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首页> 外文期刊>Bioactive Materials >Syntheses and characterization of anti-thrombotic and anti-oxidative Gastrodin-modified polyurethane for vascular tissue engineering
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Syntheses and characterization of anti-thrombotic and anti-oxidative Gastrodin-modified polyurethane for vascular tissue engineering

机译:用于血管组织工程抗血栓形成和抗氧化毒素改性聚氨酯的合成与表征

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摘要

Vascular grafts must avoid negative inflammatory responses and thrombogenesis to prohibit fibrotic deposition immediately upon implantation and promote the regeneration of small diameter blood vessels (6?mm inner diameter). Here, polyurethane (PU) elastomers incorporating anti-coagulative and anti-inflammatory Gastrodin were fabricated. The films had inter-connected pores with porosities equal to or greater than 86% and pore sizes ranging from 250 to 400?μm. Incorporation of Gastrodin into PU films resulted in desirable mechanical properties, hydrophilicity, swelling ratios and degradation rates without collapse. The released Gastrodin maintained bioactivity over 21 days as assessed by its anti-oxidative capability. The Gastrodin/PU had better anti-coagulation response (less observable BSA, fibrinogen and platelet adhesion/activation and suppressed clotting in whole blood). Red blood cell compatibility, measured by hemolysis, was greatly improved with 2Gastrodin/PU compared to other Gastrodin/PU groups. Notably, Gastrodin/PU upregulated anti-oxidant factors Nrf2 and HO-1 expression in H 2 O 2 treated HUVECs, correlated with decreasing pro-inflammatory cytokines TNF-α and IL-1β in RAW 264.7 cells. Upon implantation in a subcutaneous pocket, PU was encapsulated by an obvious fibrous capsule, concurrent with a large amount of inflammatory cell infiltration, while Gastrodin/PU induced a thinner fibrous capsule, especially 2Gastrodin/PU. Further, enhanced adhesion and proliferation of HUVECs seeded onto films in vitro demonstrated that 2Gastrodin/PU could help cell recruitment, as evidenced by rapid host cell infiltration and substantial blood vessel formation in vivo . These results indicate that 2Gastrodin/PU has the potential to facilitate blood vessel regeneration, thus providing new insight into the development of clinically effective vascular grafts.
机译:血管移植物必须避免阴性炎症反应和血栓发生,以在植入后立即禁止纤维化沉积,促进小直径血管的再生(&6Ωmm内径)。这里,制备掺入抗凝固和抗炎胃泌素的聚氨酯(PU)弹性体。薄膜具有相互连接的孔,孔隙率等于或大于86%,孔径范围为250至400Ωμm。将腓素掺入PU膜导致理想的机械性能,亲水性,溶胀比和降解速率而没有坍塌。通过其抗氧化能力评估,释放的胃泌素在21天内保持生物活性。 Gastrodin / PU具有更好的抗凝固反应(较少观察到的BSA,纤维蛋白原和血小板粘附/激活,并且全血抑制凝固)。通过溶血测量的红细胞相容性,与其他胃脂/ PU组相比,通过2gastrodin / pu大大提高了大大改善。值得注意的是,H 2 O 2处理Huvecs中的胃脂/ PU上调的抗氧化因子NRF2和HO-1表达,与Raw 264.7细胞中的促炎细胞因子TNF-1β和IL-1β相关联。在植入皮下袋时,PU被明显的纤维胶囊包封,并随着大量炎症细胞浸润的同时,而Gastrodin / Pu诱导较薄的纤维胶囊,尤其是2gastrodin / pu。此外,在体外接种薄膜上的Huvecs的增强粘附和增​​殖证明了2gastrodin / Pu可以帮助细胞募集,如快速宿主细胞浸润和体内血管形成所证明的。这些结果表明,2Gastrodin / PU有可能促进血管再生,从而为临床有效的血管移植物的发育提供新的洞察力。

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