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Novel screening techniques for ion channel targeting drugs

机译:离子通道靶向药物的新型筛选技术

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摘要

Ion channels are integral membrane proteins that regulate the flux of ions across the cell membrane. They are involved in nearly all physiological processes, and malfunction of ion channels has been linked to many diseases. Until recently, high-throughput screening of ion channels was limited to indirect, e.g. fluorescence-based, readout technologies. In the past years, direct label-free biophysical readout technologies by means of electrophysiology have been developed. Planar patch-clamp electrophysiology provides a direct functional label-free readout of ion channel function in medium to high throughput. Further electrophysiology features, including temperature control and higher-throughput instruments, are continually being developed. Electrophysiological screening in a 384-well format has recently become possible. Advances in chip and microfluidic design, as well as in cell preparation and handling, have allowed challenging cell types to be studied by automated patch clamp. Assays measuring action potentials in stem cell-derived cardiomyocytes, relevant for cardiac safety screening, and neuronal cells, as well as a large number of different ion channels, including fast ligand-gated ion channels, have successfully been established by automated patch clamp. Impedance and multi-electrode array measurements are particularly suitable for studying cardiomyocytes and neuronal cells within their physiological network, and to address more complex physiological questions. This article discusses recent advances in electrophysiological technologies available for screening ion channel function and regulation.
机译:离子通道是必不可少的膜蛋白,可调节离子穿过细胞膜的通量。它们几乎参与了所有生理过程,并且离子通道的故障与许多疾病有关。直到最近,离子通道的高通量筛选还仅限于间接方法,例如基于荧光的读出技术。在过去的几年中,已经开发了通过电生理学的直接无标签生物物理读出技术。平面膜片钳电生理学可提供中等至高通量的离子通道功能的直接无功能读数。包括温度控制和高通量仪器在内的其他电生理功能也在不断开发中。 384孔格式的电生理筛选最近已成为可能。芯片和微流体设计以及细胞制备和处理方面的进展,已使挑战性的细胞类型可以通过自动膜片钳进行研究。通过自动膜片钳已成功建立了测定干细胞衍生的心肌细胞(与心脏安全性筛查有关的分子)以及神经元细胞以及大量不同离子通道(包括快速配体门控离子通道)中动作电位的方法。阻抗和多电极阵列测量特别适合研究其生理网络内的心肌细胞和神经元细胞,并解决更复杂的生理问题。本文讨论了可用于筛选离子通道功能和调节的电生理技术的最新进展。

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