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首页> 外文期刊>Analytical chemistry >Label-Free and Ultrasensitive Electrochemical Detection of Nucleic Acids Based on Autocatalytic and Exonuclease III-Assisted Target Recycling Strategy
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Label-Free and Ultrasensitive Electrochemical Detection of Nucleic Acids Based on Autocatalytic and Exonuclease III-Assisted Target Recycling Strategy

机译:基于自催化和核酸外切酶III辅助目标回收策略的核酸无标记超灵敏电化学检测

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摘要

In this work, a very simple, label-free, isothermal, and ultrasensitive electrochemical DNA biosensor has been developed on the basis of an autocatalytic and exonuclease III (Exo III)-assisted target recycling amplification strategy. A duplex DNA probe constructed by the hybridization of a quadruplex-forming oligomer with a molecular beacon is ingeniously designed and assembled on the electrode as recognition element. Upon sensing of the analyte nucleic acid, the strand of molecular beacon in the duplex DNA probe could be stepwise removed by Exo III accompanied by the releasing of target DNA and autonomous generation of new secondary target DNA fragment for the successive hybridization and cleavage process. Simultaneously, numerous quadruplexforming oligomers are liberated and folded into G-quadruplex-hemin complexes with the help of K~+ and hemin on the electrode surface to give a remarkable electrochemical response. Because of this autocatalytic target recycling amplification and the specifically catalyzed formation of G-quadruplex-hemin complexes, this newly designed protocol provides an ultrasensitive electrochemical detection of DNA down to the 10 fM level, can discriminate mismatched DNA from perfectly matched target DNA, and holds a great potential for early diagnosis in gene-related diseases. It further could be developed as a universal protocol for the detection of various DNA sequences and may be extended for the detection of aptamer-binding molecules.
机译:在这项工作中,基于自动催化和核酸外切酶III(Exo III)辅助的靶标回收扩增策略,已经开发了一种非常简单,无标记,等温和超灵敏的电化学DNA生物传感器。通过将形成四链体的低聚物与分子信标杂交而构建的双链体DNA探针被巧妙地设计并组装在电极上,作为识别元件。感测到分析物核酸后,双链DNA探针中的分子信标链可通过Exo III逐步去除,并释放靶DNA,并自动生成新的次级靶DNA片段,以进行后续的杂交和切割过程。同时,在电极表面上的K +和血红素的帮助下,释放出许多形成四链的低聚物并折叠成G-四链-血红素复合物,从而产生显着的电化学反应。由于这种自动催化的靶标循环扩增作用以及G-四链体-血红素复合物的特异性催化形成,该新设计的方案可提供超低灵敏度的电化学检测,可检测低至10 fM的DNA,可将错配的DNA与完全匹配的靶标DNA区分,并保持基因相关疾病的早期诊断潜力巨大。它可以进一步发展为检测各种DNA序列的通用协议,并且可以扩展为检测适体结合分子。

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