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Colorimetric detection of influenza A virus using antibody-functionalized gold nanoparticles

机译:使用抗体功能化的金纳米粒子比色检测甲型流感病毒

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摘要

Early and accurate diagnosis is considered the key issue to prevent the further spread of viruses and facilitate influenza therapy. Herein, we report a colorimetric immunosensor for influenza A virus (IAV) based on gold nanoparticles (AuNPs) modified with monoclonal anti-hemagglutinin antibody (mAb). The immunosensor allows for a fast, simple, and selective detection of IAV. In this assay, influenza-specific antibodies are conjugated to AuNPs to create mAb-AuNP probes. Since IAV has multiple recognition sites for probes on the surface, the mAb-AuNP probes can be specifically arranged on the virus surface due to their very specific antigen recognition. In this case, this aggregation of the mAb-AuNP probes produces a red shift in the absorption spectrum due to plasmon coupling between adjacent AuNPs, and it can be detected with the naked eye as a color change from red to purple and quantified with the absorption spectral measurements. The aggregate formation is also confirmed with transmission electron microscopy (TEM) imaging and dynamic light scattering (DLS). Under the optimal conditions, the present immunoassay can sensitively measure H3N2 IAV (A/Brisbane/10/2007) with a detection limit of 7.8 hemagglutination units (HAU). This proposed immunosensor revealed high specificity, accuracy, and good stability. Notably, it is a single-step detection using AuNP probes and UV-vis spectrophotometer for readout, and no additional amplification, e.g., enzymatic, is needed to read the result. This assay depends on an ordered AuNP structure covering the virus surface and can be applied to any virus pathogen by incorporating the appropriate pathogen-specific antibody.
机译:早期准确诊断被认为是防止病毒进一步传播并促进流感治疗的关键问题。本文中,我们报告了一种基于单克隆抗血凝素抗体(mAb)修饰的金纳米颗粒(AuNPs)的甲型流感病毒(IAV)的比色免疫传感器。免疫传感器可实现对IAV的快速,简单和选择性检测。在该测定中,将流感特异性抗体与AuNPs偶联以产生mAb-AuNP探针。由于IAV在表面上具有多个针对探针的识别位点,因此mAb-AuNP探针由于具有非常特异性的抗原识别能力,因此可以特异性地排列在病毒表面。在这种情况下,由于相邻AuNP之间的等离子体耦合,mAb-AuNP探针的这种聚集会在吸收光谱中产生红移,并且可以用肉眼检测到其颜色从红色变为紫色,并通过吸收进行定量光谱测量。聚集体的形成也通过透射电子显微镜(TEM)成像和动态光散射(DLS)得到证实。在最佳条件下,本免疫测定法可以以7.8个血凝单位(HAU)的检出限灵敏地测量H3N2 IAV(A / Brisbane / 10/2007)。该提议的免疫传感器显示出高特异性,准确性和良好的稳定性。值得注意的是,这是使用AuNP探针和UV-vis分光光度计进行读数的单步检测,无需其他扩增(例如酶促扩增)即可读取结果。该测定法取决于覆盖病毒表面的有序AuNP结构,并且可以通过掺入适当的病原体特异性抗体而应用于任何病毒病原体。

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