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Detection of influenza virus by electrochemical surface plasmon resonance under potential modulation

机译:电化学表面等离子体共振检测潜在调制下的流感病毒

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摘要

In this study we report the development of a novel viral pathogen immunosensor technology based on the electrochemical modulation of the optical signal from a surface plasmon wave interacting with a redox dye reporter. The device is formed by incorporating a sandwich immunoassay onto the surface of a plasmonic device mounted in a micro-electrochemical flow cell, where it is functionalized with a monoclonal antibody aimed to a specific target pathogen antigen. Once the target antigen is bound to the surface, it promotes the capturing of a secondary polyclonal antibody that has been conjugated with a redox-active methylene blue dye. The methylene blue displays a reversible change in the complex refractive index throughout a reduction-oxidation transition, which generates an optical signal that can be electrochemically modulated and detected at high sensitivity. For proof-of-principle measurements, we have targeted the hemagglutinin protein from the H5N1 avian influenza A virus to demonstrate the capabilities of our device for detection and quantification of a critical influenza antigen. Our experimental results of the EC-SPR-based immunosensor under potential modulation showed a 300 pM limit of detection for the H5N1 antigen. (C) 2019 Optical Society of America
机译:在这项研究中,我们报告了一种基于与氧化还原染料报告器相互作用的光信号的电化学调制的新型病毒病原体免疫传感器技术的开发。通过将夹层免疫测定结合到安装在微电化学流动池中的等离子体装置的表面上,使其形成,其中用旨在的单克隆抗体掺有抗体,其官能化。一旦靶抗原结合到表面,它就促进了已经与氧化还原活性亚甲基蓝染料缀合的次级多克隆抗体的捕获。亚甲基蓝色在整个还原氧化转变过程中显示复杂折射率的可逆变化,这产生了可以在高灵敏度下电化学调制和检测的光学信号。对于原则上的验证测量,我们从H5N1禽流感中瞄准了血凝素蛋白,病毒,以证明我们的装置用于检测和定量临界流感抗原的能力。我们在电位调节下的EC-SPR基免疫传感器的实验结果显示了H5N1抗原的300pm的检测限。 (c)2019年光学学会

著录项

  • 来源
    《Applied optics》 |2019年第11期|共6页
  • 作者单位

    Univ Louisville Dept Phys &

    Astron Nat Sci Bldg Louisville KY 40208 USA;

    Univ Louisville Dept Phys &

    Astron Nat Sci Bldg Louisville KY 40208 USA;

    Univ Louisville Dept Bioengn Lutz Hall Louisville KY 40208 USA;

    Univ Louisville Dept Bioengn Lutz Hall Louisville KY 40208 USA;

    Univ Louisville Dept Phys &

    Astron Nat Sci Bldg Louisville KY 40208 USA;

    Univ Louisville Dept Chem Louisville KY 40292 USA;

    Univ Louisville Dept Bioengn Lutz Hall Louisville KY 40208 USA;

    Univ Louisville Dept Bioengn Lutz Hall Louisville KY 40208 USA;

    Univ Louisville Dept Phys &

    Astron Nat Sci Bldg Louisville KY 40208 USA;

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  • 正文语种 eng
  • 中图分类 应用;
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