某种肠道细菌
尼古丁
肠道菌群
肠-脑轴
生物
微生物群
新陈代谢
代谢综合征
肠易激综合征
阿克曼西亚
粪便细菌疗法
药理学
医学
微生物代谢
炎症
移植
代谢途径
短链脂肪酸
免疫学
双歧杆菌
失调
脂肪酸代谢
代谢紊乱
内分泌学
粪便
代谢控制分析
代谢组
肠道微生物群
摄食行为
作者
Xia Gao,Lei Fan,Guanglin Liu,Yue Li,Yingying Liang,Ruixia Liu,Jie Shi,Hongjuan Wang,Jingbin Zhang,Huan Chen,Hongwei Hou
标识
DOI:10.1038/s41522-026-01164-8
摘要
Abstract Major depressive disorder is a heterogeneous neuropsychiatric disorder in which serotonin-related pathways remain important pharmacological targets. Nicotine has been reported to exert antidepressant-like effects, yet whether the gut microbiota contributes to these effects remains unclear. Here, we found that sustained-release nicotine (0.2 mg/kg/d) improved depression-like behavioral measures in a chronic unpredictable mild stress (CUMS) mouse model. Nicotine treatment was also associated with improved intestinal barrier integrity, reduced colonic inflammation, partially restored short-chain fatty acid levels, and changes in central and peripheral serotonin metabolism. Several of these behavioral and metabolic improvements were substantially attenuated by antibiotic-induced microbiota depletion, supporting a functional contribution of the gut microbiota under the present experimental conditions. Metagenomic profiling revealed the enrichment of Akkermansia muciniphila following nicotine treatment. Notably, fecal microbiota transplantation from nicotine-treated donors or direct A. muciniphila supplementation reproduced selected improvements in behavioral, inflammatory and serotonin-related metabolic outcomes in CUMS recipients. Collectively, these findings support a microbiota-associated contribution to the behavioral and metabolic effects of nicotine in CUMS mice and implicate A. muciniphila as a microbial contributor to serotonin-related metabolic regulation.
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