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Ultrasensitive Solution-Phase Electrochemical Molecular Beacon-Based DNA Detection with Signal Amplification by Exonuclease III-Assisted Target Recycling

机译:基于核酸外切酶III辅助靶标回收的信号放大超灵敏的基于溶液相电化学分子信标的DNA检测

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摘要

Taking advantage of the preferential exodeoxyribonuclease activity of exonuclease III in combination with the difference in diffusivity between an oligonucleotide and a mononucleotide toward a negatively charged ITO electrode, a highly sensitive and selective electrochemical molecular beacon (eMB)-based DNA sensor has been developed. This sensor realizes electrochemical detection of DNA in a homogeneous solution, with sensing signals amplified by an exonuclease III-based target recycling strategy. A hairpin-shaped oligonucleotide containing the target DNA recognition sequence, with a methylene blue tag close to the 3' terminus, is designed as the signaling probe. Hybridization with the target DNA transforms the probe's exonuclease III-inactive protruding 3' terminus into an exonuclease III-active blunt end, triggering the digestion of the probe into mononucleotides including a methylene blue-labeled electro-active mononucleotide (eNT). The released eNT, due to its less negative charge and small size, diffuses easily to the negative ITO electrode, resulting in an increased electrochemical signal. Meanwhile, the intact target DNA returns freely to the solution and hybridizes with other probes, releasing multiple eNTs and thereby further amplifies the electrochemical signal. This new immobilization-free, signal-amplified electrochemical DNA detection strategy shows great potential to be integrated in portable and cost-effective DNA sensing devices.
机译:充分利用核酸外切酶III的优先外切脱氧核糖核酸酶活性与寡核苷酸和单核苷酸向带负电的ITO电极的扩散性差异相结合的优势,开发出了一种基于高灵敏度和选择性的电化学分子信标(eMB)的DNA传感器。该传感器实现了在均质溶液中对DNA的电化学检测,并通过基于核酸外切酶III的靶标回收策略放大了检测信号。设计一个包含目标DNA识别序列的发夹状寡核苷酸,该亚甲基蓝标签靠近3'末端,作为信号探针。与靶标DNA的杂交将探针的核酸外切酶III无效的突出3'末端转化为核酸外切酶III活性的平末端,从而触发了将探针消化成包含亚甲基蓝标记的电活性单核苷酸(eNT)的单核苷酸。释放的eNT由于其负电荷少且尺寸小,易于扩散至ITO负电极,从而导致电化学信号增强。同时,完整的靶DNA自由返回溶液并与其他探针杂交,释放出多个eNT,从而进一步放大了电化学信号。这种无固定化,信号放大的新型电化学DNA检测策略显示出将其集成到便携式且经济高效的DNA传感设备中的巨大潜力。

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