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首页> 外文期刊>Mikrochimica Acta: An International Journal for Physical and Chemical Methods of Analysis >Enzyme-free electrochemical detection of microRNA-21 using immobilized hairpin probes and a target-triggered hybridization chain reaction amplification strategy
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Enzyme-free electrochemical detection of microRNA-21 using immobilized hairpin probes and a target-triggered hybridization chain reaction amplification strategy

机译:使用固定的发夹探针和靶标触发的杂交链反应扩增策略对microRNA-21进行无酶电化学检测

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摘要

We describe a sensitive enzyme-free bioassay for the determination of microRNA-21. It is based on a combination of target-triggered hybridization chain reaction, tagging with CdTe quantum dots (QDs), and anodic stripping voltammetry. Firstly, a thiolated capture hairpin probe SH-HP1 was immobilized on the surface of a gold electrode. HP1 unfolds in the presence of microRNA-21. If hairpin probe 2 (HP2) is present, a HP1-HP2 complex will be formed which possesses an exposed stem of HP2, and microRNA is released in parallel. The released microRNA-21 triggers a hybridization chain reaction and this leads to form an exposed DNA segment of HP2 and cycle use microRNA-21. With the aid of assistant DNA A1 and A2, the exposed DNA segment of HP2 progressed to a long double strand. The strand is rich in CdTe QDs with the help of QDs-A1. Then, the attached QDs were dissolved with HNO3 to give dissolved Cd(II) ions. Finally, the corresponding electrochemical current response of Cd(II) is monitored by anodic stripping voltammetry and used to quantify the concentration of microRNA-21. More microRNA-21 participated in this reaction increases the number of CdTe QDs, which results in increased electrochemical current. Thus, an ultrasensitive detection of microRNA-21 is accomplished by anodic stripping voltammetry. This gene assay displays a detection limit as low as 33 aM. It can discriminate between complementary DNA sequence and single-base mismatched DNA, indicating its high specificity.
机译:我们描述了一种敏感的无酶生物测定法,用于测定microRNA-21。它基于目标触发的杂交链反应,使用CdTe量子点(QD)标记和阳极溶出伏安法的组合。首先,将硫醇化的捕获发夹探针SH-HP1固定在金电极的表面上。 HP1在存在microRNA-21的情况下展开。如果存在发夹探针2(HP2),将形成HP1-HP2复合物,该复合物具有HP2的暴露茎,并且会并行释放microRNA。释放的microRNA-21触发杂交链反应,这导致形成HP2的DNA暴露片段并循环使用microRNA-21。借助于辅助DNA A1和A2,HP2的暴露DNA片段发展成长双链。借助QDs-A1,该链富含CdTe QD。然后,将附着的QD用HNO3溶解,得到溶解的Cd(II)离子。最后,通过阳极溶出伏安法监测相应的Cd(II)电化学电流响应,并用于定量microRNA-21的浓度。更多的microRNA-21参与该反应会增加CdTe QD的数量,从而导致电化学电流增加。因此,通过阳极溶出伏安法可完成microRNA-21的超灵敏检测。该基因检测显示出低至33 aM的检测限。它可以区分互补的DNA序列和单碱基错配的DNA,表明其高特异性。

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