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首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >Incorporation of electrospun nanofibrous PVDF membranes into a microfluidic chip assembled by PDMS and scotch tape for immunoassays.
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Incorporation of electrospun nanofibrous PVDF membranes into a microfluidic chip assembled by PDMS and scotch tape for immunoassays.

机译:将电纺纳米纤维PVDF膜结合到由PDMS和透明胶带组装而成的微流控芯片中进行免疫测定。

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摘要

This paper demonstrates a microfluidic chip for multiple immunoassays on electrospun (ES) nanofibrous membranes made of PVDF. This microchip enables the detection of multiple pairs of protein-protein interactions in one experiment by crossing parallel arrays of microchannels. This chip uses ESPVDF membrane with high specific surface area as the substrate to adsorb protein for immobilized immunoassays so that increased levels of protein adsorption may lower the LOD in immunoassays. We employ a simple and effective method for chip assembly by scotch tape to incorporate the ESPVDF membrane into the microchip. We believe that the present work will facilitate the development of methods for the on-site diagnosis of diseases whose detection is based on antigen-antibody recognition, and improve the efficiencies of certain experiments that need to identify tens to hundreds of protein-protein interactions with relatively low cost in the future.
机译:本文展示了一种用于PVDF制成的静电纺(ES)纳米纤维膜上多种免疫测定的微流控芯片。该微芯片通过交叉平行排列的微通道,可以在一个实验中检测多对蛋白质-蛋白质相互作用。该芯片使用具有高比表面积的ESPVDF膜作为底物来吸附固定化免疫测定中的蛋白质,因此增加的蛋白质吸附水平可能会降低免疫测定中的LOD。我们采用透明胶带将芯片组装到微芯片中的简单而有效的方法来组装芯片。我们认为,当前的工作将促进基于抗原抗体识别的疾病现场诊断方法的开发,并提高某些需要鉴定数十至数百种蛋白质与蛋白质相互作用的实验的效率。未来成本相对较低。

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