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胃肠道和大脑屏障:解锁微生物群-肠道-大脑轴上的沟通之门。

Gastrointestinal and brain barriers: unlocking gates of communication across the microbiota-gut-brain axis.

机构信息

APC Microbiome Ireland, University College Cork, Cork, Ireland.

Department of Anatomy and Neuroscience, School of Medicine, University College Cork, Cork, Ireland.

出版信息

Nat Rev Gastroenterol Hepatol. 2024 Apr;21(4):222-247. doi: 10.1038/s41575-023-00890-0. Epub 2024 Feb 14.

Abstract

Crosstalk between gut and brain has long been appreciated in health and disease, and the gut microbiota is a key player in communication between these two distant organs. Yet, the mechanisms through which the microbiota influences development and function of the gut-brain axis remain largely unknown. Barriers present in the gut and brain are specialized cellular interfaces that maintain strict homeostasis of different compartments across this axis. These barriers include the gut epithelial barrier, the blood-brain barrier and the blood-cerebrospinal fluid barrier. Barriers are ideally positioned to receive and communicate gut microbial signals constituting a gateway for gut-microbiota-brain communication. In this Review, we focus on how modulation of these barriers by the gut microbiota can constitute an important channel of communication across the gut-brain axis. Moreover, barrier malfunction upon alterations in gut microbial composition could form the basis of various conditions, including often comorbid neurological and gastrointestinal disorders. Thus, we should focus on unravelling the molecular and cellular basis of this communication and move from simplistic framing as 'leaky gut'. A mechanistic understanding of gut microbiota modulation of barriers, especially during critical windows of development, could be key to understanding the aetiology of gastrointestinal and neurological disorders.

摘要

肠脑相互作用在健康和疾病中早已受到重视,而肠道微生物群是这两个远距离器官之间通讯的关键参与者。然而,微生物群影响肠脑轴发育和功能的机制在很大程度上仍然未知。存在于肠道和大脑中的屏障是专门的细胞界面,它们在这个轴上维持不同隔室的严格的内稳态。这些屏障包括肠道上皮屏障、血脑屏障和血脑脊液屏障。屏障处于接收和传递肠道微生物信号的理想位置,构成了肠道微生物群-大脑通讯的门户。在这篇综述中,我们重点关注肠道微生物群如何通过调节这些屏障来构成肠脑轴通讯的重要渠道。此外,肠道微生物组成改变时屏障功能障碍可能是各种疾病的基础,包括经常同时出现的神经和胃肠道疾病。因此,我们应该专注于揭示这种通讯的分子和细胞基础,并摆脱简单的“肠漏”框架。对肠道微生物群调节屏障的机制的理解,特别是在发育的关键窗口期,可能是理解胃肠道和神经系统疾病病因的关键。

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