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Surface biopassivation of replicated poly(dimethylsiloxane) microfluidicchannels and application to heterogeneous immunoreaction with on-chipfluorescence detection

机译:复制的聚二甲基硅氧烷微流通道的表面生物钝化及其在片上荧光检测中的应用

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Poly(dimethylsiloxane) (PDMS) appeared recently as a material of choice for rapid and accurate replication of polymer-based microfluidic networks. However, due to its hydrophobicity, the surface strongly interacts with apolar analytes or species containing apolar domains, resulting in significant uncontrolled adsorption on channel walls. This contribution describes the application and characterization of a PDMS surface treatment that considerably decreases adsorption of low and high molecular mass substances to channel walls while maintaining a modest cathodic electroosmotic. flow. Channels are modified with a three-layer biotin-neutravidin sandwich coating, made of biotinylated IgG, neutravidin, and biotinylated dextran. By replacing biotinylated dextran with any biotinylated reagent, the modified surface can be readily patterned with biochemical probes, such as antibodies. Combination of probe immobilization chemistry with low nonspecific binding enables affinity binding assays within channel networks. The example of an electrokinetic driven, heterogeneous immunoreaction for human IgG is described.
机译:聚二甲基硅氧烷(PDMS)最近作为快速,准确地复制基于聚合物的微流体网络的选择材料出现。然而,由于其疏水性,该表面与非极性分析物或含有非极性结构域的物质强烈相互作用,导致通道壁上明显不受控制的吸附。该贡献描述了PDMS表面处理的应用和特性,该表面处理可大大降低低分子量和高分子量物质对通道壁的吸附,同时保持适度的阴极电渗。流。用三层生物素-中性生物素夹心涂层修饰通道,该涂层由生物素化的IgG,中性生物素和生物素化的葡聚糖制成。通过用任何生物素化试剂代替生物素化葡聚糖,可以容易地用生化探针(例如抗体)对修饰的表面进行构图。探针固定化学与低非特异性结合的结合使通道网络内的亲和力结合测定成为可能。描述了针对人IgG的电动驱动的异质免疫反应的例子。

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