Department of Pharmacology, Physiology & Neuroscience, University of South Carolina, School of Medicine, Columbia, SC 29209, USA.
Department of Electrical Engineering, University of South Carolina, School of Engineering, Columbia, SC 29208, USA.
Biosens Bioelectron. 2014 Apr 15;54:448-54. doi: 10.1016/j.bios.2013.11.038. Epub 2013 Nov 20.
Cell-based screening assays are now widely used for identifying compounds that serve as ion channel modulators. However, instrumentation for the automated, real-time analysis of ion flux from clonal and primary cells is lacking. This study describes the initial development of an ion-sensitive field effect transistor (ISFET)-based screening assay for the acquisition of K(+) efflux data from cells cultured in multi-well plates. Silicon-based K(+)-sensitive ISFETs were tested for their electrical response to varying concentrations of KCl and were found to display a linear response relationship to KCl in the range of 10 µM-1 mM. The ISFETs, along with reference electrodes, were inserted into fast-flow chambers containing either human colonic T84 epithelial cells or U251-MG glioma cells. Application of the Ca(2+) ionophore A23187 (1 µM), to activate Ca(2+)-activated non-selective cation (NSC) channels (T84 cells) and large conductance Ca(2+)-activated K(+) (BK) channels (U251 cells), resulted in time-dependent increases in the extracellular K(+) concentration ([K(+)]o) as measured with the ISFETs. Treatment of the cells with blockers of either the NSC or BK channels, caused a strong inhibition of the A23187-induced increase in [K(+)]o. These results were consistent with ion current measurements obtained using the whole-cell arrangement of the patch clamp procedure. In addition, K(+) efflux data could be acquired in parallel from multiple cell chambers using the ISFET sensors. Given the non-invasive properties of the probes, the ISFET-based assay should be adaptable for screening ion channels in various cell types.
基于细胞的筛选测定法现在被广泛用于鉴定作为离子通道调节剂的化合物。然而,缺乏用于对克隆和原代细胞的离子流进行自动实时分析的仪器。本研究描述了基于离子敏感场效应晶体管(ISFET)的筛选测定法的初步开发,用于从在多孔板中培养的细胞中获得 K(+)外流数据。对基于硅的 K(+)-敏感 ISFET 进行了测试,以测试它们对不同浓度 KCl 的电响应,发现它们对 KCl 的线性响应关系在 10 µM-1 mM 的范围内。将 ISFET 与参比电极一起插入快速流动室中,该流动室中含有人结肠 T84 上皮细胞或 U251-MG 神经胶质瘤细胞。应用 Ca(2+)载体 A23187(1 µM)激活 Ca(2+)-激活的非选择性阳离子(NSC)通道(T84 细胞)和大电导 Ca(2+)-激活的 K(+)(BK)通道(U251 细胞),导致 ISFET 测量的细胞外 K(+)浓度([K(+)]o)随时间的推移而增加。用 NSC 或 BK 通道的阻断剂处理细胞,会强烈抑制 A23187 诱导的 [K(+)]o 增加。这些结果与使用膜片钳程序的全细胞排列获得的离子电流测量结果一致。此外,使用 ISFET 传感器可以从多个细胞室并行获得 K(+)外流数据。鉴于探针的非侵入性特性,基于 ISFET 的测定法应该适用于筛选各种细胞类型中的离子通道。