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用于经典瞬时受体电位通道TRPC3、6和7的自动化膜片钳检测方法的开发。

The development of automated patch clamp assays for canonical transient receptor potential channels TRPC3, 6, and 7.

作者信息

McPate Mark, Bhalay Gurdip, Beckett Martin, Fairbrother Sian, Gosling Martin, Groot-Kormelink Paul J, Lane Rebecca, Kent Toby, Van Diepen Michiel T, Tranter Pamela, Verkuyl J Martin

机构信息

Novartis Institutes for BioMedical Research , Horsham Research Centre, West Sussex, United Kingdom .

出版信息

Assay Drug Dev Technol. 2014 Jun;12(5):282-92. doi: 10.1089/adt.2014.574. Epub 2014 Jun 6.

Abstract

The canonical transient receptor potential channel subfamily (TRPC3, TRPC6, and TRPC7) contains Ca(2+) permeable non-selective cation channels that are widely expressed in a variety of tissues. There is increasing evidence implicating TRPC channels, particularly TRPC3 and 6, in physiological and pathophysiological processes, eliciting interest in these channels as novel drug targets. Electrophysiology remains a benchmark technique for measuring ion channel function and accurately determining the pharmacological effects of compounds. In this report we describe the development of TRPC inhibitor assays on 2 automated planar patch clamp platforms-the IonWorks(®) Quattro™ and QPatch(®) systems. To enable activation of TRPC channels by carbachol, Chinese Hamster Ovary-K1 cells stably expressing the muscarinic M3 receptor were transduced with human TRPC3, TRPC6, or TRPC7 using BacMam viruses. TRPC3, 6, and 7 currents could be recorded on both platforms. However, the design of each platform limits which assay parameters can be recorded. Due to its continuous recording capabilities, the QPatch can capture both the activation and decay of the response. However, the transient nature of TRPC channels, the inability to reactivate and the large variation in peak currents limits the ability to develop assays for compound screening. The IonWorks Quattro, due to its discontinuous sampling, did not fully capture the peak of TRPC currents. However, due to the ability of the IonWorks Quattro to record from 64 cells per well, the variation from well to well was sufficiently reduced allowing for the development of medium-throughput screening assays.

摘要

典型瞬时受体电位通道亚家族(TRPC3、TRPC6和TRPC7)包含Ca(2+)可渗透的非选择性阳离子通道,这些通道在多种组织中广泛表达。越来越多的证据表明TRPC通道,特别是TRPC3和6,参与生理和病理生理过程,这引发了人们对这些通道作为新型药物靶点的兴趣。电生理学仍然是测量离子通道功能并准确确定化合物药理作用的基准技术。在本报告中,我们描述了在两种自动化平面膜片钳平台——IonWorks(®) Quattro™和QPatch(®)系统上开发TRPC抑制剂检测方法的过程。为了通过卡巴胆碱激活TRPC通道,使用杆状病毒载体将稳定表达毒蕈碱型M3受体的中国仓鼠卵巢-K1细胞转导人TRPC3、TRPC6或TRPC7。在这两种平台上均可记录到TRPC3、6和7电流。然而,每个平台的设计限制了可记录的检测参数。由于其连续记录能力,QPatch可以捕获反应的激活和衰减过程。然而,TRPC通道的瞬态特性、无法重新激活以及峰值电流的较大变化限制了开发用于化合物筛选的检测方法的能力。IonWorks Quattro由于其不连续采样,未能完全捕获TRPC电流的峰值。然而,由于IonWorks Quattro能够从每孔64个细胞进行记录,孔间差异充分降低,从而可以开发中通量筛选检测方法。

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