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首页> 外文期刊>Biomaterials >Surface modification of a segmented polyetherurethane using a low-powered gas plasma and its influence on the activation of the coagulation system.
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Surface modification of a segmented polyetherurethane using a low-powered gas plasma and its influence on the activation of the coagulation system.

机译:使用低功率气体等离子体对嵌段聚醚氨酯进行表面改性及其对凝结系统活化的影响。

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摘要

A medical grade segmented polyetherurethane (PEU) was treated with a low-powered gas plasma using O(2), Ar, N(2) and NH(3) as the treatment gases. Changes in the surface functional group chemistry were studied using X-ray photoelectron spectroscopy. The wettability of the surfaces was examined using dynamic contact angle measurements and the surface morphology was evaluated using atomic force microscopy. The influence of the surface modification to the polyurethane on the blood response to the polyetherurethane was investigated by measuring changes in the activation of the contact phase activation of the intrinsic coagulation cascade. The data demonstrate that the plasma treatment process caused surface modifications to the PEU that in all cases increased the polar nature of the surfaces. O(2) and Ar plasmas resulted in the incorporation of oxygen-containing groups that remained present following storage in an aqueous environment. N(2) and NH(3) plasmas resulted in the incorporation of nitrogen-containing groups but these were replaced with oxygen-containing groups following storage in the aqueous environment. In all plasma treatments there was a lowering of contact phase activation compared to the untreated surface, the N(2) and NH(3) treatments dramatically so.
机译:使用O(2),Ar,N(2)和NH(3)作为处理气体,用低功率气体等离子体处理医学级分段聚醚氨基甲酸酯(PEU)。使用X射线光电子能谱研究了表面官能团化学的变化。使用动态接触角测量检查表面的可湿性,并使用原子力显微镜术评估表面形态。通过测量固有凝血级联反应的接触相活化的变化来研究表面改性对聚氨酯的血液对血液对聚醚氨基甲酸酯反应的影响。数据表明,等离子体处理过程引起了PEU的表面改性,在所有情况下都增加了表面的极性。 O(2)和Ar等离子体导致引入含氧基团,这些基团在水性环境中存储后仍然存在。 N(2)和NH(3)等离子体导致了含氮基团的引入,但是在含水环境中存储后,它们被含氧基团取代。在所有等离子处理中,与未处理的表面相比,接触相活化降低,N(2)和NH(3)处理显着降低。

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