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Surface Characterization of Asymmetric Bi-Soft Segment Poly(ester urethane urea) Membranes for Blood-Oxygenation Medical Devices

机译:用于血液氧合医疗设备的不对称双软链段聚(酯尿烷脲)膜的表面表征

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摘要

Asymmetric bi-soft segment poly(ester urethane urea) (PEUU) membranes containing polycaprolactone (PCL) as a second soft segment are synthesized with PCL-diol ranging from 0% to 15% (w/w). Bulk and surface characteristics of the PEUU membranes were investigated by scanning electron microscopy (SEM), static water contact angles, and surface streaming potentials and were correlated to hemocompatibility properties, namely, hemolysis and thrombosis degrees. SEM analysis reveals PEUU membranes with asymmetric cross-sections and top dense surfaces with distinct morphologies. The increase in PCL-diol content yields PEUU membranes with blood-contacting surfaces that are smoother, more hydrophilic, and with higher maximum zeta potentials. The results obtained in this work give no evidence of a correlation between hydrophilicity/zeta potentials and the hemolysis/thrombosis degree of blood-contacting surfaces of the PEUU membranes. In contrast, other hemocompatibility aspects reveal that the more hydrophilic membranes are associated with lower platelet deposition and inhibition of extreme states of platelet activation.
机译:包含聚己内酯(PCL)作为第二个软链段的不对称双软链段聚(酯氨基甲酸酯尿素)(PEUU)膜,其PCL-二醇的合成范围为0%至15%(w / w)。 PEUU膜的体积和表面特性通过扫描电子显微镜(SEM),静态水接触角和表面流电势进行了研究,并与血液相容性相关,即溶血和血栓形成程度。 SEM分析显示PEUU膜具有不对称的横截面和顶部致密的表面,具有独特的形态。 PCL-二醇含量的增加会产生具有血液接触表面的PEUU膜,该表面更光滑,更亲水并且具有更高的最大zeta电位。在这项工作中获得的结果没有证据表明亲水性/ζ电势与PEUU膜的血液接触表面的溶血/血栓形成程度之间存在相关性。相反,其他血液相容性方面显示,亲水性更高的膜与较低的血小板沉积和抑制血小板活化的极端状态有关。

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