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Automated Electrophysiology Makes the Pace for Cardiac Ion Channel Safety Screening

机译:自动化的电生理学为心脏离子通道安全性筛查奠定了基础

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摘要

The field of automated patch-clamp electrophysiology has emerged from the tension between the pharmaceutical industry’s need for high-throughput compound screening versus its need to be conservative due to regulatory requirements. On the one hand, hERG channel screening was increasingly requested for new chemical entities, as the correlation between blockade of the ion channel coded by hERG and torsades de pointes cardiac arrhythmia gained increasing attention. On the other hand, manual patch-clamping, typically quoted as the “gold-standard” for understanding ion channel function and modulation, was far too slow (and, consequently, too expensive) for keeping pace with the numbers of compounds submitted for hERG channel investigations from pharmaceutical R&D departments. In consequence it became more common for some pharmaceutical companies to outsource safety pharmacological investigations, with a focus on hERG channel interactions. This outsourcing has allowed those pharmaceutical companies to build up operational flexibility and greater independence from internal resources, and allowed them to obtain access to the latest technological developments that emerged in automated patch-clamp electrophysiology – much of which arose in specialized biotech companies. Assays for nearly all major cardiac ion channels are now available by automated patch-clamping using heterologous expression systems, and recently, automated action potential recordings from stem-cell derived cardiomyocytes have been demonstrated. Today, most of the large pharmaceutical companies have acquired automated electrophysiology robots and have established various automated cardiac ion channel safety screening assays on these, in addition to outsourcing parts of their needs for safety screening.
机译:自动化膜片钳电生理学领域已经出现在制药行业对高通量化合物筛选的需求与由于法规要求而变得保守之间的紧张关系。一方面,由于新的化学实体对hERG通道的筛选要求越来越高,因为hERG编码的离子通道的阻断与扭转性心律失常之间的相关性越来越受到关注。另一方面,手动膜片钳位(通常被称为理解离子通道功能和调制的“金标准”)太慢(因此太昂贵),无法跟上提交给hERG的化合物数量药品研发部门的渠道调查。因此,某些制药公司将安全药理学研究外包出去变得更加普遍,重点是hERG通道相互作用。这项外包服务使这些制药公司能够增强运营灵活性并增强对内部资源的独立性,并使他们能够获取自动膜片钳电生理学中出现的最新技术发展信息,其中大部分来自专门的生物技术公司。现在几乎可以通过使用异源表达系统进行自动膜片钳来进行几乎所有主要心脏离子通道的测定,最近,已经证明了来自干细胞的心肌细胞的自动动作电位记录。如今,除了将安全性检查的部分需求外包外,大多数大型制药公司已经购买了自动化的电生理机器人,并在其上建立了各种自动化的心脏离子通道安全性检查方法。

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