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Enhanced Patency and Endothelialization of Small-Caliber Vascular Grafts Fabricated by Coimmobilization of Heparin and Cell-Adhesive Peptides

机译:肝素和细胞粘附肽共固定制备的小口径血管移植物的通畅性和内皮化作用

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The clinical utility of a small-caliber vascular graft is still limited, owing to the occlusion of graft by thrombosis and restenosis. A small-caliber vascular graft (diameter, 2.5 mm) fabricated by electrospinning with a polyurethane (PU) elastomer (Pellethane) and biofunctionalized with heparin and two cell-adhesive peptides, GRGDS and YIGSR, was developed for the purpose of preventing the thrombosis and restenosis through antithrombogenic activities and endothelialization. The vascular grafts showed slightly reduced adhesion of platelets and significantly decreased adsorption of fibrinogen. In vitro studies demonstrated that peptide treatment on a vascular graft enhanced the attachment of human umbilical vein endothelial cells (HUVECs), and the presence of heparin and peptides on the graft significantly increased the proliferation of HUVECs. In vivo implantation of heparin/peptides coimmobilized graft (PU-PEG-Hep/G+Y) and PU (control) grafts was performed using an abdominal aorta rabbit model for 60 days followed by angiographic monitoring and explanting for histological analyses. The patency was significantly higher for the modified PU grafts (71.4%) compared to the PU grafts (46.2%) at 9 weeks after implantation. The nontreated PU grafts showed higher levels of alpha-SMA expression compared to the modified grafts, and for both samples, the proximal and distal regions expressed higher levels compared to the middle region of the grafts. Moreover, immobilization of heparin and peptides and adequate porous structure were found to play important roles in endothelialization and cellular infiltration. Our results strongly encourage that the development of small-caliber vascular grafts is feasible.
机译:小口径血管移植物的临床应用仍然受到限制,这是由于血栓形成和再狭窄而阻塞了移植物。为了防止血栓形成和血栓形成,开发了一种小口径血管移植物(直径为2.5 mm),该移植物是通过用聚氨酯(PU)弹性体(Pellethane)电纺丝制造的,并用肝素和两种细胞粘附肽GRGDS和YIGSR生物功能化的。通过抗血栓形成活动和内皮化引起的再狭窄。血管移植物显示血小板粘附力略微降低,血纤蛋白原的吸附显着降低。体外研究表明,对血管移植物进行肽处理可增强人脐静脉内皮细胞(HUVEC)的附着力,并且肝素和肽的存在会显着增加HUVEC的增殖。使用腹主动脉兔模型进行肝素/肽共固定移植物(PU-PEG-Hep / G + Y)和PU(对照)移植物的体内植入,进行60天,然后进行血管造影监测并进行组织学分析。与植入后9周的PU移植物(46.2%)相比,改性PU移植物的通畅性显着更高(71.4%)。与修饰的移植物相比,未经处理的PU移植物显示出更高水平的α-SMA表达,并且对于两个样品,与移植物的中间区域相比,近端和远端区域表达的水平更高。此外,发现肝素和肽的固定以及适当的多孔结构在内皮化和细胞浸润中起重要作用。我们的结果强烈鼓励开发小口径血管移植物是可行的。

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