protecting against diet-induced obesity. Oral treatment of specific commercial Bifidobacterium longum and Bifidobacterium bifidum enhanced bile acid signaling contributing to potentiate oxidative phosphorylation (OXPHOS) in adipose tissues, leading to reduction of body weight gain and improvement in hepatic steatosis and glucose homeostasis. Bifidobacterium longum or Bifidobacterium bifidum manipulated intestinal sterol biosynthetic processes to protect against diet-induced obesity in germ-free mice. Conclusions Our findings support the notion that treatment of carbohydrate/nucleoside metabolic processes-enriched Bifidobacterium longum and Bifidobacterium bifidum would be a novel therapeutic strategy for reprograming the host metabolic homeostasis to protect against metabolic syndromes, including diet-induced obesity.
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