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pH-dependent immobilization of proteins on surfaces functionalized by plasma-enhanced chemical vapor deposition of poly(acrylic acid)- and poly(ethylene oxide)-like films

机译:蛋白质的pH依赖性固定在通过等离子体增强的聚丙烯酸和类聚环氧乙烷薄膜的等离子化学气相沉积功能化的表面上

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The interaction of the proteins bovine serum albumin (BSA), lysozyme (Lys), lactoferrin (Lf), and fibronectin (Fn) with surfaces of protein-resistant poly(ethylene oxide) (PEO) and protein-adsorbing poly(acrylic acid) (PAA) fabricated by plasma-enhanced chemical vapor deposition has been studied with quartz crystal microbalance with dissipation monitoring (QCM-D). We focus on several parameters which are crucial for protein adsorption, i.e., the isoelectric point (pI) of the proteins, the pH of the solution, and the charge density of the sorbent surfaces, with the zeta-potential as a measure for the latter. The measurements reveal adsorption stages characterized by different segments in the plots of the dissipation vs frequency change. PEO remains protein-repellent for BSA, Lys, and Lf at pH 4-8.5, while weak adsorption of Fn was observed. On PAA, different stages of protein adsorption processes could be distinguished under most experimental conditions. BSA, Lys, Lf, and Fn generally exhibit a rapid initial adsorption phase on PAA, often followed by slower processes. The evaluation of the adsorption kinetics also reveals different adsorption stages, whereas the number of these stages does not always correspond to the structurally different phases as revealed by the D-f plots. The results presented here, together with information obtained in previous studies by other groups on the properties of these proteins and their interaction with surfaces, allow us to develop an adsorption scenario for each of these proteins, which takes into account electrostatic protein-surface and protein-protein interaction, but also the pH-dependent properties of the proteins, such as shape and exposure of specific domains.
机译:牛血清白蛋白(BSA),溶菌酶(Lys),乳铁蛋白(Lf)和纤连蛋白(Fn)的蛋白质与耐蛋白质的聚环氧乙烷(PEO)和蛋白质吸附的聚丙烯酸的相互作用用等离子体增强化学气相沉积法制造的石英(PAA)已通过带有耗散监测的石英晶体微量天平(QCM-D)进行了研究。我们专注于几个对于蛋白质吸附至关重要的参数,即蛋白质的等电点(pI),溶液的pH值和吸附剂表面的电荷密度,而Zeta电位可作为对后者的量度。这些测量揭示了在耗散与频率变化曲线图中以不同段为特征的吸附阶段。 PEO在pH 4-8.5时对BSA,Lys和Lf仍然具有蛋白排斥性,而Fn的吸附较弱。在PAA上,可以在大多数实验条件下区分蛋白质吸附过程的不同阶段。 BSA,Lys,Lf和Fn通常在PAA上表现出快速的初始吸附阶段,通常随后是较慢的过程。吸附动力学的评估还揭示了不同的吸附阶段,而这些阶段的数目并不总是对应于D-f图所揭示的结构上不同的阶段。此处给出的结果,以及其他小组先前在研究中获得的有关这些蛋白质的性质及其与表面相互作用的信息,使我们能够为每种蛋白质开发一种吸附方案,其中考虑了静电蛋白质表面和蛋白质-蛋白质相互作用,还有蛋白质的pH依赖特性,例如特定域的形状和暴露。

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