法尼甾体X受体
脱氧胆酸
脂肪变性
肠道菌群
胆汁酸
内分泌学
肥胖
内科学
脂肪组织
白色脂肪组织
信号转导
代谢途径
益生元
受体
生物
医学
脂质代谢
失调
基因表达
熊去氧胆酸
分解代谢
生物信息学
焊剂(冶金)
遗传增强
基因表达调控
基因
调解人
化学
药理学
癌症研究
核受体
基质还原疗法
新陈代谢
氧化磷酸化
脂肪肝
重编程
作者
Na Zhang,Xinyu Ye,Kai Wang,Yameng Hu,Zixi Wang,Lichun Huang,Xi Chen,Xi Chen,Ding Yan,Wen Fu,Qian Xue,Shihao Sun,Yihan Xu,Daolin Tang,Xin Chen,Xin Chen,L Y Zhou,Jinbao Liu
标识
DOI:10.1038/s41421-026-00904-6
摘要
Obesity and its associated metabolic complications represent a global health crisis, yet effective microbiota-targeted pharmacotherapies remain limited. Here, we report that GV-971 (sodium oligomannate), a marine-derived oligosaccharide originally developed for Alzheimer's disease, exerts potent anti-obesity and metabolic benefits by reprogramming gut microbial and host signaling networks. In high-fat diet-induced obese mice, GV-971 reduced adiposity, improved glucose homeostasis, and alleviated hepatic steatosis without affecting food intake. Multi-omics and causal intervention experiments revealed that GV-971 selectively decreased the abundance of Clostridium scindens, a keystone bacterium responsible for secondary bile acid synthesis. This decrease downregulated the expression of the baiF gene encoding 7α-hydroxysteroid dehydrogenase, leading to reduced intestinal deoxycholic acid (DCA) levels and inhibition of intestinal farnesoid X receptor (FXR) signaling. Restoration of C. scindens abundance, baiF expression, or DCA supplementation abrogated the metabolic benefits of GV-971, confirming the causal role of the C. scindens-DCA-FXR axis. Mechanistically, inhibition of intestinal FXR promoted thermogenic gene expression and white adipose tissue browning, thus enhancing systemic energy expenditure. These findings uncover a bacterium-metabolite-host signaling pathway underlying the effects of GV-971 and establish microbiota-directed FXR modulation as a promising therapeutic approach for obesity and metabolic disease.
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