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神经科学中的光遗传学新先锋。

New Pioneers of Optogenetics in Neuroscience.

机构信息

Department of Medical Biology, Bahçeşehir University Faculty of Medicine, İstanbul, Turkey.

Heritage College of Osteopathic Medicine, Ohio University, Athens, OH, USA.

出版信息

Adv Exp Med Biol. 2020;1288:47-60. doi: 10.1007/5584_2019_473.

Abstract

Optogenetics have recently increased in popularity as tools to study behavior in response to the brain and how these trends relate back to a neuronal circuit. Additionally, the high demand for human cerebral tissue in research has led to the generation of a new model to investigate human brain development and disease. Human Pluripotent Stem Cells (hPSCs) have been previously used to recapitulate the development of several tissues such as intestine, stomach and liver and to model disease in a human context, recently new improvements have been made in the field of hPSC-derived brain organoids to better understand overall brain development but more specifically, to mimic inter-neuronal communication. This review aims to highlight the recent advances in these two separate approaches of brain research and to emphasize the need for overlap. These two novel approaches would combine the study of behavior along with the specific circuits required to produce the signals causing such behavior. This review is focused on the current state of the field, as well as the development of novel optogenetic technologies and their potential for current scientific study and potential therapeutic use.

摘要

光遗传学最近作为研究大脑反应行为的工具越来越受欢迎,以及这些趋势如何与神经元回路相关。此外,研究中对人类脑组织的高需求导致了一种新模型的产生,以研究人类大脑发育和疾病。人类多能干细胞(hPSCs)以前曾被用于重现肠道、胃和肝脏等几种组织的发育,并在人类背景下模拟疾病,最近在 hPSC 衍生的脑类器官领域取得了新的进展,以更好地了解整体大脑发育,但更具体地说,是为了模拟神经元间的通讯。本综述旨在强调这两种不同的大脑研究方法的最新进展,并强调需要进行重叠研究。这两种新方法将结合行为研究以及产生导致这种行为的信号所需的特定回路。本综述重点介绍了该领域的现状,以及新型光遗传学技术的发展及其在当前科学研究和潜在治疗用途中的潜力。

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