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Label-free Capacitive Diagnostics: Exploiting Local Redox Probe State Occupancy

机译:无标签电容诊断:利用本地氧化还原探针状态占用率

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An electrode surface confined redox group contributes to a substantial potential-dependent interfacial charging that can be sensitively probed and frequency-resolved by impedance-derived capacitance spectroscopy. In utilizing the sensitivity of this charging fingerprint to redox group environment, one can seek to generate derived sensory configurations. Exemplified here through the generation of mixed molecular films comprising ferrocene and antibody receptors to two clinically important targets, the label-free methodology is able to report on human prostatic acid phosphatase (PAP), a tumor marker, with a limit of detection of 11 pM and C-reactive protein with a limit of detection of 28 pM. Both assays exhibit linear ranges encompassing those of clinical value.
机译:电极表面受限制的氧化还原基团有助于产生大量依赖于电位的界面电荷,可以通过阻抗衍生的电容光谱法灵敏地探测和频率分辨界面电荷。利用这种充电指纹对氧化还原基团环境的敏感性,人们可以寻求产生派生的感觉构型。通过生成包含二茂铁和针对两个临床上重要靶标的抗体受体的混合分子膜在此得到例证,该无标记方法能够报告肿瘤标志物人前列腺酸性磷酸酶(PAP),检测限为11 pM和C反应蛋白,检出限为28 pM。两种测定均显示出涵盖临床价值的线性范围。

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