胆汁酸
生物化学
细胞生物学
生物
新陈代谢
糖酵解
硫酸软骨素
下调和上调
肌肉萎缩
代谢途径
心肌细胞
化学
骨骼肌
碳水化合物代谢
重编程
分解代谢
过氧化物酶体
平衡
转录组
肌肉组织
代谢物
代谢组学
肠道菌群
氨基酸
软骨素
多糖
微生物代谢
舱室(船)
牛磺酸
胆色素
作者
Ruiyun Wu,Tao Wen,Nan Shang,Penghao Xie,Zhenyu Wang,Hongxia Li,Shaobo Li,Dequan Zhang
出处
期刊:iMeta
[Wiley]
日期:2026-03-12
卷期号:5 (2): e70118-e70118
摘要
Abstract Glucocorticoid‐induced myopathy is characterized by progressive muscle atrophy and impaired regeneration, yet effective microbiota‐oriented interventions for preserving muscle homeostasis remain largely unexplored. Here, we demonstrate that dietary chondroitin sulfate (DCS) restores muscle mass and function through a microbiota‐dependent gut–muscle metabolic axis. DCS failed to confer protection in germ‐free or antibiotic‐treated mice, establishing gut microbiota as a prerequisite for its efficacy. Microbiota transplantation and mono‐colonization experiments identified Lactobacillus johnsonii Z‐RW as a functionally relevant mediator capable of recapitulating muscle protection under controlled microbial conditions. Integrated metagenomic, metabolomic, and proteomic analyses revealed coordinated reprogramming of intestinal sugar utilization and bile acid metabolism following DCS administration. Notably, DCS promoted bile acid deconjugation and enrichment of secondary bile acids, coinciding with restoration of muscle regenerative and energetic programs, including upregulation of NMRK2, PAX7, and SIRT1. Metabolite supplementation further implicated bile acids as candidate mediators linking microbial metabolism to muscle phenotypes. To quantitatively integrate these shifts, we introduce the sugar‐bile acid ratio as a systems‐level descriptor of microbiota‐driven metabolic remodeling. Our findings delineate a microbiota‐dependent metabolic framework through which a functional polysaccharide reshapes intestinal biochemistry to influence distal muscle physiology. This work highlights bile acid‐associated signaling as a central relay within the gut‐muscle axis and provides a conceptual foundation for microbiota‐targeted strategies to mitigate muscle wasting.
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