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首页> 外文期刊>Journal of biomedical materials research, Part A >Glow discharge plasma treatment of polyethylene tubing with tetraglyme results in ultralow fibrinogen adsorption and greatly reduced platelet adhesion.
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Glow discharge plasma treatment of polyethylene tubing with tetraglyme results in ultralow fibrinogen adsorption and greatly reduced platelet adhesion.

机译:用四甘醇二甲醚对聚乙烯管材进行辉光放电等离子体处理会导致超低的纤维蛋白原吸附,并大大降低血小板粘附。

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摘要

Previous studies from our lab have shown that fibrinogen adsorption (Gamma(Fg)) must be reduced below 10 ng/cm(2) to significantly reduce platelet adhesion, and that radio frequency glow discharge (RFGD) treatment of polymeric films in the presence of tetraethylene glycol dimethyl ether (tetraglyme) can reduce Gamma(Fg) to the desired ultralow value. In this report, the effects of RFGD coatings of tetraglyme on the lumenal surface of PE tubing on Gamma(Fg) and on blood interactions both in vitro and ex vivo are described. Gamma(Fg) on the tetraglyme-coated PE tubing was reduced to the desired ultralow level (<10 ng/cm(2)), and we also observed a significant decrease in adsorption of von Willebrand's factor. In vitro platelet adhesion from washed platelet suspensions, platelet rich plasma, or whole blood to tetraglyme-coated PE tubing was decreased compared to PE, polyurethane, or silicone rubber tubes. In addition, thrombin generation by platelets adherent to tetraglyme-coated PE was also much less than by platelets adherent to PE. When inserted in an ex vivo carotid artery-carotid artery shunt in sheep, the RFGD tetraglyme-coated PE exhibited a very low number of adherent platelets compared to heparin-coated, chromic acid-etched, or plain PE. The RFGD tetraglyme-coated PE tubes exhibited high protein and platelet resistance in vitro, and high platelet resistance ex vivo. The improved hemocompatibility is attributed to the unique chemical structure of RFGD tetraglyme that makes it highly protein resistant.
机译:我们实验室的先前研究表明,必须将纤维蛋白原吸附(Gamma(Fg))降低至10 ng / cm(2)以下,才能显着降低血小板粘附,并且在存在以下情况的情况下,对聚合物薄膜进行射频辉光放电(RFGD)处理四甘醇二甲醚(四甘醇二甲醚)可以将Gamma(Fg)降低至所需的超低值。在此报告中,描述了四甘醇二甲醚的RFGD涂层对PE导管腔表面上的Gamma(Fg)以及体外和离体血液相互作用的影响。涂有四甘醇二甲醚的PE管上的Gamma(Fg)降低至所需的超低水平(<10 ng / cm(2)),我们还观察到von Willebrand's因子的吸附显着降低。与PE管,聚氨酯管或硅橡胶管相比,从冲洗过的血小板悬液,富含血小板的血浆或全血到四甘醇酸酯涂层的PE管的体外血小板粘附性降低了。另外,粘附于四甘醇二甲醚包被的PE上的血小板产生的凝血酶也远少于粘附于PE上的血小板产生的凝血酶。当插入绵羊的离体颈动脉-颈动脉分流器中时,与肝素涂层,铬酸蚀刻或普通PE相比,RFGD四甘醇二甲酸酯包被的PE表现出非常少的粘附血小板。 RFGD四甘醇二甲酸酯包被的PE管在体外显示出高蛋白和血小板抗性,离体显示出高血小板抗性。改善的血液相容性归因于RFGD四甘醇二甲醚的独特化学结构,使其具有高度的蛋白抗性。

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