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钾通道:基因家族、治疗相关性、高通量筛选技术与药物发现

Potassium channels: gene family, therapeutic relevance, high-throughput screening technologies and drug discovery.

作者信息

Ford John W, Stevens Edward B, Treherne J Mark, Packer Jeremy, Bushfield Mark

机构信息

BioFocus PLC, Cambridge Science Park, UK.

出版信息

Prog Drug Res. 2002;58:133-68. doi: 10.1007/978-3-0348-8183-8_4.

Abstract

Existing drugs that modulate ion channels represent a key class of pharmaceutical agents across many therapeutic areas and there is considerable further potential for potassium channel drug discovery. Potassium channels represent the largest and most diverse sub-group of ion channels and they play a central role in regulating the membrane potential of cells. Recent advances in genomics have greatly added to the number of these potential drug targets, but selecting a suitable potassium channel for drug discovery research is a key step. In particular, the potential therapeutic relevance of a potassium channel should be taken into account when selecting a target for screening. Potassium channel drug discovery is being driven by a need to identify lead compounds that can provide tractable starting points for medicinal chemistry. Furthermore, advances in laboratory automation have brought significant opportunities to increase screening throughput for potassium channel assays, but careful assay configuration to model drug-target interactions in a physiological manner is an essential consideration. Several potassium channel screening platforms are described in this review in order to provide some insight into the variety of formats available for screening, together with some of their inherent advantages and limitations. Particular emphasis is placed on the mechanistic basis of drug-target interaction and those aspects of structure/function that are of prime importance in potassium channel drug discovery.

摘要

调节离子通道的现有药物是许多治疗领域的一类关键药物,钾通道药物发现还有很大潜力。钾通道是离子通道中最大且最多样化的亚组,在调节细胞的膜电位方面发挥着核心作用。基因组学的最新进展极大地增加了这些潜在药物靶点的数量,但选择合适的钾通道用于药物发现研究是关键一步。特别是,在选择筛选靶点时应考虑钾通道的潜在治疗相关性。钾通道药物发现的驱动力在于需要识别能够为药物化学提供易于处理的起始点的先导化合物。此外,实验室自动化的进展带来了显著机会,可提高钾通道检测的筛选通量,但以生理方式模拟药物 - 靶点相互作用的仔细检测配置是一个重要考虑因素。本文综述了几种钾通道筛选平台,以便深入了解可用于筛选的各种形式及其一些固有优点和局限性。特别强调了药物 - 靶点相互作用的机制基础以及在钾通道药物发现中至关重要的结构/功能方面。

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