Current Strategies of Surface Modifications to Polyurethane Biomaterials for Vascular Grafts.

Huai-Gu Huang, Tao Xiang, Yue-Xin Chen
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Abstract

As the number of patients suffering from cardiovascular diseases and peripheral vascular diseases rises, the constraints of autologous transplantation remain unavoidable. As a result, artificial vascular grafts must be developed. Adhesion of proteins, platelets and bacteria on implants can result in stenosis, thrombus formation, and postoperative infection, which can be fatal for an implantation. Polyurethane, as a commonly used biomaterial, has been modified in various ways to deal with the adhesions of proteins, platelets, and bacteria and to stimulate endothelium adhesion. In this review, we briefly summarize the mechanisms behind adhesions, overview the current strategies of surface modifications of polyurethane biomaterials used in vascular grafts, and highlight the challenges that need to be addressed in future studies, aiming to gain a more profound understanding of how to develop artificial polyurethane vascular grafts with an enhanced implantation success rate and reduced side effect.

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用于血管移植物的聚氨酯生物材料表面改性的当前策略。
随着心血管疾病和外周血管疾病患者人数的增加,自体移植的局限性仍然不可避免。因此,必须开发人工血管移植物。蛋白质、血小板和细菌在植入物上的附着会导致血管狭窄、血栓形成和术后感染,这对植入物来说可能是致命的。聚氨酯作为一种常用的生物材料,在处理蛋白质、血小板和细菌粘附以及刺激内皮粘附方面有多种改良方法。在这篇综述中,我们简要总结了粘附背后的机制,概述了目前用于血管移植物的聚氨酯生物材料的表面改性策略,并强调了未来研究中需要应对的挑战,目的是更深入地了解如何开发能提高植入成功率并减少副作用的人工聚氨酯血管移植物。
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