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配备实时细胞分析仪的阵列金微电极的再生

Regeneration of Arrayed Gold Microelectrodes Equipped for a Real-Time Cell Analyzer.

作者信息

Xu Zhihui, Song Yiyan, Jiang Huijun, Kong Yan, Li Xiaoming, Chen Jin, Wu Yuan

机构信息

School of Public Health, Nanjing Medical University.

School of Pharmacy, Nanjing Medical University.

出版信息

J Vis Exp. 2018 Mar 12(133):56250. doi: 10.3791/56250.

Abstract

The label-free cell-based assay is advantageous for biochemical study because of it does not require the use of experimental animals. Due to its ability to provide more dynamic information about cells under physiological conditions than classical biochemical assays, this label-free real-time cell assay based on the electric impedance principle is attracting more attention during the past decade. However, its practical utilization may be limited due to the relatively expensive cost of measurement, in which costly consumable disposable gold microchips are used for the cell analyzer. In this protocol, we have developed a general strategy to regenerate arrayed gold microelectrodes equipped for a commercial label-free cell analyzer. The regeneration process includes trypsin digestion, rinsing with ethanol and water, and a spinning step. The proposed method has been tested and shown to be effective for the regeneration and repeated usage of commercial electronic plates at least three times, which will help researchers save on the high running cost of real-time cell assays.

摘要

基于无标记细胞的检测方法对生物化学研究具有优势,因为它不需要使用实验动物。由于与传统生物化学检测方法相比,其能够在生理条件下提供更多关于细胞的动态信息,这种基于电阻抗原理的无标记实时细胞检测方法在过去十年中受到了越来越多的关注。然而,由于测量成本相对较高,其实际应用可能受到限制,其中细胞分析仪使用昂贵的一次性金微芯片作为耗材。在本方案中,我们开发了一种通用策略,用于再生配备商业无标记细胞分析仪的阵列金微电极。再生过程包括胰蛋白酶消化、用乙醇和水冲洗以及离心步骤。所提出的方法已经经过测试,结果表明该方法对于商业电子板的再生和至少三次重复使用是有效的,这将有助于研究人员节省实时细胞检测的高昂运行成本。

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