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Electrochemical Detection of miRNA Combining T7 Exonuclease-Assisted Cascade Signal Amplification and DNA-Templated Copper Nanoparticles

机译:MiRNA的电化学检测结合T7外切核酸酶辅助级联信号放大和DNA模板铜纳米粒子的电化学检测

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摘要

miRNA has been serving as an ideal biomarker for diagnosis, prognosis, and therapy of many severe diseases. In this study, we have developed an amplified electrochemical method for miRNA detection using T7 exonuclease (exo) and copper nanoparticles (CuNPs). Double-stranded DNA modified on the electrode surface is used as the template for in situ synthesis of CuNPs as excellent electrochemical signal sources. Two cycles of DNA cleavage reactions are carefully designed according to the catalytic activity of T7 exo and occur in the solution and at the electrode surface, respectively. The two cycles are integrated for cascade signal amplification. Briefly, target miRNA triggers the first cycle and its product triggers the second cycle, which destroys the template on the electrode for CuNPs synthesis. As a result, electrochemical signal is decreased and can be used to reflect the level of initial miRNA. Due to T7 exoassisted cascade signal amplification and intense electrochemical responses from CuNPs, the biosensor is developed with excellent sensitivity. A linear range from 10~(–16) to 10~(–13) M and the limit of detection as low as 4.5 × 10~(–17) M are achieved. Meanwhile, it shows the capability of discriminating single base mismatch and exhibits the eligibility in the analysis of miRNA extracted from cells. Therefore, it has great potential for biomedical research and disease management.
机译:MiRNA一直作为理想的生物标志物,用于诊断,预后和许多严重疾病的治疗。在这项研究中,我们使用T7外切核酸酶(EXO)和铜纳米粒子(CUNP)开发了一种用于miRNA检测的扩增电化学方法。在电极表面上修饰的双链DNA用作原位合成CUNP的模板,作为优异的电化学信号源。根据T7外部的催化活性,分别在溶液和电极表面发生在溶液和电极表面上进行两次DNA裂解反应循环。为级联信号放大集成了两个周期。简而言之,靶miRNA触发第一个循环,其产品触发第二个循环,这会破坏电极上的模板以进行CUNPS合成。结果,电化学信号降低,可用于反映初始miRNA的水平。由于T7 exoAsissed级联信号放大和来自CUNP的强烈电化学响应,生物传感器具有出色的敏感性。从10〜(-16)至10〜(-13)m的线性范围和检测限低至4.5×10〜(-17)m。同时,它显示了鉴别单个基础失配的能力,并在细胞中提取的miRNA分析中表现出可靠性。因此,它对生物医学研究和疾病管理具有巨大潜力。

著录项

  • 来源
    《Analytical chemistry》 |2018年第18期|共7页
  • 作者单位

    Suzhou Institute of Biomedical Engineering and Technology Chinese Academy of Sciences;

    Suzhou Institute of Biomedical Engineering and Technology Chinese Academy of Sciences;

    Department of Laboratory Science the Second Affiliated Hospital of Guangzhou University of Chinese Medicine;

    Suzhou Institute of Biomedical Engineering and Technology Chinese Academy of Sciences;

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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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