首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Nitric oxide-releasing polyurethane-PEG copolymer containing the YIGSR peptide promotes endothelialization with decreased platelet adhesion.
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Nitric oxide-releasing polyurethane-PEG copolymer containing the YIGSR peptide promotes endothelialization with decreased platelet adhesion.

机译:包含YIGSR肽的一氧化氮释放型聚氨酯-PEG共聚物可促进内皮化,降低血小板粘附。

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摘要

Thrombosis and intimal hyperplasia are the principal causes of small-diameter vascular graft failure. To improve the long-term patency of polyurethane vascular grafts, we have incorporated both poly(ethylene glycol) and a diazeniumdiolate nitric oxide (NO) donor into the backbone of polyurethane to improve thromboresistance. Additionally, we have incorporated the laminin-derived cell adhesive peptide sequence YIGSR to encourage endothelial cell adhesion and migration, while NO release encourages endothelial cell proliferation. NO production by polyurethane films under physiological conditions demonstrated biphasic release, in which an initial burst of 70% of the incorporated NO was released within 2 days, followed by sustained release over 2 months. Endothelial cell proliferation in the presence of the NO-releasing material was increased as compared to control polyurethane, and platelet adhesion to polyethylene glycol-containing polyurethane was decreased significantly with the addition of the NO donor.
机译:血栓形成和内膜增生是小直径血管移植物衰竭的主要原因。为了提高聚氨酯血管移植物的长期开放性,我们将聚乙二醇和二醇二氮烯二氮氧化物一氧化氮(NO)供体都掺入了聚氨酯的骨架中,以提高抗血栓形成性。另外,我们掺入了层粘连蛋白衍生的细胞粘附肽序列YIGSR以促进内皮细胞粘附和迁移,而NO释放则促进内皮细胞增殖。聚氨酯膜在生理条件下产生的NO表现出两相释放,其中最初掺入的NO的突发释放在2天内释放,然后在2个月内持续释放。与对照聚氨酯相比,在存在释放NO的物质的情况下内皮细胞的增殖增加,并且通过添加NO供体,血小板对含聚乙二醇的聚氨酯的粘附性显着降低。

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