普氏粪杆菌
皮质酮
内分泌系统
内分泌学
肠-脑轴
内科学
生物
医学
体外
促肾上腺皮质激素
体内
下丘脑-垂体-肾上腺轴
药理学
激素
转录组
代谢物
下调和上调
生物信息学
肠易激综合征
基因
战斗或逃跑反应
慢性应激
氢化可的松
作者
Yun Wang,Suyi Xie,Chenyu Li,Rongxue Huang,Zhijie Zheng,Sizhe Chen,Yuqi Wu,Haoshuai Zhang,Ruili Yang,Yeuk Lam Chan,Yang Sun,Francis K.L. Chan,Ngan Yin Chan,Siew C. Ng,Qi Su
标识
DOI:10.1016/j.xcrm.2026.102997
摘要
Insomnia is associated with gut microbial dysbiosis, but the specific microbial metabolites mediating gut-brain communication remain elusive. Here, we integrate metagenomic sequencing from 171 individuals (primary insomnia, post-COVID insomnia, and controls) with functional pathway analysis and preclinical validation. We identify Faecalibacterium prausnitzii depletion and reduced L-arginine biosynthesis as consistent features in both insomnia subtypes, accompanied by elevated cortisol levels. Genomic and in vitro analyses confirm that F. prausnitzii is a key microbial contributor to L-arginine production. In a chronic mild stress mouse model, administration of either F. prausnitzii or L-arginine restores sleep duration, normalizes corticosterone levels, and reverses stress-induced gut dysbiosis. Mechanistically, L-arginine suppresses POMC gene expression and dampens adrenocorticotropic hormone (ACTH)-stimulated corticosterone release, implicating the POMC-ACTH-cortisol axis as a key target. These findings uncover a gut-brain axis driven by F. prausnitzii-derived L-arginine that modulates sleep through endocrine signaling, positioning this metabolite as a potential therapeutic avenue for insomnia.
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