首页> 外文期刊>The Analyst: The Analytical Journal of the Royal Society of Chemistry: A Monthly International Publication Dealing with All Branches of Analytical Chemistry >Nicking endonuclease-assisted recycling of target-aptamer complex for sensitive electrochemical detection of adenosine triphosphate
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Nicking endonuclease-assisted recycling of target-aptamer complex for sensitive electrochemical detection of adenosine triphosphate

机译:缺口核酸内切酶辅助回收的靶-适体复合物,用于灵敏的电化学检测三磷酸腺苷

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摘要

An electrochemical biosensor was developed for the detection of adenosine triphosphate (ATP) based on target-induced conformation switching and nicking endonuclease (NEase)-assisted signal amplification. The electrochemical biosensor was constructed by base pairing and target recognition. After capture DNA hybridized with the gold electrode, a significant current of Methylene Blue (MB) was obtained by differential pulse voltammetry. In the presence of ATP, the hairpin DNA formed a G-quadruplex structure due to the specific recognition between hairpin DNA and ATP. Then the exposed part of the targetaptamer complex hybridized with the 3'-terminus of capture DNA to form a specific nicking site for Nb. BbvCI, which led to NEase-assisted target-aptamer complex recycling. The released target-aptamer complex hybridized with the remaining capture DNA. Nb. BbvCI-assisted target-aptamer complex recycling caused the continuous cleavage of capture DNA with MB at its 5'-terminus, resulting in release of a certain amount of DNA fragment labeled with MB. Then the current value decreased significantly. The reduced current showed a linear range from 10 nM to 1 mu M with a limit of detection as low as 3.4 nM. Furthermore, the proposed strategy can be used for the detection of similar substances.
机译:电化学生物传感器的开发是基于靶标诱导的构象转换和切口内切核酸酶(NEase)辅助的信号放大来检测三磷酸腺苷(ATP)。通过碱基配对和目标识别构建了电化学生物传感器。在捕获的金与金电极杂交后,通过差动脉冲伏安法获得了大量的亚甲基蓝(MB)电流。在ATP存在下,由于发夹DNA和ATP之间的特异性识别,发夹DNA形成了G-四链体结构。然后,靶适体复合物的暴露部分与捕获DNA的3'末端杂交,形成Nb的特定切口位点。 BbvCI,这导致了NEase辅助的目标-适体复合物的回收。释放的靶-适体复合物与剩余的捕获DNA杂交。 Nb。 BbvCI辅助的靶-适体复合物的再循环导致捕获的DNA在其5'末端被MB连续裂解,导致释放出一定量的被MB标记的DNA片段。然后电流值显着下降。降低的电流显示出从10 nM到1μM的线性范围,检测极限低至3.4 nM。此外,所提出的策略可用于检测相似物质。

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