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Electrochemical interrogation of conformational changes as a reagentless method for the sequence-specific detection of DNA

机译:无需化学试剂即可对构象变化进行电化学询问 DNA序列特异性检测的方法

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摘要

We report a strategy for the reagentless transduction of DNA hybridization into a readily detectable electrochemical signal by means of a conformational change analogous to the optical molecular beacon approach. The strategy involves an electroactive, ferrocene-tagged DNA stem–loop structure that self-assembles onto a gold electrode by means of facile gold-thiol chemistry. Hybridization induces a large conformational change in this surface-confined DNA structure, which in turn significantly alters the electron-transfer tunneling distance between the electrode and the redoxable label. The resulting change in electron transfer efficiency is readily measured by cyclic voltammetry at target DNA concentrations as low as 10 pM. In contrast to existing optical approaches, an electrochemical DNA (E-DNA) sensor built on this strategy can detect femtomoles of target DNA without employing cumbersome and expensive optics, light sources, or photodetectors. In contrast to previously reported electrochemical approaches, the E-DNA sensor achieves this impressive sensitivity without the use of exogenous reagents and without sacrificing selectivity or reusability. The E-DNA sensor thus offers the promise of convenient, reusable detection of picomolar DNA.
机译:我们报告了一种通过类似于光学分子信标方法的构象变化将DNA杂交转化为易于检测的电化学信号的无试剂转导策略。该策略涉及一种电活性的,带有二茂铁标签的DNA茎环结构,该结构通过简便的金硫醇化学方法自组装到金电极上。杂交会在这种表面受限的DNA结构中引起较大的构象变化,进而显着改变电极与可氧化标记之间的电子转移隧穿距离。通过循环伏安法在低至10 pM的目标DNA浓度下即可轻松测量出电子转移效率的变化。与现有的光学方法相比,基于这种策略的电化学DNA(E-DNA)传感器无需使用笨重且昂贵的光学器件,光源或光电探测器即可检测目标DNA的飞沫。与以前报道的电化学方法相比,E-DN​​A传感器在不使用外源试剂且不牺牲选择性或可重复使用性的情况下实现了令人印象深刻的灵敏度。因此,E-DN​​A传感器有望提供方便,可重复使用的皮摩尔DNA检测。

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