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NanoMIP-based approach for the suppression of interference signals in electrochemical sensors

机译:基于NanoMip的抑制电化学传感器干扰信号的方法

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摘要

Herein, we describe the use of molecularly imprinted nanoparticles (nanoMIPs) as sequestering (masking) agents, to suppress the signal coming from interfering molecules and facilitate the detection of the target analyte. In this work, ascorbic acid was used as a model interfering molecule in dopamine electrochemical detection. NanoMIPs selective for ascorbic acid demonstrated to be capable of binding and suppressing electrochemical signal from ascorbic acid, enabling the detection of dopamine in the range 100-500 nM, without any need for sample pre-treatment. Tests in real samples (spiked human serum) were also carried out successfully. Due to the generic nature of the imprinting process, the proposed approach can be tailored to suppress potentially any interfering species, by simply varying the type of nanoMIPs used.
机译:在此,我们描述了使用分子印迹纳米颗粒(NanoMIPS)作为螯合(掩蔽)剂,以抑制来自干扰分子的信号,并促进目标分析物的检测。 在这项工作中,抗坏血酸用作多巴胺电化学检测中的模型干扰分子。 NanoMips为抗坏血酸选择性能够能够与抗坏血酸结合和抑制电化学信号,从而能够检测100-500nm范围内的多巴胺,而无需样品预处理。 还成功进行了真实样品(尖刺人血清)的试验。 由于印迹过程的通用性质,通过简单地改变所用的纳米分量的类型,可以根据所提出的方法进行定制以抑制可能的任何干扰物种。

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