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胃肠道平滑肌细胞中的机械转导:机械敏感离子通道的作用

Mechanotransduction in gastrointestinal smooth muscle cells: role of mechanosensitive ion channels.

作者信息

Joshi Vikram, Strege Peter R, Farrugia Gianrico, Beyder Arthur

机构信息

Division of Gastroenterology & Hepatology, Enteric NeuroScience Program (ENSP), Mayo Clinic, Rochester, Minnesota.

Department of Physiology & Biomedical Engineering, Mayo Clinic, Rochester, Minnesota.

出版信息

Am J Physiol Gastrointest Liver Physiol. 2021 May 1;320(5):G897-G906. doi: 10.1152/ajpgi.00481.2020. Epub 2021 Mar 17.

Abstract

Mechanosensation, the ability to properly sense mechanical stimuli and transduce them into physiologic responses, is an essential determinant of gastrointestinal (GI) function. Abnormalities in this process result in highly prevalent GI functional and motility disorders. In the GI tract, several cell types sense mechanical forces and transduce them into electrical signals, which elicit specific cellular responses. Some mechanosensitive cells like sensory neurons act as specialized mechanosensitive cells that detect forces and transduce signals into tissue-level physiological reactions. Nonspecialized mechanosensitive cells like smooth muscle cells (SMCs) adjust their function in response to forces. Mechanosensitive cells use various mechanoreceptors and mechanotransducers. Mechanoreceptors detect and convert force into electrical and biochemical signals, and mechanotransducers amplify and direct mechanoreceptor responses. Mechanoreceptors and mechanotransducers include ion channels, specialized cytoskeletal proteins, cell junction molecules, and G protein-coupled receptors. SMCs are particularly important due to their role as final effectors for motor function. Myogenic reflex-the ability of smooth muscle to contract in response to stretch rapidly-is a critical smooth muscle function. Such rapid mechanotransduction responses rely on mechano-gated and mechanosensitive ion channels, which alter their ion pores' opening in response to force, allowing fast electrical and Ca responses. Although GI SMCs express a variety of such ion channels, their identities remain unknown. Recent advancements in electrophysiological, genetic, in vivo imaging, and multi-omic technologies broaden our understanding of how SMC mechano-gated and mechanosensitive ion channels regulate GI functions. This review discusses GI SMC mechanosensitivity's current developments with a particular emphasis on mechano-gated and mechanosensitive ion channels.

摘要

机械感觉,即正确感知机械刺激并将其转化为生理反应的能力,是胃肠(GI)功能的一个重要决定因素。这一过程中的异常会导致非常普遍的胃肠功能和动力障碍。在胃肠道中,几种细胞类型能够感知机械力并将其转化为电信号,从而引发特定的细胞反应。一些机械敏感细胞,如感觉神经元,作为专门的机械敏感细胞,检测力并将信号转化为组织水平的生理反应。非专门的机械敏感细胞,如平滑肌细胞(SMC),会根据力来调整其功能。机械敏感细胞使用各种机械感受器和机械转导器。机械感受器检测力并将其转化为电信号和生化信号,而机械转导器则放大并引导机械感受器的反应。机械感受器和机械转导器包括离子通道、特殊的细胞骨架蛋白、细胞连接分子和G蛋白偶联受体。SMC因其作为运动功能的最终效应器的作用而尤为重要。肌源性反射——平滑肌对拉伸快速收缩的能力——是一项关键的平滑肌功能。这种快速的机械转导反应依赖于机械门控和机械敏感离子通道,这些通道会根据力改变其离子孔的开放,从而产生快速的电反应和钙反应。尽管胃肠道SMC表达多种此类离子通道,但其具体类型仍不清楚。电生理、基因、体内成像和多组学技术的最新进展拓宽了我们对SMC机械门控和机械敏感离子通道如何调节胃肠功能的理解。本综述讨论了胃肠道SMC机械敏感性的当前进展,特别强调了机械门控和机械敏感离子通道。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c5f9/8202201/b094d4f0861d/GI-00481-2020r01.jpg

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