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Signal-off Electrochemiluminescence Biosensor Based on Phi29 DNA Polymerase Mediated Strand Displacement Amplification for MicroRNA Detection

机译:基于Phi29 DNA聚合酶介导的链位移置换的信号关闭型电化学发光生物传感器,用于MicroRNA检测

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摘要

A target induced cycling strand displacement amplification (SDA) mediated by phi29 DNA polymerase (phi29) was first investigated and applied in a signal-off electrochemiluminescence (ECL) biosensor for microRNA (miRNA) detection. Herein, the target miRNA triggered the phi29-mediated SDA which could produce amounts of single-stranded DNA (assistant probe) with accurate and comprehensive nucleotide sequence. Then, the assistant probe hybridized with the capture probe and the ferrocene-labeled probe (Pc-probe) to form a ternary "Y" structure for ECL signal quenching by ferrocene. Therefore, the ECL intensity would decrease with increasing concentration of the target miRNA, and the sensitivity of biosensor would be promoted on account of the efficient signal amplification of the target induced cycling reaction. Besides, a self-enhanced Ru(II) ECL system was designed to obtain a stable and strong initial signal to further improve the sensitivity. The ECL assay for miRNA-21 detection is developed with excellent sensitivity of a concentration variation from 10 aM to 1.0 pM and limit of detection down to 3.3 aM.
机译:首先研究了由phi29 DNA聚合酶(phi29)介导的靶标诱导的自行车链置换扩增(SDA),并将其应用于信号传递电化学发光(ECL)生物传感器中,用于microRNA(miRNA)检测。在本文中,目标miRNA触发了phi29介导的SDA,它可以产生一定数量的具有准确而全面的核苷酸序列的单链DNA(辅助探针)。然后,辅助探针与捕获探针和二茂铁标记的探针(Pc-probe)杂交,形成三元“ Y”结构,用二茂铁淬灭ECL信号。因此,ECL强度将随着靶miRNA浓度的增加而降低,并且由于靶诱导的循环反应的有效信号放大,生物传感器的灵敏度将得到提高。此外,还设计了一种自增强Ru(II)ECL系统,以获得稳定而强大的初始信号,从而进一步提高了灵敏度。开发了用于miRNA-21检测的ECL分析,具有从10 aM到1.0 pM的浓度变化和低至3.3 aM的检测限的出色灵敏度。

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