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A simply prepared small-diameter artificial blood vessel that promotes in situ endothelialization

机译:简单地制备的小直径人工血管,促进原位内皮化

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Synthetic grafts are of limited use in small-diameter vessels (Phi < 6 mm) due to the poor patency rate. The inability of such grafts to achieve early endothelialization together with the compliance mismatch between the grafts and the native vessels promote thrombosis, which eventually leads to graft occlusion. In the current study, stromal cell-derived factor (SDF)-1 alpha/vascular endothelial growth factor (VEGF)loaded polyurethane (PU) conduits were simply prepared via electrospinning. The mechanical property, drug release behavior and cytocompatibility of the conduits were investigated. The effects of the conduits on endothelial progenitor cell (EPC) mobilization and differentiation were examined in vitro. Then, the conduits were implanted as canine femoral artery interposition grafts. The results revealed that SDF-1 alpha and VEGF were quickly released shortly after implantation, and the conduits exhibited slow and sustained release thereafter. The cytokines had definite effects on EPC mobilization and differentiation in vitro and promoted conduit endothelialization in vivo. The conduits had good tissue compatibility and favorable compliance. All of these features inhibited the conduits from being occluded, thereby improving their long-term patency rate. At 6th month postoperatively, 5 of the 8 grafts were patent while all the 8 grafts without the cytokines were occluded. These findings provide a simple and effective method for the construction of small-diameter artificial blood vessels with the aim of facilitating early endothelialization and improving long-term patency.
机译:由于差的通畅率差,合成移植物有限地用于小直径容器(PHI <6mm)。这种移植物的不能与移植物和天然血管之间的依从性失配一起实现早期内皮化,促进血栓形成,最终导致移植物闭塞。在目前的研究中,仅通过静电纺丝制备基质细胞衍生因子(SDF)-1α/血管内皮生长因子(VEGF)负载的聚氨酯(PU)导管。研究了导管的机械性能,药物释放行为和细胞栓塞性。在体外检查导管对内皮祖细胞(EPC)动员和分化的影响。然后,将导管植入为犬股动脉插入移植物。结果表明,植入后不久,SDF-1α和VEGF迅速释放,并且随后表现出缓慢和缓释。细胞因子对EPC动员和体外促进导管内皮化的效果明确影响。导管具有良好的组织兼容性和有利的顺应性。所有这些特征抑制了导管被遮挡,从而提高了它们的长期通畅率。在术后第6个月,8个移植物中的5个是专利,而没有细胞因子的所有8个移植物被堵塞。这些发现提供了一种简单有效的方法,用于构建小径人工血管,目的是促进早期内皮化和改善长期通畅。

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