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自动化电生理学:高艺术通量。 (此译文可能不太符合医学语境下的准确理解,原文表述似乎不太常规或存在一定错误,推测原意可能是“Automated electrophysiology: high throughput of data.”之类,即“自动化电生理学:高数据通量” )

Automated electrophysiology: high throughput of art.

作者信息

Wang Xiaobo, Li Min

机构信息

ACEA Biosciences, Inc, San Diego, CA 92121, USA.

出版信息

Assay Drug Dev Technol. 2003 Oct;1(5):695-708. doi: 10.1089/154065803770381057.

Abstract

Electrophysiological measurements, in particular, patch clamping, have long been regarded as the "gold standard" for assaying ion channels. Despite its high information content, the technique suffers from laborious, manual processing by highly skilled workers and extremely low throughput. Recently, a number of researchers have started to automate patch clamping by either automating conventional micropipette-based patch clamping or developing planar microelectrode arrays. This article reviews the brief history of these emerging technologies and discusses the technical details, advantages, and disadvantages of each approach and technique. As will be evident from the discussion, two types of automated patch-clamping technologies are emerging. The first places emphasis on data quality, comparable to conventional patch clamping, and the second has much higher throughput. Future developments will include sophisticated patch-clamping devices with both high-quality data and high throughput capabilities and further integration of patch clamping with other cell-based assays.

摘要

长期以来,电生理测量,尤其是膜片钳技术,一直被视为检测离子通道的“金标准”。尽管该技术信息含量高,但它需要技术熟练的工人进行费力的手工操作,且通量极低。最近,一些研究人员开始通过自动化传统的基于微吸管的膜片钳技术或开发平面微电极阵列来实现膜片钳自动化。本文回顾了这些新兴技术的简要历史,并讨论了每种方法和技术的技术细节、优点和缺点。从讨论中可以明显看出,两种类型的自动化膜片钳技术正在兴起。第一种强调数据质量,可与传统膜片钳技术相媲美,第二种则具有更高的通量。未来的发展将包括具备高质量数据和高通量能力的精密膜片钳设备,以及膜片钳技术与其他基于细胞的检测方法的进一步整合。

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