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Electrochemical Signal Amplification for Immunosensor Based on 3D Interdigitated Array Electrodes

机译:基于3D叉指阵列电极的免疫传感器电化学信号放大

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We devised an electrochemical redox cycling based on three-dimensional interdigitated array (3D IDA) electrodes for signal amplification to enhance the sensitivity of chip-based immunosensors. The 3D IDA consists of two closely spaced parallel indium tin oxide (ITO) electrodes that are positioned not only on the bottom but also the ceiling, facing each other along a microfluidic channel. We investigated the signal intensities from various geometric configurations: Open-2D IDA, Closed-2D IDA, and 3D IDA through electrochemical experiments and finite-element simulations. The 3D IDA among the four different systems exhibited the greatest signal amplification resulting from efficient redox cycling of electroactive species confined in the microchannel so that the faradaic current was augmented by a factor of ~100. We exploited the enhanced sensitivity of the 3D IDA to build up a chronocoulometric immunosensing platform based on the sandwich enzyme-linked immunosorbent assay (ELISA) protocol. The mouse IgGs on the 3D IDA showed much lower detection limits than on the Closed-2D IDA. The detection limit for mouse IgG measured using the 3D IDA was ~10 fg/mL, while it was ~100 fg/mL for the Closed-2D IDA. Moreover, the proposed immunosensor system with the 3D IDA successfully worked for clinical analysis as shown by the sensitive detection of cardiac troponin I in human serum down to 100 fg/mL.
机译:我们设计了一种基于三维交指阵列(3D IDA)电极的电化学氧化还原循环,用于信号放大,以增强基于芯片的免疫传感器的灵敏度。 3D IDA由两个紧密间隔的平行铟锡氧化物(ITO)电极组成,这些电极不仅位于底部,而且位于天花板上,沿着微流体通道彼此相对。我们通过电化学实验和有限元模拟研究了来自各种几何结构的信号强度:开放2D IDA,封闭2D IDA和3D IDA。四个不同系统中的3D IDA表现出最大的信号放大,这归因于微通道内电活性物质的有效氧化还原循环,因此法拉第电流增加了约100倍。我们利用3D IDA的增强的敏感性来建立基于三明治酶联免疫吸附测定(ELISA)方案的计时库仑免疫传感平台。 3D IDA上的小鼠IgG的检测限比Closed-2D IDA上的低。使用3D IDA测量的小鼠IgG的检出限为〜10 fg / mL,而对于封闭2D IDA的检测限为〜100 fg / mL。此外,所提出的带有3D IDA的免疫传感器系统成功地用于临床分析,如对人血清中低至100 fg / mL的心肌肌钙蛋白I的灵敏检测所示。

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