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DNA Hybridization Sensors Based on Electrochemical Impedance Spectroscopy as a Detection Tool

机译:基于电化学阻抗谱的DNA杂交传感器作为检测工具

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摘要

Recent advances in label free DNA hybridization sensors employing electrochemical impedance spectroscopy (EIS) as a detection tool are reviewed. These sensors are based on the modulation of the blocking ability of an electrode modified with a probe DNA by an analyte, i.e., target DNA. The probe DNA is immobilized on a self-assembled monolayer, a conducting polymer film, or a layer of nanostructures on the electrode such that desired probe DNA would selectively hybridize with target DNA. The rate of charge transfer from the electrode thus modified to a redox indicator, e.g., [Fe(CN)6]3−/4−, which is measured by EIS in the form of charge transfer resistance (Rct), is modulated by whether or not, as well as how much, the intended target DNA is selectively hybridized. Efforts made to enhance the selectivity as well as the sensitivity of DNA sensors and to reduce the EIS measurement time are briefly described along with brief future perspectives in developing DNA sensors.
机译:综述了采用电化学阻抗谱(EIS)作为检测工具的无标记DNA杂交传感器的最新进展。这些传感器基于被分析物即靶DNA对用探针DNA修饰的电极的阻断能力的调节。探针DNA固定在电极上的自组装单层,导电聚合物膜或纳米结构层上,以使所需的探针DNA与目标DNA选择性杂交。电荷从这样修饰的电极转移到氧化还原指示剂(例如[Fe(CN)6] 3-4 / )的速率,该速率通过EIS以电荷转移电阻的形式测量( Rct)是通过是否选择性杂交预期的靶DNA以及调控多少来调节的。简要介绍了为提高DNA传感器的选择性和灵敏度以及减少EIS测量时间而做出的努力,以及对开发DNA传感器的未来展望。

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