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迷走神经的光遗传学操控

Optogenetic Manipulation of the Vagus Nerve.

作者信息

Okonogi Toya, Sasaki Takuya

机构信息

Laboratory of Chemical Pharmacology, Graduate School of Pharmaceutical Sciences, The University of Tokyo, Tokyo, Japan.

出版信息

Adv Exp Med Biol. 2021;1293:459-470. doi: 10.1007/978-981-15-8763-4_30.

Abstract

The vagus nerve plays a pivotal role in communication between the brain and peripheral organs involved in the sensory detection and the autonomic control of visceral activity. While the lack of appropriate experimental techniques to manipulate the physiological activity of the vagus nerve has been a long-standing problem, recent advancements in optogenetic tools, including viral vectors and photostimulation devices, during the late 2010s have begun to overcome this technical hurdle. Furthermore, identifying promoters for expressing transgenes in a cell-type-specific subpopulation of vagal neurons enables the selective photoactivation of afferent/efferent vagal neurons and specific visceral organ-innervating vagal neurons. In this chapter, we describe recent optogenetic approaches to study vagus nerve physiology and describe how these approaches have provided novel findings on the roles of vagus nerve signals in the cardiac, respiratory, and gastrointestinal systems. Compared with studies of the central nervous system, there are still few insights into vagus nerve physiology. Further studies with optogenetic tools will be useful for understanding the fundamental characteristics of vagus nerve signals transferred throughout the body.

摘要

迷走神经在大脑与参与内脏活动感觉检测和自主控制的外周器官之间的通信中起着关键作用。尽管缺乏操纵迷走神经生理活动的适当实验技术一直是个长期存在的问题,但在2010年代后期,包括病毒载体和光刺激装置在内的光遗传学工具的最新进展已开始克服这一技术障碍。此外,在迷走神经元的细胞类型特异性亚群中鉴定用于表达转基因的启动子,能够选择性地光激活传入/传出迷走神经元以及支配特定内脏器官的迷走神经元。在本章中,我们描述了研究迷走神经生理学的最新光遗传学方法,并阐述了这些方法如何在心脏、呼吸和胃肠系统中为迷走神经信号的作用提供了新的发现。与中枢神经系统的研究相比,对迷走神经生理学的了解仍然很少。用光遗传学工具进行进一步研究将有助于理解遍布全身的迷走神经信号的基本特征。

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