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白蛋白与辉光放电处理过的聚合物的紧密结合。

Tight binding of albumin to glow discharge treated polymers.

作者信息

Kiaei D, Hoffman A S, Horbett T A

机构信息

Center for Bioengineering, University of Washington, Seattle 98195.

出版信息

J Biomater Sci Polym Ed. 1992;4(1):35-44.

PMID:1463700
Abstract

Tetrafluoroethylene (TFE) glow discharge-treated Dacron vascular grafts resist thrombus deposition, embolization and thrombotic occlusion. In addition, albumin adsorbed on TFE-treated surfaces resists elution by sodium dodecyl sulfate (SDS). Since the tight binding of albumin to TFE-treated surfaces may contribute to their thromboresistant character, we decided to examine the mechanism responsible for this tenacious adsorption. We have investigated albumin adsorption and retention (after SDS elution) on a number of untreated and glow discharge-treated surfaces. Fluorocarbon glow discharge-treated polymers retain a larger fraction of the adsorbed albumin than ethylene and hexamethyldisiloxane glow discharge-treated surfaces. Albumin retention by surfaces appears to be closely related to their surface free energy (in air). Low energy surfaces (in air), whether untreated or glow discharge-treated, retain a larger fraction of the albumin adsorbed than higher energy surfaces. The lowest energy surfaces should have the highest interfacial energies in water, with correspondingly high driving forces for adsorption of proteins. This can lead to the formation of multiple binding sites upon adsorption, permitting strong hydrophobic interactions, which leads to the observed strong binding.

摘要

四氟乙烯(TFE)辉光放电处理的涤纶血管移植物可抵抗血栓沉积、栓塞和血栓闭塞。此外,吸附在TFE处理表面的白蛋白可抵抗十二烷基硫酸钠(SDS)的洗脱。由于白蛋白与TFE处理表面的紧密结合可能有助于其抗血栓特性,我们决定研究这种强吸附作用的机制。我们研究了白蛋白在一些未处理和辉光放电处理表面的吸附和保留情况(SDS洗脱后)。碳氟化合物辉光放电处理的聚合物比乙烯和六甲基二硅氧烷辉光放电处理的表面保留了更大比例的吸附白蛋白。表面对白蛋白的保留似乎与其表面自由能(在空气中)密切相关。低能表面(在空气中),无论未处理还是辉光放电处理,比高能表面保留更大比例的吸附白蛋白。最低能表面在水中应具有最高的界面能,相应地对蛋白质吸附具有较高的驱动力。这可导致吸附时形成多个结合位点,允许强烈的疏水相互作用,从而导致观察到的强结合。

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