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Electrochemical detection of aqueous Ag+ based on Ag+-assisted ligation reaction

机译:基于Ag +辅助连接反应的Ag +水溶液电化学检测

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摘要

In this work, a novel strategy to fabricate a highly sensitive and selective biosensor for the detection of Ag+ is proposed. Two DNA probes are designed and modified on a gold electrode surface by gold-sulfur chemistry and hybridization. In the presence of Ag+, cytosine-Ag+-cytosine composite forms and facilitates the ligation event on the electrode surface, which can block the release of electrochemical signals labeled on one of the two DNA probes during denaturation process. Ag+ can be sensitively detected with the detection limit of 0.1 nM, which is much lower than the toxicity level defined by U.S. Environmental Protection Agency. This biosensor can easily distinguish Ag+ from other interfering ions and the performances in real water samples are also satisfactory. Moreover, the two DNA probes are designed to contain the recognition sequences of a nicking endonuclease, and the ligated DNA can thus be cleaved at the original site. Therefore, the electrode can be regenerated, which allows the biosensor to be reused for additional tests.
机译:在这项工作中,提出了一种新颖的策略来制造一种高灵敏度和选择性的生物传感器,用于检测Ag + 。通过金硫化学和杂交技术,在金电极表面设计并修饰了两种DNA探针。在存在Ag + 的情况下,胞嘧啶-Ag + -胞嘧啶复合物形成并促进电极表面上的连接事件,从而阻止了标记在一个电极上的电化学信号的释放。变性过程中两个DNA探针的序列。可以灵敏地检测到Ag + ,其检测限为0.1 nM,远低于美国环境保护局规定的毒性水平。这种生物传感器可以很容易地将Ag + 与其他干扰离子区分开,并且在真实水样中的性能也令人满意。而且,两个DNA探针被设计成包含切口核酸内切酶的识别序列,因此可以在原始位点切割连接的DNA。因此,电极可以再生,这使得生物传​​感器可以重新用于其他测试。

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