Key Laboratory of Analytical Chemistry for Biology and Medicine (Ministry of Education), College of Chemistry and Molecular Sciences, Research Center for Nanobiology and Nanomedicine (MOE 985 Innovative Platform), Wuhan University, Wuhan, 430072, P. R. China.
Anal Chem. 2012 Mar 6;84(5):2358-65. doi: 10.1021/ac203102u. Epub 2012 Feb 16.
In this work, robust approach for a highly sensitive point-of-care virus detection was established based on immunomagnetic nanobeads and fluorescent quantum dots (QDs). Taking advantage of immunomagnetic nanobeads functionalized with the monoclonal antibody (mAb) to the surface protein hemagglutinin (HA) of avian influenza virus (AIV) H9N2 subtype, H9N2 viruses were efficiently captured through antibody affinity binding, without pretreatment of samples. The capture kinetics could be fitted well with a first-order bimolecular reaction with a high capturing rate constant k(f) of 4.25 × 10(9) (mol/L)(-1) s(-1), which suggested that the viruses could be quickly captured by the well-dispersed and comparable-size immunomagnetic nanobeads. In order to improve the sensitivity, high-luminance QDs conjugated with streptavidin (QDs-SA) were introduced to this assay through the high affinity biotin-streptavidin system by using the biotinylated mAb in an immuno sandwich mode. We ensured the selective binding of QDs-SA to the available biotin-sites on biotinylated mAb and optimized the conditions to reduce the nonspecific adsorption of QDs-SA to get a limit of detection low up to 60 copies of viruses in 200 μL. This approach is robust for application at the point-of-care due to its very good specificity, precision, and reproducibility with an intra-assay variability of 1.35% and an interassay variability of 3.0%, as well as its high selectivity also demonstrated by analysis of synthetic biological samples with mashed tissues and feces. Moreover, this method has been validated through a double-blind trial with 30 throat swab samples with a coincidence of 96.7% with the expected results.
本工作建立了基于免疫磁珠和荧光量子点(QDs)的高灵敏度即时病毒检测的稳健方法。利用针对禽流感病毒(AIV)H9N2 亚型表面蛋白血凝素(HA)的单克隆抗体(mAb)功能化的免疫磁珠,通过抗体亲和力结合,无需对样品进行预处理,即可有效捕获 H9N2 病毒。捕获动力学可以很好地拟合一级双分子反应,具有高捕获速率常数 k(f)为 4.25×10(9)(mol/L)(-1) s(-1),这表明病毒可以被均匀分散且尺寸相当的免疫磁珠快速捕获。为了提高灵敏度,通过高亲和力生物素-链霉亲和素系统,将高亮度的链霉亲和素偶联的量子点(QDs-SA)引入到该测定法中,采用生物素化 mAb 进行免疫夹心模式。我们确保 QDs-SA 选择性地结合到生物素化 mAb 上的可用生物素结合位点,并优化条件以减少 QDs-SA 的非特异性吸附,从而使检测限低至 200μL 中 60 个拷贝的病毒。由于其具有非常好的特异性、精密度和重现性,该方法在即时护理中具有良好的应用前景,其内部测定变异性为 1.35%,外部测定变异性为 3.0%,并且通过分析混合组织和粪便的合成生物样本也证明了其具有高选择性。此外,该方法已经通过 30 个咽喉拭子样本的双盲试验进行了验证,与预期结果的符合率为 96.7%。