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基于纳米线的无标记免疫传感器:直接将 PSA 抗体掺入到电聚合的聚吡咯中。

A nanowire-based label-free immunosensor: direct incorporation of a PSA antibody in electropolymerized polypyrrole.

机构信息

New Experimental Therapeutics Branch, National Cancer Center, 111 Jungbalsan-ro, Ilsandong-gu, Goyang, Gyeonggi-do 410-769, South Korea.

New Experimental Therapeutics Branch, National Cancer Center, 111 Jungbalsan-ro, Ilsandong-gu, Goyang, Gyeonggi-do 410-769, South Korea.

出版信息

Biosens Bioelectron. 2014 Jul 15;57:157-61. doi: 10.1016/j.bios.2014.02.016. Epub 2014 Feb 19.

Abstract

We have suggested a novel method for the preparation of a label-free electrochemical immunosensor for the detection of prostate-specific antigen (PSA) as target marker for prostate cancer. Direct incorporation of PSA antibody (anti-PSA) into polypyrrole (Ppy) electropolymerized on a three-dimensional Au nanowire array has resulted in enhanced molecular interactions, ultimately leading to improved sensing performance. The electrochemical performance of the nanowire-based immunosensor array were characterized by (1) differential pulse voltammetry (DPV) to evaluate the specific recognition of PSA, (2) impedance and cyclic voltammetry to observe surface resistance and electroactivity, and (3) scanning electron microscopy (SEM) to demonstrate the three-dimensional architecture. The vertically-aligned geometric organization of Ppy provides a novel platform to improve the anti-PSA loading capacity. Overall, enhanced electrochemical performance of the proposed immunosensor has been demonstrated by its linear response over PSA concentrations ranging from 10 fg mL(-1) to 10 ng mL(-1) and a detection limit of 0.3 fg mL(-1), indicating that the strategy proposed here has great potential for clinical applications.

摘要

我们提出了一种新颖的方法,用于制备无标记电化学免疫传感器,以检测前列腺特异性抗原 (PSA) 作为前列腺癌的标志物。将 PSA 抗体 (抗 PSA) 直接掺入在三维金纳米线阵列上电聚合的聚吡咯 (Ppy) 中,导致分子相互作用增强,最终改善了传感性能。通过 (1) 差分脉冲伏安法 (DPV) 评估 PSA 的特异性识别,(2) 阻抗和循环伏安法观察表面电阻和电活性,以及 (3) 扫描电子显微镜 (SEM) 来证明三维结构,对纳米线基免疫传感器阵列的电化学性能进行了表征。Ppy 的垂直对准几何组织为提高抗 PSA 负载能力提供了新的平台。总体而言,所提出的免疫传感器的电化学性能得到了增强,其线性响应范围为 10 fg mL(-1) 至 10 ng mL(-1),检测限为 0.3 fg mL(-1),表明这里提出的策略具有很大的临床应用潜力。

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