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An electrochemical immunosensor for CEA detection based on Au-Ag/rGO@PDA nanocomposites as integrated double signal amplification strategy

机译:基于AU-AG / RGO @ PDA纳米复合材料作为集成双信号放大策略的电化学免疫传感器

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摘要

An electrochemical immunosensor for quantitation of carcinoembryonic antigen (CEA) based on Au-Ag/rGO@PDA nanocomposites for dual signal amplification strategy was designed. Polydopamine-coated Ag/graphene hybrids were synthesized by one-step reduction and fractionalization, and the dopamine was introduced to replace some reducing agents that are harmful to organisms. Silver nanoparticles modified on the electrodes produced sensitive electrochemical redox peaks. When different amounts of protein (antigen, antibody, bovine serum protein, etc.) were adsorbed on the surface of nano-silver, the surface of nano-silver was covered. The electrochemical redox peak of silver particles decreased due to the change of the effective area of bare silver particles which could react with electrodes. In addition, CEA-antibody (anti-CEA) was immobilized into a biocompatible nanocomposite of Au nanoparticles as a conductive matrix, and CEA-antibody (anti-CEA) was combined with Ag/rGO@PDA to form a dual signal amplifying element. Under optimal condition, the linear relationship was obtained from 0.001 ng mL(-1) to 80 ng mL(-1) between current signal and CEA concentration with a detection limit of 0.286 pg mL(-1) (signal-to-noise ratio is 3). The label-free electrochemical immunosensor has been successfully applied to human serum detection due to good selectivity, stability and reproducibility.
机译:设计了一种基于Au-Ag / RGO @ PDA纳米复合材料的用于定量用于定量用于双信号放大策略的癌丙烯抗原(CEA)的电化学免疫传感器。通过单步减少和分级化合成聚二胺涂层的Ag /石墨烯杂种,并引入多巴胺以替代对生物有害的一些还原剂。在电极上修饰的银纳米粒子产生敏感的电化学氧化还原峰。当将不同量的蛋白质(抗原,抗体,牛血清蛋白等)吸附在纳米银的表面上时,纳米银的表面被覆盖。银颗粒的电化学氧化还原峰由于可以与电极反应的裸银颗粒的有效面积的变化而降低。另外,将CEA-抗体(抗CEA)固定在Au纳米颗粒的生物相容性纳米复合物中,作为导电基质,并且CEA-抗体(抗CEA)与Ag / Rgo @ PDA合并以形成双信号放大元件。在最佳条件下,在电流信号和CEA浓度之间从0.001 ng ml(-1)至80ng ml(-1)获得线性关系,检测限为0.286pg ml(-1)(信噪比是3)。由于良好的选择性,稳定性和再现性,无标记的电化学免疫传感器已成功应用于人血清检测。

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