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首页> 外文期刊>Combinatorial Chemistry & High Throughput Screening >Use of Planar Array Electrophysiology for the Development of Robust Ion Channel Cell Lines
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Use of Planar Array Electrophysiology for the Development of Robust Ion Channel Cell Lines

机译:平面阵列电生理学的使用,用于开发强大的离子通道细胞系

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摘要

The tractability of ion channels as drug targets has been significantly improved by the advent of planar array electrophysiology platforms which have dramatically increased the capacity for electrophysiological profiling of lead series compounds. However, the data quality and through-put obtained with these platforms is critically dependent on the robustness of the expression reagent being used. The generation of high quality, recombinant cell lines is therefore a key step in the early phase of ion channel drug discovery and this can present significant challenges due to the diversity and organisational complexity of many channel types. This article focuses on several complex and difficult to express ion channels and illustrates how improved stable cell lines can be obtained by integration of planar array electrophysiology systems into the cell line generation process per se. By embedding this approach at multiple stages (e.g., during development of the expression strategy, during screening and validation of clonal lines, and during characterisation of the final cell line), the cycle time and success rate in obtaining robust expression of complex multi-subunit channels can be significantly improved. We also review how recent advances in this technology (e.g., population patch clamp) have further widened the versatility and applicability of this approach.
机译:平面阵列电生理平台的出现极大地改善了离子通道作为药物靶标的可处理性,该平台显着提高了铅系列化合物的电生理特征分析能力。但是,通过这些平台获得的数据质量和吞吐量关键取决于所用表达试剂的耐用性。因此,高质量重组细胞系的产生是离子通道药物发现早期的关键步骤,由于许多通道类型的多样性和组织复杂性,这可能带来重大挑战。本文着重介绍几个复杂且难以表达的离子通道,并说明如何通过将平面阵列电生理系统整合到细胞系生成过程本身中来获得改良的稳定细胞系。通过将此方法嵌入多个阶段(例如,在表达策略的开发过程中,克隆系的筛选和验证过程中以及最终细胞系的表征过程中),获得复杂的多亚基稳健表达的循环时间和成功率渠道可以大大改善。我们还将回顾该技术的最新进展(例如人口补丁钳制)如何进一步拓宽该方法的通用性和适用性。

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