肠神经系统
肠易激综合征
神经科学
生物
调节器
免疫系统
炎症性肠病
肠-脑轴
疾病
肠道菌群
发病机制
机制(生物学)
中枢神经系统
神经系统
生物信息学
失调
免疫学
神经免疫学
信号转导
神经可塑性
神经发育
系统生物学
医学
结直肠癌
自闭症
微生物群
精密医学
神经系统
计算生物学
细胞信号
转化研究
作者
Hui Li,Ao Ye,Jieyu Song,Yi Yang,Jun Li
标识
DOI:10.3389/fcimb.2026.1852596
摘要
The bidirectional communication between the gut microbiota (GM) and the enteric nervous system (ENS) is fundamental for gastrointestinal homeostasis. This review dissects the intricate GM-ENS dialogue, emphasizing its transition from a developmental programmer in early life to a sustained regulator of neural plasticity in adulthood. We synthesize the core signaling mechanisms-microbial metabolites, neuroactive substances, and immune mediators-that orchestrate ENS activity. We further propose a multi-timescale model (rapid neuropod/bioelectric, intermediate metabolite, slow immune) with differential relevance to irritable bowel syndrome (IBS) (fast distortions) versus inflammatory bowel disease(IBD)(slow amplification). Critically, we delineate how this axis adopts distinct pathophysiological roles across major digestive disorders: acting as a "signal distorter" in IBS, an "inflammation amplifier" in IBD, and a "tumor accomplice" in colorectal cancer (CRC). By integrating these mechanistic insights with emerging therapeutic paradigms (e.g., precision biomarkers, synthetic microbial consortia, postbiotics), we position the GM-ENS axis as a central hub for understanding disease pathogenesis and a promising framework for developing next-generation precision medicine strategies.
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