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Thermal and Physico-Mechanical Characterizations of Thromboresistant Polyurethane Films

机译:血栓聚合物聚氨酯膜的热和物理机械表征

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摘要

Hemocompatibility remains a challenge for injectable and/or implantable medical devices, and thromboresistant coatings appear to be one of the most attractive methods to down-regulate the unwanted enzymatic reactions that promote the formation of blood clots. Among all polymeric materials, polyurethanes (PUs) are a class of biomaterials with excellent biocompatibility and bioinertness that are suitable for the use of thromboresistant coatings. In this work, we investigated the thermal and physico-mechanical behaviors of ester-based and ether-based PU films for potential uses in thromboresistant coatings. Our results show that poly(ester urethane) and poly(ether urethane) films exhibited characteristic peaks corresponding to their molecular configurations. Thermal characterizations suggest a two-step decomposition process for the poly(ether urethane) films. Physico-mechanical characterizations show that the surfaces of the PU films were hydrophobic with minimal weight changes in physiological conditions over 14 days. All PU films exhibited high tensile strength and large elongation to failure, attributed to their semi-crystalline structure. Finally, the in vitro clotting assays confirmed their thromboresistance with approximately 1000-fold increase in contact time with human blood plasma as compared to the glass control. Our work correlates the structure-property relationships of PU films with their excellent thromboresistant ability.
机译:血液化仍然是可注射和/或可植入的医疗装置的挑战,血栓粘接剂涂层似乎是下调促进血栓形成的不需要酶促反应的最具吸引力的方法之一。在所有聚合物材料中,聚氨酯(PU)是一类生物材料,具有优异的生物相容性和生物营养性,其适合于使用血栓粘附剂涂层。在这项工作中,我们研究了基于酯基和基于醚的PU膜的热和物理机械行为,用于血栓粘附剂涂层的潜在用途。我们的结果表明,聚(酯氨基甲酸酯)和聚(醚氨基甲酸酯)膜表现出与其分子构型对应的特征峰。热特征表明聚(醚氨基甲酸酯)膜的两步分解过程。物理机械表征表明,PU薄膜的表面是疏水性,体重最小的重量变化超过14天。所有PU薄膜都表现出高抗拉强度和大幅度的失效伸长,归因于它们的半晶结构。最后,与玻璃对照相比,体外凝血测定的血栓抑制测定与人血浆的接触时间增加约1000倍。我们的作品将PU膜的结构性质关系与优异的血栓粘接剂能力相关联。

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