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Immunofluorescence detection methods using microspheres

机译:使用微球的免疫荧光检测方法

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Abstract: Microsphere-based immunoassays were devised for compounds of agricultural and biomedical interest (e.g., digoxin, theophylline, and zearalenone). Commercially available microspheres with surface functional groups for chemical derivatization were used as solid carriers. After immobilizing the target substances, the surface of the haptenized microspheres was blocked by a protein to reduce aspecific binding. Competitive immunoassays were performed using the functionalized microspheres and antibodies labeled with horseradish peroxidase. Immunofluorescence signal amplification was achieved by enzyme-catalyzed reporter deposition (CARD). An epifluorescence microscope, a CCD camera interfaced with a computer, and microscopy image analysis software were employed for quantitative detection of fluorescent light emitted from individual microspheres. Integration of several such immunoassays and application of an optical encoding method enabled multianalyte determination. These immunoassays can also be utilized in an immunosensor array format. This immunoarray format could facilitate miniaturization and automation of multianalyte immunoassays. !35
机译:摘要:基于微球的免疫测定法旨在用于农业和生物医学方面的化合物(例如地高辛,茶碱和玉米赤霉烯酮)。具有化学衍生作用的具有表面官能团的市售微球被用作固体载体。固定目标物质后,半抗原化的微球表面被蛋白质封闭,以减少非特异性结合。使用功能化的微球和辣根过氧化物酶标记的抗体进行竞争性免疫分析。免疫荧光信号放大是通过酶催化的报道分子沉积(CARD)实现的。使用落射荧光显微镜,与计算机连接的CCD相机和显微镜图像分析软件来定量检测从各个微球体发出的荧光。几种这样的免疫测定方法的整合以及光学编码方法的应用使得能够进行多分析物测定。这些免疫测定也可以以免疫传感器阵列形式使用。这种免疫阵列形式可以促进多分析物免疫测定的小型化和自动化。 !35

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