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Evaluation of Photochemically Im~2obilized Poly(m-ethyl-m-oxazoline) Thin Films as Protein-Resistant Surfaces

机译:评价光化学固定化的〜2〜m-乙基-间-恶唑啉薄膜作为抗蛋白质表面

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Poly(m-ethyl-m-oxazoline) (PEOX) of various molecular weights were covalentiy im~2obilized on silicon wafers and gold slides to form protein-resistant surfaces via a fast and general photocoupling chemistry based on the CH insertion reaction of light-activated perfluorophenyl azide (PFPA). The thicknesses of the immobilized PEOX films ranged from m3 to 80 A for molecular weight of 5000 to 500 000, and the grafting density reached 3.m x 10~(-3) A~(-2) for PEOX 5000. The protein- resistant property of the films was studied using bovine serum albumin (BSA) by fluorescence imaging, ellipsometry, and surface plasmon resonance imaging (SPRi). The fluorescence imaging and ellipsometry studies showed the largest amount of BSA adsorbed on PEOX 5000 and the smallest on PEOX 500 000. This was consistent with the kinetic analysis of BSA adsorption by SPRi showing that PEOX S000 exhibited the fastest association rate and the slowest dissociation rate whereas PEOX 500 000 had the slowest association rate and the fastest dissociation rate. The PEOX film was then applied in the fabrication of carbohydrate microarrays to reduce the nonspecific adsorption of lectins and thus the background noises. Results showed that the microarray signals were significantly enhanced when the PEOX film was used.
机译:各种分子量的聚(间乙氧基间恶唑啉)(PEOX)共价固定在硅片和金载玻片上,通过基于光化学键的CH插入反应的快速且通用的光耦合化学,形成抗蛋白质的表面。活化全氟苯基叠氮化物(PFPA)。固定分子量为5000至500 000的PEOX膜的厚度为m3至80 A,而PEOX 5000的接枝密度为3.mx 10〜(-3)A〜(-2)。使用牛血清白蛋白(BSA)通过荧光成像,椭圆偏振和表面等离子体共振成像(SPRi)研究了薄膜的性能。荧光成像和椭偏分析表明,PEOX 5000上吸附的BSA量最大,而PEOX 500 000上的吸附量最小。这与SPRi对BSA吸附的动力学分析一致,表明PEOX S000表现出最快的缔合速率和最慢的解离速率。而PEOX 500 000具有最低的缔合速率和最快的解离速率。然后将PEOX膜应用于碳水化合物微阵列的制造中,以减少凝集素的非特异性吸附,从而减少背景噪声。结果表明,当使用PEOX膜时,微阵列信号显着增强。

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