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A Nanofluidic Bioarray Chip For Fast and High-Throughput Detection of Antibodies in Biological Fluids

机译:用于快速和高通量检测生物流体中抗体的纳米流体生物芯片。

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Immunoassays have become a standard in secretome analysis in clinical and research analysis. In this field there is a need for a high throughput method that uses low sample volumes. Microfluidics and nanofluidics have been developed for this purpose. Our lab has developed a nanofluidic bioarray (NBA) chip with the goal being a high throughput system that assays low sample volumes against multiple probes. A combination of horizontal and vertical channels are produced to create an array antigens on the surface of the NBA chip in one dimension that is probed by flowing in the other dimension antibodies from biological fluids. We have tested the NBA chip by immobilizing streptavidin and then biotinylated peptide to detect the presence of a mouse monoclonal antibody (MAb) that is specific for the peptide. Bound antibody is detected by an AlexaFluor 647 labeled goat (anti-mouse lgG) polyclonal antibody. Using the NBA chip, we have successfully detected peptide binding by small-volume (0.5μl) samples containing 50 attomoles (100 pM) MAb.
机译:免疫测定已成为临床和研究分析中分泌组分析的标准。在该领域中,需要使用低样品量的高通量方法。为此已经开发了微流体和纳米流体。我们的实验室开发了一种纳米流体生物阵列(NBA)芯片,其目标是一种高通量系统,可以针对多种探针分析低样品量。产生水平通道和垂直通道的组合以在NBA芯片表面上以一维创建阵列抗原,然后通过从生物流体中流入另一维抗体来探测该抗原。我们已经通过固定链霉亲和素和生物素化肽段来检测NBA芯片,以检测该肽段特异性的小鼠单克隆抗体(MAb)的存在。通过AlexaFluor 647标记的山羊(抗小鼠IgG)多克隆抗体检测结合的抗体。使用NBA芯片,我们已经成功地检测了包含50个attomoles(100 pM)MAb的小体积(0.5μl)样品的肽结合。

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