在普通平板阅读器和显微镜上进行动力学模式钾通道检测的规程

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
Emery Smith , Louise Dickson , Philip Pickford , Anna Rowland , Justin Shumate , Katherine Perez , Louis Scampavia , Derek Hernandez , Timothy P. Spicer
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引用次数: 0

摘要

基于荧光的钾通道测定通常在昂贵、难以获得的荧光成像动力学平板阅读器上运行,而这种平板阅读器在大多数实验室中并不常见。在此,我们将介绍如何使用亮铊快照检测法来进行终点钾通道检测,从而使其能够在许多实验室更为常见的多个平板阅读器平台上使用。这些方法将使用户能够识别钾通道的调节剂。在这项工作中,我们采用了基于动力学模式的 Molecular Devices FLIPR 方案,并对其进行了改良,使其可用于 BMG Labtech PHERAstar 等终点平板阅读器,以鉴定 CHO 细胞中 GIRK 通道的激活剂。我们证明,这两种平板阅读器在功能上都能产生出色的 Z'值,这使它们非常适合从 Sigma LOPAC 1,280 筛选集合中找到相关的命中物。重要的是,这种检测方法还通过高含量读板器进行了验证,证明了在混合细胞群中对单个细胞信号进行空间分辨的可能性。这些结果的汇总显示了在更常见的平板阅读器上进行终点兼容钾通道检测读数的灵活性、可及性和功能性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Protocol for kinetic mode potassium channel assays on common plate readers and microscopes

Fluorescence-based potassium channel assays are typically run on expensive, hard to obtain, fluorescence imaging kinetic plate readers that are uncommon in most laboratories. Here we describe the use of the Brilliant Thallium Snapshot assay to conduct an endpoint potassium channel assay, so that it can be used across multiple plate reader platforms that are more common in many labs. These methods will allow users to identify modulators of potassium channels. For this work, we have taken a kinetic mode Molecular Devices FLIPR based protocol and adapted it to be utilized on endpoint plate readers, such as the BMG Labtech PHERAstar, to identify activators of GIRK channels in CHO cells. We demonstrate that both plate readers are functionally competent at generating excellent Z’ values which makes them ideally suited to finding corollary hits from the Sigma LOPAC 1,280 screening collection. Importantly, this assay has also been validated using a high content reader, demonstrating the possibility of spatially resolving signals from individual cells within a mixed cell population. The compendium of these results shows the flexibility, accessibility and functionality of endpoint-compatible potassium channel assay readouts on more common plate readers.

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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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