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基于IonWorks Quattro和铊通量的人醚-à-去相关基因筛选检测方法的比较。

Comparison of human Ether-à-go-go related gene screening assays based on IonWorks Quattro and thallium flux.

作者信息

Bridal Terry R, Margulis Michael, Wang Xin, Donio Michael, Sorota Steve

机构信息

Department of Neurosciences, Merck Research Labs, Kenilworth, New Jersey 07033, USA.

出版信息

Assay Drug Dev Technol. 2010 Dec;8(6):755-65. doi: 10.1089/adt.2010.0267. Epub 2010 Jul 26.

Abstract

In vitro screens using cellular preparations expressing human Ether-à-go-go related gene (hERG) potassium channels have become an intrinsic tool for evaluating cardiac liability of compounds during early preclinical stage development. Although hERG channel blocking effects are most reliably evaluated using the low-throughput, manual patch clamp technique, methods and technologies that yield hERG activity data in multiwell format are required to address increased throughput requirements. In most cases, multiwell approaches to measuring hERG activity involve achieving a reasonable balance between throughput and data fidelity. Here we compared two functional multiwell hERG assays: a fluorescence-based fluorometric imaging plate reader (FLIPR(®)) screen measuring thallium (Tl(+)) influx through hERG channels and an automated patch clamp assay using an IonWorks Quattro(®). Mean Z' values for FLIPR-Tl(+) and IonWorks Quattro assays were similar, 0.57 ± 0.09 (±SD; n = 10) versus 0.63 ± 0.11 (n = 12), respectively. IC₅₀ determinations for a set of 17 reference compounds were used to evaluate potency shifts relative to conventional voltage clamp data. The reference compound set included members that are known to exert severe potency shifts in multiwell assays. Mean potency shift values for FLIPR-Tl(+) and IonWorks Quattro assays were 117- and 8-fold, respectively. On the basis of reduced potency shifts and low data variability, we conclude that the IonWorks Quattro screen was a better predictor of hERG activity in conventional whole-cell patch clamp than the Tl(+) influx assay.

摘要

使用表达人类醚 - 去极化相关基因(hERG)钾通道的细胞制剂进行的体外筛选,已成为临床前早期开发阶段评估化合物心脏毒性的一种固有工具。尽管使用低通量手动膜片钳技术能最可靠地评估hERG通道阻断效应,但仍需要能以多孔板形式产生hERG活性数据的方法和技术来满足日益增长的通量需求。在大多数情况下,用于测量hERG活性的多孔板方法需要在通量和数据保真度之间取得合理平衡。在此,我们比较了两种功能性多孔板hERG检测方法:一种基于荧光的荧光成像板读数器(FLIPR(®))筛选法,用于测量铊(Tl(+))通过hERG通道的内流;另一种是使用IonWorks Quattro(®)的自动膜片钳检测法。FLIPR - Tl(+)检测法和IonWorks Quattro检测法的平均Z'值相似,分别为0.57 ± 0.09(±标准差;n = 10)和0.63 ± 0.11(n = 12)。使用一组17种参考化合物的半数抑制浓度(IC₅₀)测定结果来评估相对于传统电压钳数据的效价变化。该参考化合物组包括已知在多孔板检测中会产生显著效价变化的成员。FLIPR - Tl(+)检测法和IonWorks Quattro检测法的平均效价变化值分别为117倍和8倍。基于效价变化的降低和数据变异性较低,我们得出结论,与Tl(+)内流检测法相比,IonWorks Quattro筛选法在传统全细胞膜片钳检测中是hERG活性更好的预测指标。

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