[Controlling sleep/wakefulness using optogenetics].

Akihiro Yamanaka
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Abstract

Optogenetics is a recently developed experimental technique to control the activity of neurons using light. Optogenetics shows its power to reveal the physiological role of specific neural circuits in the brain. In particular, manipulation of a specific type of neurons using optogenetics with high accuracy timing enables us to analyze causality between neural activity and initiation of animal behaviors. However, to manipulate the activity of specific neurons in vivo, there are two critical steps to succeed in manipulation of the neural activity and control of the behavior of individual animals. The first step is an adequate number of molecules of light-activated protein that has to be expressed in the cell membrane of the neurons of interest. The second step is the optical system to illuminate the targeted neurons with enough intensity of light to activate the light-activated protein. We applied optogenetics to hypothalamic peptidergic neurons such as orexin/hypocretin neurons or melanin concentrating hormone (MCH) neurons. These neurons are implicated in sleep/wakefulness regulation. In this mini review, I will show the regulatory mechanism of sleep/wakefulness by these neurons using optogenetics.

[利用光遗传学控制睡眠/觉醒]。
光遗传学是近年来发展起来的一种利用光来控制神经元活动的实验技术。光遗传学显示了它在揭示大脑中特定神经回路的生理作用方面的力量。特别是,使用高精度定时光遗传学操作特定类型的神经元使我们能够分析神经活动与动物行为开始之间的因果关系。然而,为了操纵体内特定神经元的活动,有两个关键步骤可以成功地操纵神经活动和控制个体动物的行为。第一步是在感兴趣的神经元的细胞膜上表达足够数量的光激活蛋白分子。第二步是光学系统,用足够强度的光照射目标神经元,激活光激活蛋白。我们将光遗传学应用于下丘脑的肽能神经元,如食欲素/下丘脑分泌素神经元或黑色素集中激素(MCH)神经元。这些神经元与睡眠/觉醒调节有关。在这篇综述中,我将利用光遗传学来展示这些神经元对睡眠/觉醒的调节机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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