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Ultrasensitive Aptamer-Based Multiplexed Electrochemical Detection by Coupling Distinguishable Signal Tags with Catalytic Recycling of DNase I

机译:基于可分辨信号标签与DNase I催化循环的偶联的超灵敏适配体多路电化学检测

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摘要

This work reports an aptamer-based, disposable, and multiplexed sensing platform for simultaneous electrochemical determination of small molecules, employing adenosine triphosphate (ATP) and cocaine as the model target analytes. The multiplexed sensing strategy is based on target-induced release of distinguishable redox tag-conjugated aptamers from a magnetic graphene platform. The electronic signal of the aptasensors could be further amplified by coupling DNase I with catalytic recycling of self-produced reactants. The assay was based on the change in the current at the various peak potentials in the presence of the corresponding signal tags. Experimental results revealed that the multiplexed electrochemical aptasensor enabled the simultaneous monitoring of ATP and cocaine in a single run with wide working ranges and low detection limits (LODs: 0.1 pM for ATP and 1.5 pM for cocaine). This concept offers promise for rapid, simple, and cost-effective analysis of biological samples.
机译:这项工作报告了基于适体的,一次性的和多重的传感平台,用于同时电化学测定小分子,采用三磷酸腺苷(ATP)和可卡因作为模型目标分析物。多重感测策略基于目标诱导的从磁性石墨烯平台释放可区分的氧化还原标签共轭的适体。适体传感器的电子信号可通过将DNase I与自身产生的反应物的催化循环耦合而进一步放大。该测定是基于在存在相应信号标签的情况下各种峰值电势下电流的变化。实验结果表明,多重电化学适体传感器可在较宽的工作范围和较低的检测限(LOD:ATP为0.1 pM,可卡因为1.5 pM)下一次运行同时监测ATP和可卡因。该概念为快速,简单和经济高效的生物样品分析提供了希望。

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