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无标记分析法分析 G 蛋白偶联受体激动剂:细胞黏附的关键影响。

Label-free analysis of GPCR-stimulation: The critical impact of cell adhesion.

机构信息

Institute of Pharmacy, University of Regensburg, D-93053 Regensburg, Germany.

Institute of Analytical Chemistry, Chemo- and Biosensors, University of Regensburg, D-93053 Regensburg, Germany.

出版信息

Pharmacol Res. 2016 Jun;108:65-74. doi: 10.1016/j.phrs.2016.04.026. Epub 2016 Apr 28.

Abstract

Label-free cell-based assays have been attracting growing attention in drug research. Optical approaches based on evanescent electric fields (e.g. EPIC, RWG/DMR, SPR) and electrochemical impedance analysis (ECIS, xCELLigence) are by far the most widespread techniques for such purposes. We compared three label-free approaches (ECIS, RWG/DMR and SPR) with respect to the activation of the human histamine H receptor (HR) expressed by U-373 MG glioblastoma and genetically engineered HEK 293T cells. HEK 293T cells were either expressing the hHR alone or in combination with the adhesion protein hMSR1. The β-adrenergic receptor (β-AR) expressed by bovine aortic endothelial cells (BAEC) served as a second cell model. Reduced cell adhesion to the surface of the sensing devices affected both, the optical and the impedance-based readout, but became much more obvious in case of RWG- or SPR-based assays. By contrast, the co-expression of hHR and hMSR1 in HEK 293T cells strongly enhanced the signal compared to hHR expression alone. As the sensitivity of the optical readouts is confined to a distance of 100-200nm from the surface, depending on the wavelength of the incident light, this observation is in accordance with tighter adhesion of the co-transfectants, inducing a shorter distance between the cell membrane and the substrate. Combining ECIS and SPR, allowing for simultaneous registration of both signals for a single cell population, provided a direct correlation of both readouts, when HR or β-AR stimulation was investigated for the same cell populations. Cell adhesion was found to have a critical impact on the results of label-free cell monitoring, in particular when techniques based on evanescent electric fields are applied.

摘要

无标记细胞检测技术在药物研究中越来越受到关注。基于消逝场的光学方法(如 EPIC、RWG/DMR、SPR)和电化学阻抗分析(ECIS、xCELLigence)是迄今为止最广泛用于此类目的的技术。我们比较了三种无标记方法(ECIS、RWG/DMR 和 SPR),以评估其在激活人组织胺 H 受体(HR)方面的作用,该受体由 U-373 MG 神经胶质瘤和基因工程的 HEK 293T 细胞表达。HEK 293T 细胞要么单独表达 hHR,要么与粘附蛋白 hMSR1 一起表达。牛主动脉内皮细胞(BAEC)表达的β-肾上腺素能受体(β-AR)作为第二个细胞模型。细胞对检测设备表面的粘附减少会影响光学和阻抗两种读数,但在 RWG 或 SPR 检测中更为明显。相比之下,hHR 和 hMSR1 在 HEK 293T 细胞中的共表达与单独表达 hHR 相比,信号明显增强。由于光学读数的灵敏度限制在距表面 100-200nm 的距离内,具体取决于入射光的波长,因此这种观察结果与共转染物的粘附更紧密一致,导致细胞膜与基底之间的距离更短。ECIS 和 SPR 的结合允许同时记录单个细胞群体的两种信号,当对相同的细胞群体进行 HR 或 β-AR 刺激时,提供了两种读数的直接相关性。当应用基于消逝场的技术时,发现细胞粘附对无标记细胞监测结果具有关键影响。

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