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离子通量:一种通过人类醚-去-去相关基因通道生理学和药理学进行评估的微流控膜片钳系统。

IonFlux: a microfluidic patch clamp system evaluated with human Ether-à-go-go related gene channel physiology and pharmacology.

作者信息

Golden Andrew P, Li Nianzhen, Chen Qin, Lee Tony, Nevill Tanner, Cao Xueying, Johnson Juliette, Erdemli Gül, Ionescu-Zanetti Cristian, Urban Laszlo, Holmqvist Mats

机构信息

Preclinical Safety Profiling, Center for Proteomic Chemistry, Novartis Institutes for Biomedical Research, Cambridge, Massachusetts 02139, USA.

出版信息

Assay Drug Dev Technol. 2011 Dec;9(6):608-19. doi: 10.1089/adt.2010.0362. Epub 2011 May 11.

Abstract

Ion channel assays are essential in drug discovery, not only for identifying promising new clinical compounds, but also for minimizing the likelihood of potential side effects. Both applications demand optimized throughput, cost, and predictive accuracy of measured membrane current changes evoked or modulated by drug candidates. Several competing electrophysiological technologies are available to address this demand, but important gaps remain. We describe the industrial application of a novel microfluidic-based technology that combines compounds, cells, and buffers on a single, standard well plate. Cell trapping, whole cell, and compound perfusion are accomplished in interconnecting microfluidic channels that are coupled to pneumatic valves, which emancipate the system from robotics, fluidic tubing, and associated maintenance. IonFlux™ is a state-of-the-art, compact system with temperature control and continuous voltage clamp for potential application in screening for voltage- and ligand-gated ion channel modulators. Here, ensemble recordings of the IonFlux system were validated with the human Ether-à-go-go related gene (hERG) channel (stably expressed in a Chinese hamster ovary cell line), which has established biophysical and pharmacological characteristics in other automated planar patch systems. We characterized the temperature dependence of channel activation and its reversal potential. Concentration response characteristics of known hERG blockers and control compounds obtained with the IonFlux system correlated with literature and internal data obtained on this cell line with the QPatch HT system. Based on the biophysical and pharmacological data, we conclude that the IonFlux system offers a novel, versatile, automated profiling, and screening system for ion channel targets with the benefit of temperature control.

摘要

离子通道检测在药物研发中至关重要,不仅有助于识别有前景的新型临床化合物,还能降低潜在副作用的发生可能性。这两种应用都需要优化通量、成本以及对候选药物引起或调节的膜电流变化进行测量的预测准确性。有几种相互竞争的电生理技术可满足这一需求,但仍存在重要差距。我们描述了一种基于新型微流控技术的工业应用,该技术可在单个标准孔板上整合化合物、细胞和缓冲液。细胞捕获、全细胞以及化合物灌注在与气动阀相连的相互连通的微流控通道中完成,这使系统摆脱了机器人技术、流体管路及相关维护工作。IonFlux™是一种先进的紧凑型系统,具备温度控制和连续电压钳制功能,有望应用于电压门控和配体门控离子通道调节剂的筛选。在此,我们使用人类醚 - 去 - 去相关基因(hERG)通道(在中国仓鼠卵巢细胞系中稳定表达)对IonFlux系统的整体记录进行了验证,该通道在其他自动化平面膜片系统中已具备明确的生物物理和药理学特性。我们对通道激活的温度依赖性及其反转电位进行了表征。使用IonFlux系统获得的已知hERG阻滞剂和对照化合物的浓度响应特性与文献数据以及使用QPatch HT系统在该细胞系上获得的内部数据相关。基于生物物理和药理学数据,我们得出结论,IonFlux系统为离子通道靶点提供了一种新颖、通用、自动化的分析和筛选系统,且具有温度控制的优势。

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