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A Micro Amperometric Immunosensor Based on Protein A/Gold nanoparticles/Self-assembled Monolayer-Modified Gold Electrode

机译:基于蛋白质A /金纳米颗粒/自组装单层改性金电极的微凹凸免疫传感器

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A novel amperometric immunosensor fabricated by microelectromechanical systems (MEMS) technology with a novel modified procedure for immobilization of antibody on gold electrode has been developed. Based on MEMS technology, immunosensor with a three-microelectrode system integrated with two SU-8 micro pools was fabricated. Employing self-assembled monolayers technique, the working electrode was modified by 1,6-hexanedithiol to assemble gold nanoparticles layer, subsequently, a layer of protein A was immobilized on nanogold layer to further capture antibody. Compared with the amperometric immunosensors using traditionally metal rod/slice electrode or screen-printed electrode, it has attractive advantages, such as miniaturization, compatibility with CMOS techniques and easy to be designed into micro array. Moreover, the studied immunosensor showed high specificity, good reproducibility and broad linear range for the detection of human immunoglobulin (HIgG), which makes it potentially attractive for clinical immunoassays
机译:一种新型的免疫传感器制造由微机电系统(MEMS)技术,已经开发了在金电极上的抗体固定化的新型改进方法。基于MEMS技术,免疫用三微电极系统集成有两个SU-8微池制作。使用自组装单层的技术中,工作电极是由1,6-己二硫醇改性组装纳米金层,随后,蛋白A的层被固定纳米金层,以进一步捕获抗体上。使用传统的金属杆/片电极或丝网印刷电极的免疫传感器安培相比,它具有吸引人的优点,如小型化,与CMOS技术和易于设计成微阵列的兼容性。此外,所研究的免疫显示出高特异性,重现性好,线性范围宽用于检测人免疫球蛋白(的hIgG)的,这使得它对于临床免疫测定潜在有吸引力的

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