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首页> 外文期刊>Electrochimica Acta >An electrochemiluminescence immunosensor based on ABEI and FCA functionalized Platinum@Copper hierarchical trigonal bipyramid nanoframes
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An electrochemiluminescence immunosensor based on ABEI and FCA functionalized Platinum@Copper hierarchical trigonal bipyramid nanoframes

机译:基于ABEI和FCA的功能化Platinum @ Copper分层三角双锥纳米框架的电化学发光免疫传感器

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摘要

In this work, an electrochemiluminescence (ECL) immunosensor for ultrasensitive detection of mucin-1 (MUC1) was designed with N-(aminobutyl)-N-(ethylisoluminol) (ABEI) and host-guest inclusion functionalized Platinum@Copperhierarchicaltrigonalbipyramidnanoframes(Pt@Cu HNFs) as signal label. At First, Pt@Cu HNFs were prepared to load abundant amine-modified beta-cyclodextrin (beta-CD) and luminophore ABEI via Pt-N bond. Based on the effect of host-guest recognition, ferrocenecarboxylic acid (FCA) as a catalyst of ABEI-H2O2 system was linked on the cavity of amine-modified beta-CD to form nanocomposite of Pt@Cu HNFs-ABEI-(beta-CD-FCA). Both Pt@Cu HNFs and FCA could catalyze H2O2 decomposition, which significantly enhanced the ECL intensity of ABEI-H2O2 system. Forthermore, simultaneously immobilizing ABEI and its catalyst FCA on Pt@Cu HNFs with good electrical conductivity could greatly increase the electron transfer efficiency in the ECL reaction, leading to a further signal amplification. Then, due to its good biocompatibility, large specific surface area and high luminous efficiency, the obtained Pt@Cu HNFs-ABEI-(beta-CD-FCA) could act as an ideal nanocarrier of detection antibody (Ab(2)). As a result, a desirable "signal-on" ECL immunosensor was proposed for the detection of MUC1 with a wide linear range from 1 x 10 (5) ng mL (1) to 10 ng mL (1) and a relatively low detection limit of 3.3 fg mL (1) (S N (1) = 3), making this approach hold great potential for protein analysis. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在这项工作中,设计了一种N-(氨基丁基)-N-(乙基异鲁米诺)(ABEI)和宿主-客体包含功能化的Platinum @ Copperhierarchicaltrigonalbipyramidnanoframes(Pt @ Cu)超灵敏检测粘蛋白1(MUC1)的电化学发光(ECL)免疫传感器。 HNFs)作为信号标签。首先,制备Pt @ Cu HNF,以通过Pt-N键负载大量胺修饰的β-环糊精(β-CD)和发光体ABEI。基于主客体识别的作用,将二茂铁羧酸(FCA)作为ABEI-H2O2体系的催化剂,连接到胺修饰的β-CD的空腔上,形成Pt @ Cu HNFs-ABEI-(β-CD)的纳米复合材料-FCA)。 Pt @ Cu HNFs和FCA均可催化H2O2分解,从而显着增强了ABEI-H2O2体系的ECL强度。此外,将ABEI及其催化剂FCA同时固定在具有良好电导率的Pt @ Cu HNFs上可以大大提高ECL反应中的电子转移效率,从而导致进一步的信号放大。然后,由于其良好的生物相容性,较大的比表面积和较高的发光效率,所得的Pt @ Cu HNFs-ABEI-(β-CD-FCA)可以作为检测抗体(Ab(2))的理想纳米载体。结果,提出了一种理想的“信号开启” ECL免疫传感器,用于检测MUC1,其线性范围从1 x 10(5)ng mL(1)到10 ng mL(1)较宽,并且检测限相对较低3.3 fg mL(1)(SN(1)= 3),使得这种方法在蛋白质分析中具有巨大的潜力。 (C)2016 Elsevier Ltd.保留所有权利。

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