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Multifunctional silk-heparin biomaterials for vascular tissue engineering applications

机译:多功能丝-肝素生物材料在血管组织工程中的应用

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摘要

Over the past 30 years, silk has been proposed for numerous biomedical applications that go beyond its traditional use as a suture material. Silk sutures are well tolerated in humans, but the use of silk for vascular engineering applications still requires extensive biocompatibility testing. Some studies have indicated a need to modify silk to yield a hemocompatible surface. This study examined the potential of low molecular weight heparin as a material for refining silk properties by acting as a carrier for vascular endothelial growth factor (VEGF) and improving silk hemocompatibility. Heparinized silk showed a controlled VEGF release over 6 days; the released VEGF was bioactive and supported the growth of human endothelial cells. Silk samples were then assessed using a humanized hemocompatibility system that employs whole blood and endothelial cells. The overall thrombogenic response for silk was very low and similar to the clinical reference material polytetrafluoroethylene. Despite an initial inflammatory response to silk, apparent as complement and leukocyte activation, the endothelium was maintained in a resting, anticoagulant state. The low thrombogenic response and the ability to control VEGF release support the further development of silk for vascular applications.
机译:在过去的30年中,人们已经提出将蚕丝用于许多生物医学应用中,而不仅仅是将其用作缝合材料。丝绸缝合线在人类中具有良好的耐受性,但是将丝绸用于血管工程应用仍需要进行广泛的生物相容性测试。一些研究表明需要修饰蚕丝以产生与血液相容的表面。这项研究检验了低分子量肝素作为血管内皮生长因子(VEGF)载体和改善蚕丝血液相容性的一种提炼蚕丝特性的材料的潜力。肝素化丝在6天内显示出受控的VEGF释放;释放的VEGF具有生物活性,并支持人内皮细胞的生长。然后使用采用全血和内皮细胞的人源化血液相容性系统评估丝绸样品。丝绸的总体血栓形成反应非常低,与临床参考材料聚四氟乙烯相似。尽管最初对蚕丝有炎症反应,表现为补体和白细胞激活,但内皮细胞保持在静止的抗凝状态。低血栓形成反应和控制VEGF释放的能力支持了丝在血管应用中的进一步发展。

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