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Reagentless amperometric immunosensor for α-1-fetoprotein based on assembly of nano-Au@SiO2 composite

机译:基于纳米Au @ SiO2复合材料组装的α-1-甲蛋白无试剂安培免疫传感器

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A novel immunosensor for the direct amperometric determination of ?±-1-fetoprotein (AFP) was constructed by immobilization of PDDAano-Au@SiO2 onto a Prussian blue modified gold electrode surface, followed by adsorption of ?±-1-fetoprotein antibody onto nano-Au@SiO2 composite particles with large specific areas and good biocompatibility. Finally, BSA was employed to block the possible remaining active sites of the nano-Au@SiO2 layer to avoid non-specific adsorption. The modification procedure was electrochemically monitored by cyclic voltammetry. The performance and influencing factors of the resulting immunosensor were studied in detail. Under the optimized conditions, there is a linear relation between response current and the logarithm of the concentrations of AFP in the concentration range of 0.05a€“200 ng mLa?’1 with a detection limit of 0.02 ng mLa?’1 (S/N = 3).
机译:通过将PDDA / nano-Au @ SiO2固定在普鲁士蓝修饰的金电极表面上,然后吸附β±-1-甲胎蛋白抗体,构建了用于直接安培测定α±-1-甲胎蛋白(AFP)的新型免疫传感器。具有较大的比表面积和良好的生物相容性的纳米Au @ SiO2复合颗粒。最后,采用BSA阻止纳米Au2SiO2层可能残留的活性位点,以避免非特异性吸附。修饰程序通过循环伏安法电化学监测。详细研究了所得免疫传感器的性能和影响因素。在最佳条件下,响应电流与浓度在0.05a?200 ng mLa?1范围内的AFP浓度的对数之间存在线性关系,检出限为0.02 ng mLa?'1(S / N = 3)。

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