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Highly sensitive electrochemical detection of mercuric ions based on sequential nucleic acid amplification and guanine nanowire formation

机译:基于顺序核酸扩增和鸟嘌呤纳米线形成的汞离子高敏感的电化学检测

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摘要

The selective and sensitive detection of mercuric ions (Hg2+) is of great significance in environmental protection and disease prevention. By integrating target induced strand displacement amplification (SDA) and metal ion-dependent DNAzyme cyclic amplification to grow guanine nanowires (G-nanowires) as the signal output component, we demonstrate here a label-free and sensitive strategy for Hg2+ detection. The target induced SDA can amplify a large amount of Mg2+-dependent enzymatic sequences, which can be further hybridized with a hairpin-structured substrate that contains a G-quadruplex sequence to form Mg2+-dependent DNAzymes. In the presence of Mg2+, the Mg2+-dependent DNAzymes exhibit high catalytic activity and excellent cleavage specificity toward the substrate sequences, releasing the enzymatic sequences to trigger another cleavage cycle and leaving the G-quadruplex fragment on the electrode surface for the formation of G-quadruplex/hemin repetitive units. With the enzyme/DNAzyme for signal amplification and the G-quadruplex/hemin for signal generation, the electrochemical assay for Hg2+ detection shows excellent sensitivity for a concentration variation from 0.2 pM to 100 nM with a detection limit of 0.097 pM and is successfully used in the direct detection of real water samples with high sensitivity and selectivity.
机译:对环境保护和疾病预防的选择性和敏感性检测具有重要意义。通过将靶诱导的链位移扩增(SDA)和金属离子依赖性DNAzyme循环扩增相积分以生长鸟嘌呤纳米线(G纳米线)作为信号输出组分,我们在此证明了HG2 +检测的无标记和敏感策略。靶诱导的SDA可以扩增大量的Mg2 +依赖性酶序列,其可以与含有G-四丙次序列的发夹结构底物进一步杂交,以形成Mg2 +依赖性的DNazymes。在存在Mg2 +的情况下,Mg2 +依赖性DNazymes表现出高催化活性和朝向基材序列的优异的切割特异性,释放酶序列以引发另一种裂解循环并将G-Quadfleple片段留在电极表面上以形成G-四逆转/血红素重复单元。对于用于信号扩增的酶/二氮杂物和用于信号产生的G-Quadflex /血红素,HG2 +检测的电化学测定显示出0.2pM至100nm的浓度变化的优异敏感性,检测限为0.097μm并成功使用具有高灵敏度和选择性的真实水样的直接检测。

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  • 来源
    《Analytical methods》 |2017年第37期|共6页
  • 作者单位

    Chongqing Univ Arts &

    Sci Chongqing Key Lab Environm Mat &

    Remediat Technol Chongqing 402160 Peoples R China;

    Chongqing Univ Arts &

    Sci Chongqing Key Lab Environm Mat &

    Remediat Technol Chongqing 402160 Peoples R China;

    Chongqing Univ Arts &

    Sci Chongqing Key Lab Environm Mat &

    Remediat Technol Chongqing 402160 Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分析化学;
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