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肠道微生物群与外周神经系统在健康和慢性疾病中的相互作用。

Communication between the gut microbiota and peripheral nervous system in health and chronic disease.

机构信息

Department of Cell and Molecular Physiology, Loyola University Chicago, Maywood, IL, USA.

出版信息

Gut Microbes. 2022 Jan-Dec;14(1):2068365. doi: 10.1080/19490976.2022.2068365.

Abstract

Trillions of bacteria reside within our gastrointestinal tract, ideally forming a mutually beneficial relationship between us. However, persistent changes in diet and lifestyle in the western diet and lifestyle contribute to a damaging of the gut microbiota-host symbiosis leading to diseases such as obesity and irritable bowel syndrome. Many symptoms and comorbidities associated with these diseases stem from dysfunctional signaling in peripheral neurons. Our peripheral nervous system (PNS) is comprised of a variety of sensory, autonomic, and enteric neurons which coordinate key homeostatic functions such as gastrointestinal motility, digestion, immunity, feeding behavior, glucose and lipid homeostasis, and more. The composition and signaling of bacteria in our gut dramatically influences how our peripheral neurons regulate these functions, and we are just beginning to uncover the molecular mechanisms mediating this communication. In this review, we cover the general anatomy and function of the PNS, and then we discuss how the molecules secreted or stimulated by gut microbes signal through the PNS to alter host development and physiology. Finally, we discuss how leveraging the power of our gut microbes on peripheral nervous system signaling may offer effective therapies to counteract the rise in chronic diseases crippling the western world.

摘要

数以万亿计的细菌存在于我们的胃肠道中,理想情况下,它们与我们之间形成一种互利共生的关系。然而,在西方饮食和生活方式中,饮食和生活方式的持续变化导致肠道微生物群与宿主共生关系受到破坏,从而导致肥胖症和肠易激综合征等疾病。这些疾病相关的许多症状和合并症源于外周神经元的功能障碍信号。我们的外周神经系统(PNS)由各种感觉、自主和肠神经元组成,它们协调关键的体内平衡功能,如胃肠道蠕动、消化、免疫、进食行为、葡萄糖和脂质稳态等。我们肠道中的细菌的组成和信号显著影响我们的外周神经元如何调节这些功能,而我们才刚刚开始揭示介导这种通讯的分子机制。在这篇综述中,我们介绍了 PNS 的一般解剖结构和功能,然后讨论了肠道微生物分泌或刺激的分子如何通过 PNS 信号传递来改变宿主的发育和生理。最后,我们讨论了利用我们肠道微生物对外周神经系统信号的影响可能为对抗困扰西方世界的慢性疾病的上升提供有效的治疗方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/721d/9067538/07aa43614a5b/KGMI_A_2068365_F0001_OC.jpg

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