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首页> 外文期刊>Frontiers in Endocrinology >The Role of Short-Chain Fatty Acids From Gut Microbiota in Gut-Brain Communication
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The Role of Short-Chain Fatty Acids From Gut Microbiota in Gut-Brain Communication

机译:短链脂肪酸从肠道微生物在肠脑交流中的作用

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摘要

A substantial body of evidence supports that the gut microbiota plays a pivotal role in the regulation of metabolic, endocrine and immune functions. In recent years, there has been growing recognition of the involvement of the gut microbiota in the modulation of multiple neurochemical pathways through the highly interconnected gut-brain axis. Although amazing scientific breakthroughs over the last few years have expanded our knowledge on the communication between microbes and their hosts, the underpinnings of microbiota-gut-brain crosstalk remain to be determined. Short-chain fatty acids (SCFAs), the main metabolites produced in the colon by bacterial fermentation of dietary fibers and resistant starch, are speculated to play a key role in neuro-immunoendocrine regulation. However, the underlying mechanisms through which SCFAs might influence brain physiology and behavior have not been fully elucidated. In this review, we outline the current knowledge about the involvement of SCFAs in microbiota-gut-brain interactions. We also highlight how the development of future treatments for central nervous system (CNS) disorders can take advantage of the intimate and mutual interactions of the gut microbiota with the brain by exploring the role of SCFAs in the regulation of neuro-immunoendocrine function.
机译:大量证据支持肠道微生物群在代谢,内分泌和免疫功能的调节中起着枢轴作用。近年来,在通过高度互连的肠轴轴上,越来越严重识别肠道微生物群在多种神经化学途径的调节中。虽然在过去几年中惊人的科学突破扩展了我们对微生物和宿主之间的沟通的知识,但仍有待确定的微生物疱疹 - 肠脑串扰的基础。短链脂肪酸(SCFA),通过细菌发酵的膳食纤维和抗性淀粉中的结肠产生的主要代谢产物,以发挥神经免疫分泌法调节的关键作用。然而,SCFA可以影响大脑生理学和行为的潜在机制并未完全阐明。在这篇综述中,我们概述了关于SCFA参与的目前的知识,在微生物胃脑互动中。我们还强调了如何通过探讨SCFA在神经免疫分区功能调节中的作用,利用肠道微生物症的未来治疗方法如何利用肠道微生物群的亲密和相互相互作用。

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