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用于在自动化平台上进行药物发现和安全性筛选的离子通道文库。

An ion channel library for drug discovery and safety screening on automated platforms.

作者信息

Wible Barbara A, Kuryshev Yuri A, Smith Stephen S, Liu Zhiqi, Brown Arthur M

机构信息

ChanTest Corporation, 14656 Neo Parkway, Cleveland, OH 44128, USA.

出版信息

Assay Drug Dev Technol. 2008 Dec;6(6):765-80. doi: 10.1089/adt.2008.171.

Abstract

Ion channels represent the third largest class of targets in drug discovery after G-protein coupled receptors and kinases. In spite of this ranking, ion channels continue to be under exploited as drug targets compared with the other two groups for several reasons. First, with 400 ion channel genes and an even greater number of functional channels due to mixing and matching of individual subunits, a systematic collection of ion channel-expressing cell lines for drug discovery and safety screening has not been available. Second, the lack of high-throughput functional assays for ion channels has limited their use as drug targets. Now that automated electrophysiology has come of age and provided the technology to assay ion channels at medium to high throughput, we have addressed the need for a library of ion channel cell lines by constructing the Ion Channel Panel (ChanTest Corp., Cleveland, OH). From 400 ion channel genes, a collection of 82 of the most relevant human ion channels for drug discovery, safety, and human disease has been assembled.Each channel has been stably overexpressed in human embryonic kidney 293 or Chinese hamster ovary cells. Cell lines have been selected and validated on automated electrophysiology systems to facilitate cost-effective screening for safe and selective compounds at earlier stages in the drug development process. The screening and validation processes as well as the relative advantages of different screening platforms are discussed.

摘要

离子通道是继G蛋白偶联受体和激酶之后药物研发中第三大靶点类别。尽管有这样的排名,但由于多种原因,与其他两类靶点相比,离子通道作为药物靶点仍未得到充分利用。首先,由于有400个离子通道基因,且因各个亚基的混合与匹配产生的功能性通道数量更多,用于药物研发和安全性筛选的表达离子通道的细胞系尚未有系统的收集。其次,缺乏针对离子通道的高通量功能检测方法限制了它们作为药物靶点的应用。如今自动电生理技术已经成熟,并提供了在中高通量水平检测离子通道的技术,我们通过构建离子通道细胞系库(ChanTest公司,俄亥俄州克利夫兰)满足了对离子通道细胞系库的需求。从400个离子通道基因中,汇集了82个与药物研发、安全性及人类疾病最相关的人类离子通道。每个通道都已在人胚肾293细胞或中国仓鼠卵巢细胞中稳定过表达。这些细胞系已在自动电生理系统上进行了筛选和验证,以便在药物研发过程的早期阶段以具有成本效益的方式筛选安全且有选择性的化合物。本文讨论了筛选和验证过程以及不同筛选平台的相对优势。

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