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首页> 外文期刊>Analytical methods >A novel electrochemical immunosensor for ochratoxin A with hapten immobilization on thionine/gold nanoparticle modified glassy carbon electrode
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A novel electrochemical immunosensor for ochratoxin A with hapten immobilization on thionine/gold nanoparticle modified glassy carbon electrode

机译:一种半抗原固定在硫氨酸/金纳米粒子修饰的玻碳电极上的曲霉毒素A新型电化学免疫传感器

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A novel electrochemical sensor was developed based on the combination of polythionine (PTH)/gold nanoparticle (nanoAu) composite film and enzyme catalysis amplification for the indirect competitive immunoassay of ochratoxin A (OTA). The sensing substrate was fabricated using a glassy carbon electrode (GCE) modified with an electropolymerized film of polythionine, which then mediated the self-assembly of nanoAu monolayer. After OTAa€“ovalbumin conjugates (OTAa€“OVA) were adsorbed onto the surface-confined gold nanoparticles, the analyte OTA in sample solution competed for the limited anti-OTA monoclonal antibodies with the immobilized hapten. Alkaline phosphatase (ALP)-labeled horse anti-mouse IgG antibodies were selectively bound onto the surface of the electrode, which afforded an indicator for OTA concentration in the sample. Under the optimal conditions, electrochemical response arising from the oxidation of enzymatic product of 1-naphthyl phosphate was observed to be inversely proportional to OTA concentration in the range from 1 ng mLa?’1 to 1000 ng mLa?’1 with a detection limit as low as 0.2 ng mLa?’1. In addition, good reproducibility, high selectivity, sensitivity and stability were achieved. The recovery test demonstrated the feasibility of the proposed method for accurate determination of OTA contaminated samples.
机译:基于聚硫氨酸(PTH)/金纳米颗粒(nanoAu)复合膜和酶​​催化扩增相结合的新型电化学传感器,用于曲霉毒素A(OTA)的间接竞争性免疫测定。使用玻璃碳电极(GCE)修饰聚硫氨酸的电聚合膜来制造传感基板,然后介导nanoAu单层的自组装。将OTAa –卵清蛋白结合物(OTAa – OVA)吸附到表面受限的金纳米颗粒上后,样品溶液中的分析物OTA与固定的半抗原竞争有限的抗OTA单克隆抗体。将碱性磷酸酶(ALP)标记的马抗小鼠IgG抗体选择性结合到电极表面,这为样品中OTA浓度提供了指示剂。在最佳条件下,观察到由磷酸1-萘酯酶产物氧化引起的电化学反应与OTA浓度成反比,检测范围为1 ng mLa?1至1000 ng mLa?1。低至0.2 ng mLa?'1。另外,获得了良好的再现性,高选择性,灵敏度和稳定性。回收率测试证明了该方法可准确测定OTA污染样品的可行性。

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