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Accumulation and detection of secreted proteins from single cells for reporter gene assays using a local redox cycling-based electrochemical (LRC-EC) chip device

机译:使用本地基于氧化还原循环的电化学(LRC-EC)芯片设备从单细胞中积累和检测分泌蛋白,用于报告基因分析

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摘要

A lab-on-a-chip device is described for the electrochemical detection of alkaline phosphatase (ALP) secreted by transformed single HeLa cells. Detection on the chip device is based on local redox cycling at 256 individually addressable sensor points. Ring-disk electrodes (generator/collector) are arranged at individual sensor points to amplify the signal due to redox-cycling with only 32 connector pads. The surface of each sensor point is modified with antibodies for secreted alkaline phosphatase (SEAP) immobilization, which facilitates separation and detection of SEAP. Separation of SEAP from HeLa cells enables elimination of endogenous ALP and prevents HeLa cells from damage due to exposure to high level pH used during electrochemical detection. The large number of sensor points enables the simultaneous analysis of a large amount of single cells using the chip. The system is useful for gene reporter assays and for the detection of several types of secreted proteins.
机译:描述了一种芯片实验室设备,用于电化学检测转化的单个HeLa细胞分泌的碱性磷酸酶(ALP)。芯片设备上的检测基于在256个可单独寻址的传感器点上的本地氧化还原循环。环形盘电极(发生器/收集器)布置在各个传感器点处,以通过仅32个连接器焊盘进行的氧化还原循环来放大信号。每个传感器点的表面都经过抗体修饰,以固定分泌的碱性磷酸酶(SEAP),从而有助于SEAP的分离和检测。 SEAP与HeLa细胞的分离可消除内源性ALP,并防止HeLa细胞因暴露于电化学检测过程中所用的高pH值而受到损害。大量的传感器点可以使用芯片同时分析大量的单细胞。该系统可用于基因报告基因检测和多种分泌蛋白的检测。

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