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Temporal Sensing Platform Based on Bipolar Electrode for the Ultrasensitive Detection of Cancer Cells

机译:基于双极电极的时间传感平台用于癌细胞的超灵敏检测

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We report a bipolar electrode (BPE) sensing platform for the temporal detection of cancer cells. Combining the advantages of anodic dissolution and electrochemiluminescence (ECL), this strategy shows an ultralow detection limit down to 5 cells/cm(2). At the anode working as the reporting pole, Au NPs were assembled through DNA double strand, which served as both catalyzer for the ECL reaction of luminol/H2O2 and seeds for the chemical reduction of Ag, the anodic dissolution probe. The duration of Ag layer dissolution was positively correlated with the amount of Ag but negatively related to the controlled potential and the conductivity of the circuit. Therefore, it was possible to amplify a slight conductivity change through tuning the other two factors. As the formation of Ag@Au completely quenched the ECL emission of luminol, the ECL emission recovery reflected the extent of anodic dissolution. Through monitoring the ECL recovery time before and after the incubation of cells on the cathode, a few number of cells could be quantified due to slight difference of the conductivity. This method shows several merits. First, the combination of anodic dissolution and ECL significantly increases the detection sensitivity of BPE device. In addition, this strategy broadens the application of BPE for the ultrasensitive monitoring of cancer cells, which was applied to investigate the capture efficiencies of antibodies and aptamers toward MCF-7 and A549.
机译:我们报告双极电极(BPE)感应平台的癌细胞的时间检测。结合阳极溶解和电化学发光(ECL)的优势,该策略显示了低至5个细胞/ cm(2)的超低检测限。在作为报告极的阳极处,金纳米颗粒通过DNA双链组装,既用作鲁米诺/过氧化氢的ECL反应的催化剂,又用作阳极溶解探针Ag的化学还原的种子。 Ag层溶解的持续时间与Ag的量呈正相关,但与电路的受控电位和电导率呈负相关。因此,可以通过调整其他两个因素来放大轻微的电导率变化。随着Ag @ Au的形成完全淬灭了鲁米诺的ECL发射,ECL发射恢复反映了阳极溶解的程度。通过监测在阴极上孵育细胞之前和之后的ECL恢复时间,由于电导率的细微差别,可以对少量细胞进行定量。这种方法显示出几个优点。首先,阳极溶解和ECL的结合显着提高了BPE设备的检测灵敏度。另外,该策略拓宽了BPE在癌细胞超灵敏监测中的应用,该研究被用于研究抗体和适体对MCF-7和A549的捕获效率。

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