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首页> 外文期刊>Journal of Electroanalytical Chemistry: An International Journal Devoted to All Aspects of Electrode Kinetics, Interfacial Structure, Properties of Electrolytes, Colloid and Biological Electrochemistry >A simple and label-free aptasensor based on amino group-functionalized gold nanocomposites-Prussian blue/carbon nanotubes as labels for signal amplification
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A simple and label-free aptasensor based on amino group-functionalized gold nanocomposites-Prussian blue/carbon nanotubes as labels for signal amplification

机译:基于氨基官能化的金纳米复合物-普鲁士蓝/碳纳米管作为信号放大标签的简单且无标签的适体传感器

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Herein, a novel label-free electrochemical aptasensor based on gold nanoparticles/Prussian blue/carbon nanotubes (AuNPs/PB/CNTs) for dopamine (DA) determination was reported. A special AuNPs/PB/CNTs nanocomposite which integrated the individual properties of each nanomaterial was utilized to improve the conductivity and performance characteristics of the biosensor as well as to increase the loading amount of aptamer. Chitosan was coated onto nanocomposite and provided a biocompatible interface with abundant-NH2 groups for the immobilization of DA-specific aptamer. Abundant-NH2 groups in nanocomposite made this platform as significant transduction by allowing phosphoramidate bonds formed between the amino group of chitosan and phosphate group of the aptamer at 5'end. To translate the binding events between aptamer and DA into the measurable electrochemical signal, the PB as signal probe was in situ introduced on the electrode surface, exhibiting well-defined peaks with good stability and reproducibility. The designed immobilized DA aptamer resulted in the formation of long tunnels on modified electrode-surface, while aptamer acted as gate of the tunnels. The aptamer gates were closed due to change in conformation of aptamer upon target (DA) binding, retarding the interfacial electron transfer reaction of the probe, resulting in the decrease of the electrochemical signal. Under optimized conditions, the proposed aptasensor showed good detection range from 0.5 to 50 nM with unprecedented detection limit of 200 pM. This aptasensor also exhibited good stability and high selectivity for DA detection without an interfering effect of some other compounds. (C) 2016 Elsevier B.V. All rights reserved.
机译:本文中,报道了一种基于金纳米颗粒/普鲁士蓝/碳纳米管(AuNPs / PB / CNT)的新型无标记电化学适体传感器,用于多巴胺(DA)测定。利用一种特殊的AuNPs / PB / CNTs纳米复合材料,该纳米复合材料整合了每种纳米材料的独特特性,从而改善了生物传感器的电导率和性能特征,并增加了适体的负载量。将壳聚糖包被在纳米复合材料上,并提供了具有丰富NH2基团的生物相容性界面,用于固定DA特异性适体。纳米复合材料中的大量NH2基团通过在壳聚糖的氨基和适体的磷酸基团的5'端形成氨基磷酸酯键,使该平台具有重要的转导作用。为了将适体和DA之间的结合事件转化为可测量的电化学信号,将PB作为信号探针原位引入电极表面,表现出具有良好稳定性和重现性的明确峰。设计的固定化DA适体导致在修饰的电极表面上形成长隧道,而适体充当隧道的门。由于在靶标(DA)结合时适体构象的变化,适体门被关闭,从而延迟了探针的界面电子转移反应,导致电化学信号的降低。在最佳条件下,拟议的适体传感器显示了0.5至50 nM的良好检测范围,前所未有的200 pM的检测限。该适体传感器还显示出良好的稳定性和对DA检测的高选择性,而没有其他化合物的干扰作用。 (C)2016 Elsevier B.V.保留所有权利。

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