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Patterned Biofunctional Poly(acrylic acid) Brushes on Silicon Surfaces

机译:硅表面上的图案化生物功能聚(丙烯酸)刷

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Protein patterning was carried out using a simple procedure based on photolithography wherein the protein was not subjected to UV irradiation and high temperatures or contacted with denaturing solvents of strongly acidic or basic solutions. Self-assembled monolayers of poly(ethylene glycol) (PEG) on silicon surfaces were exposed to oxygen plasma through a patterned photoresist. The etched regions were back-filled with an initiator for surface-initiated atom transfer radical polymerization (ATRP). ATRP of sodium acrylate was readily achieved at room temperature in an aqueous medium. Protonation of the polymer resulted in patterned poly(acrylic acid) (PAA) brashes. A variety of biomolecules containing amino groups could be covalently tethered to the dense carboxyl groups of the brush, under relatively mild conditions. The PEG regions surrounding the PAA brush greatly reduced nonspecific adsorption. Avidin was covalently attached to PAA brushes, and biotin-tagged proteins could be immobilized through avidin-biotin interaction. Such an immobilization method, which is based on specific interactions, is expected to better retain protein functionality than direct covalent binding. Using biotin-tagged bovine serum albumin (BSA) as a model, a simple strategy was developed for immobilization of small biological molecules using BSA as linkages, while BSA can simultaneously block nonspecific interactions.
机译:使用基于光刻的简单程序进行蛋白质图案化,其中蛋白质不进行紫外线照射和高温照射,也不与强酸性或碱性溶液的变性溶剂接触。硅表面上的聚(乙二醇)(PEG)自组装单层膜通过光刻胶暴露在氧等离子体中。用表面引发原子转移自由基聚合(ATRP)的引发剂回填蚀刻区域。在水性介质中,室温下很容易获得丙烯酸钠的ATRP。聚合物的质子化导致图案化的聚(丙烯酸)(PAA)钎焊。可以在相对温和的条件下将各种含有氨基的生物分子共价连接到刷子的稠密羧基上。 PAA刷周围的PEG区域大大降低了非特异性吸附。将抗生物素蛋白共价连接至PAA刷,可通过抗生物素蛋白-生物素相互作用将生物素标记的蛋白质固定化。这种基于特定相互作用的固定方法,有望比直接共价结合更好地保留蛋白质功能。使用生物素标记的牛血清白蛋白(BSA)作为模型,开发了一种简单的策略,可使用BSA作为键固定小生物分子,而BSA可以同时阻止非特异性相互作用。

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