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首页> 外文期刊>Materials science & engineering >A novel route to prepare a multilayer system via the combination of interface-mediated catalytic chain transfer polymerization and thiol-ene click chemistry
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A novel route to prepare a multilayer system via the combination of interface-mediated catalytic chain transfer polymerization and thiol-ene click chemistry

机译:通过界面介导的催化链转移聚合和硫醇-烯点击化学的结合制备多层系统的新途径

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摘要

Herein, we have designed a novel multilayer system composed of poly(methyl methacrylate) [poly(MMA)] brush, biotin, streptavidin and protein-A on a silicon substrate to attach on anti-immunoglobulin G (anti-IgG). poly(MMA) brush with vinyl end-group was first synthesized by the interface-mediated catalytic chain transfer polymerization. The brush was then modified with cysteamine molecules to generate the polymer chains with amine end-group via a thiol-ene click chemistry. The amine end-groups of poly (MMA) chains were also modified with biotin units to ensure selective connection points for streptavidin molecules. Finally, a multilayer system on the silicon substrate was formed by using streptavidin and protein-A molecules, respectively. This multilayer system was employed to attach anti-IgG molecules in a highly oriented manner and provide anti-IgG molecular functional configuration on the multilayer. High reproducibility of the amount of anti-IgG adsorption and homogeneous anti-IgG adsorption layer on the silicon surface could be provided by this multilayer system. The multilayer system with protein A may be opened the door for designing an efficient immunoassay protein chip.
机译:在这里,我们设计了一种新型的多层系统,该系统由聚(甲基丙烯酸甲酯)[poly(MMA)]刷,生物素,链霉亲和素和蛋白A组成,并附着在抗免疫球蛋白G(抗IgG)上。首先通过界面介导的催化链转移聚合反应合成了具有乙烯基端基的聚(MMA)刷。然后用半胱胺分子修饰刷子,以通过硫醇-烯点击化学产生具有胺端基的聚合物链。聚(MMA)链的胺端基也经过生物素单元修饰,以确保链霉亲和素分子的选择性连接点。最后,分别通过使用链霉亲和素和蛋白A分子在硅衬底上形成多层系统。该多层系统用于以高度定向的方式连接抗IgG分子,并在多层上提供抗IgG分子的功能构型。通过该多层系统可以提供在硅表面上的抗IgG吸附和均匀的抗IgG吸附层的量的高再现性。具有蛋白A的多层系统可以为设计有效的免疫测定蛋白芯片打开大门。

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