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A multitechnique study of preferential protein adsorption on hydrophobic and hydrophilic plasma-modified polymer surfaces

机译:疏水和亲水等离子体改性聚合物表面上优先吸附蛋白质的多技术研究

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摘要

The adsorption process of albumin, lysozyme and lactoferrin was investigated onto polymer surfaces, both hydrophobic and hydrophilic treated by oxygen-plasma. In particular thin films of polyhydroxymethylsiloxane (about 90, of static water contact angle) were converted by oxygen plasma treatments at reduced pressure into hydrophilic SiOx phases (less than 10 degrees of water contact angle). The protein adsorption process was investigated in situ by quartz crystal microbalance with dissipation monitoring in terms of coverage and kinetics mechanism. while chemical structure and topography of the protein adlayers were studied ex situ by angular-resolved XPS and atomic force microscopy, respectively. The plasma surface modification of the polymer film drastically modified the adsorption process of the three proteins, both in terms of kinetics and coverage.
机译:研究了白蛋白,溶菌酶和乳铁蛋白在聚合物表面上的吸附过程,该表面通过氧等离子体处理疏水和亲水。特别地,通过在减压下进行氧等离子体处理将聚羟甲基硅氧烷的薄膜(约90,静态水接触角)转化为亲水性SiO x相(小于10度水接触角)。通过石英晶体微量天平对蛋白质的吸附过程进行了研究,并通过耗散监测对覆盖和动力学机理进行了研究。分别通过角分辨XPS和原子力显微镜异位研究了蛋白质吸附层的化学结构和形貌。聚合物膜的等离子体表面改性在动力学和覆盖率方面都极大地改变了三种蛋白质的吸附过程。

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