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Electrochemical Biosensor for Detection of Adenosine Based on Structure-Switching Aptamer and Amplification with Reporter Probe DNA Modified Au Nanoparticles

机译:基于结构转换适体的电化学生物传感器检测腺苷,并用Reporter Probe DNA修饰的Au纳米粒子进行扩增。

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摘要

In the present study, an electrochemical sensing strategy for highly sensitive detection of small molecules was developed based on switching structures of aptamers from DNA/DNA duplex to DNA/target complex. A gold electrode was first modified with gold nanoparticles (AuNPs), and thiolated capture probe was immobilized onto the electrode via sulfur-gold affinity. Then, a "sandwich-type" strategy was employed, which involved a linker DNA containing antiadenosine aptamer sequence and reporter DNA loaded on AuNPs. In the presence of adenosine, the aptamer part bound with adenosine and folded to the complex structure. As a result, the reporter probes together with AuNPs were released into solution and reduced a decrease in peak current. With the enhancement effect of AuNPs, a detection limit as low as 1.8 X 10~(-10) M for adenosine was achieved. The sensor exhibited excellent selectivity against other nucleosides and could be used to detect adenosine from real human serum samples.
机译:在本研究中,基于适体从DNA / DNA双链体到DNA /靶标复合物的转换结构,开发了一种用于高灵敏度检测小分子的电化学传感策略。首先用金纳米颗粒(AuNPs)修饰金电极,然后通过硫金亲和力将硫醇化捕获探针固定在电极上。然后,采用“三明治型”策略,该策略涉及含有抗腺苷适体序列的接头DNA和负载在AuNPs上的报告DNA。在腺苷存在下,适体部分与腺苷结合并折叠成复杂结构。结果,报告探针与AuNP一起被释放到溶液中并减少了峰值电流的减小。利用AuNPs的增强作用,腺苷的检出限低至1.8 X 10〜(-10)M。该传感器对其他核苷显示出极好的选择性,可用于从真实的人血清样品中检测腺苷。

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