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Role of Microbiota and Tryptophan Metabolites in the Remote Effect of Intestinal Inflammation on Brain and Depression

机译:微生物群和色氨酸代谢产物在肠道炎症对脑部和抑郁的远程影响中的作用

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The human gastrointestinal tract is inhabited by trillions of commensal bacteria collectively known as the gut microbiota. Our recognition of the significance of the complex interaction between the microbiota, and its host has grown dramatically over the past years. A balanced microbial community is a key regulator of the immune response, and metabolism of dietary components, which in turn, modulates several brain processes impacting mood and behavior. Consequently, it is likely that disruptions within the composition of the microbiota would remotely affect the mental state of the host. Here, we discuss how intestinal bacteria and their metabolites can orchestrate gut-associated neuroimmune mechanisms that influence mood and behavior leading to depression. In particular, we focus on microbiota-triggered gut inflammation and its implications in shifting the tryptophan metabolism towards kynurenine biosynthesis while disrupting the serotonergic signaling. We further investigate the gaps to be bridged in this exciting field of research in order to clarify our understanding of the multifaceted crosstalk in the microbiota–gut–brain interphase, bringing about novel, microbiota-targeted therapeutics for mental illnesses.
机译:人类胃肠道中有数以万亿计的共生细菌,这些细菌统称为肠道菌群。在过去的几年中,我们对微生物群及其宿主之间复杂相互作用的重要性的认识得到了极大的发展。平衡的微生物群落是免疫反应和饮食成分新陈代谢的关键调节因子,而后者又调节了影响情绪和行为的几个大脑过程。因此,微生物群组成内的破坏很可能会远程影响宿主的精神状态。在这里,我们讨论肠道细菌及其代谢产物如何协调肠道相关的神经免疫机制,从而影响情绪和行为从而导致抑郁。特别地,我们专注于微生物触发的肠道炎症及其在色氨酸代谢向犬尿氨酸生物合成的转移同时破坏血清素能信号传导的意义。我们进一步研究了这一激动人心的研究领域中的桥梁,以阐明我们对微生物-肠-脑界面间多方面串扰的理解,从而带来了针对精神疾病的新型,针对微生物群的治疗方法。

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