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细胞微电子传感技术用于细胞保护化合物的筛选。

A cell-microelectronic sensing technique for the screening of cytoprotective compounds.

机构信息

Avidin Ltd., Szeged, Szeged, Hungary.

出版信息

Int J Mol Med. 2010 Apr;25(4):525-30. doi: 10.3892/ijmm_00000373.

Abstract

In recent years, a new cell-based high throughput paradigm has emerged, which seeks to identify novel, pharmacologically active cytoprotective compounds. The essence of this approach is to create experimental models of cell injury relevant for a particular disease by establishing in vitro cell-based models, followed by high-throughput testing of compounds that affect the cellular response in a desired manner. Prior approaches typically used simple end-point analyses. To assess the cytoprotective effects of novel drug candidates in real-time, we have applied a cell-microelectronic sensing technique (RT-CES), which measures changes in the impedance of individual microelectronic wells that correlates linearly with cell index (reflecting cell number, adherence and cell growth), thereby allowing the continuous determination of cell viability during oxidative stress. In vitro cytotoxicity was elicited by hydrogen peroxide in myocytes (H9c2) and hepatocytes (Hep3B). Cells were post-treated at 30 min with various reference molecules and novel cytoprotective compounds. Cytoprotection detected in the RT-CES system correlated well with the results of two classical end-point-based methods (improvement in MTT and reduction of LDH release). The RT-CES method, when used as described in the current report, is suitable for the screening of molecular libraries to identify molecules or molecule combinations that attenuate oxidative stress-induced cell damage.

摘要

近年来,一种新的基于细胞的高通量范例已经出现,旨在寻找新的、具有药理活性的细胞保护化合物。这种方法的本质是通过建立体外基于细胞的模型来创建与特定疾病相关的细胞损伤的实验模型,然后高通量测试以期望的方式影响细胞反应的化合物。以前的方法通常使用简单的终点分析。为了实时评估新型药物候选物的细胞保护作用,我们应用了细胞微电子感应技术(RT-CES),该技术测量单个微电子井阻抗的变化,与细胞指数(反映细胞数量、粘附和细胞生长)呈线性相关,从而允许在氧化应激过程中连续测定细胞活力。过氧化氢在心肌细胞(H9c2)和肝细胞(Hep3B)中引起体外细胞毒性。在 30 分钟后,用各种参考分子和新型细胞保护化合物对细胞进行后处理。RT-CES 系统中检测到的细胞保护作用与两种基于经典终点的方法(MTT 改善和 LDH 释放减少)的结果非常吻合。当按照本报告所述使用 RT-CES 方法时,它适用于筛选分子文库,以识别减轻氧化应激诱导的细胞损伤的分子或分子组合。

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