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光遗传学的综合概念。

A comprehensive concept of optogenetics.

机构信息

Champalimaud Neuroscience Programme, Instituto Gulbenkian de Ciência, Oeiras, Portugal.

出版信息

Prog Brain Res. 2012;196:1-28. doi: 10.1016/B978-0-444-59426-6.00001-X.

Abstract

Fundamental questions that neuroscientists have previously approached with classical biochemical and electrophysiological techniques can now be addressed using optogenetics. The term optogenetics reflects the key program of this emerging field, namely, combining optical and genetic techniques. With the already impressively successful application of light-driven actuator proteins such as microbial opsins to interact with intact neural circuits, optogenetics rose to a key technology over the past few years. While spearheaded by tools to control membrane voltage, the more general concept of optogenetics includes the use of a variety of genetically encoded probes for physiological parameters ranging from membrane voltage and calcium concentration to metabolism. Here, we provide a comprehensive overview of the state of the art in this rapidly growing discipline and attempt to sketch some of its future prospects and challenges.

摘要

神经科学家以前使用经典的生化和电生理技术来研究的基本问题,现在可以通过光遗传学来解决。光遗传学这个术语反映了这个新兴领域的关键计划,即结合光学和遗传学技术。随着光驱动的效应蛋白(如微生物视蛋白)已经成功地应用于与完整的神经回路相互作用,光遗传学在过去几年中成为了一项关键技术。虽然光遗传学的工具主要用于控制细胞膜电压,但更广泛的概念包括使用各种遗传编码探针来测量从膜电压和钙离子浓度到代谢等生理参数。在这里,我们提供了该快速发展领域的最新技术的全面概述,并试图勾勒出其未来的一些前景和挑战。

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