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全细胞片钳技术自动化的进展。

Advances in the automation of whole-cell patch clamp technology.

机构信息

Health Sciences and Technology, MIT, Cambridge, MA 02139, USA; Media Lab, MIT, Cambridge, MA 02139, USA; McGovern Institute, MIT, Cambridge, MA 02139, USA.

Media Lab, MIT, Cambridge, MA 02139, USA; McGovern Institute, MIT, Cambridge, MA 02139, USA; Department of Biological Engineering, MIT, Cambridge, MA 02139, USA; Department of Brain and Cognitive Sciences, MIT, Cambridge, MA 02139, USA.

出版信息

J Neurosci Methods. 2019 Oct 1;326:108357. doi: 10.1016/j.jneumeth.2019.108357. Epub 2019 Jul 20.

Abstract

Electrophysiology is the study of neural activity in the form of local field potentials, current flow through ion channels, calcium spikes, back propagating action potentials and somatic action potentials, all measurable on a millisecond timescale. Despite great progress in imaging technologies and sensor proteins, none of the currently available tools allow imaging of neural activity on a millisecond timescale and beyond the first few hundreds of microns inside the brain. The patch clamp technique has been an invaluable tool since its inception several decades ago and has generated a wealth of knowledge about the nature of voltage- and ligand-gated ion channels, sub-threshold and supra-threshold activity, and characteristics of action potentials related to higher order functions. Many techniques that evolve to be standardized tools in the biological sciences go through a period of transformation in which they become, at least to some degree, automated, in order to improve reproducibility, throughput and standardization. The patch clamp technique is currently undergoing this transition, and in this review, we will discuss various aspects of this transition, covering advances in automated patch clamp technology both in vitro and in vivo.

摘要

电生理学是研究神经活动的一种方法,通过局部场电位、离子通道中的电流流动、钙峰、反向传播动作电位和体动作电位来测量,所有这些都可以在毫秒时间尺度上测量。尽管成像技术和传感器蛋白取得了巨大的进展,但目前没有任何工具可以在毫秒时间尺度内,以及大脑内部最初几百微米之外,对神经活动进行成像。自几十年前问世以来,膜片钳技术一直是一种非常有价值的工具,它为电压和配体门控离子通道、亚阈值和超阈值活动以及与高级功能相关的动作电位特性的本质提供了丰富的知识。许多在生物科学中演变为标准化工具的技术都经历了一个转型期,在这个转型期,它们至少在一定程度上实现了自动化,以提高可重复性、吞吐量和标准化。膜片钳技术目前正在经历这一转变,在这篇综述中,我们将讨论这一转变的各个方面,涵盖了在体和离体条件下自动膜片钳技术的进展。

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