首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Antithrombogenic property of bone marrow mesenchymal stem cells in nanofibrous vascular grafts
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Antithrombogenic property of bone marrow mesenchymal stem cells in nanofibrous vascular grafts

机译:纳米纤维血管移植物中骨髓间充质干细胞的抗血栓形成特性

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Nanostructured biomaterials have tremendous potential for tissue engineering. However, the performance and integration of the nanomaterials in vivo are not well understood. A challenge in vascular tissue engineering is to develop optimal scaffolds and establish expandable cell sources for the construction of tissue-engineered vascular grafts that are nonthrombogenic and have long-term patency. Here, we used tissue-engineered vascular grafts as a model to demonstrate the potential of combining nanofibrous scaffolds and bone marrow mesenchymal stem cells (MSCs) for vascular tissue engineering. Biodegradable nanofibrous scaffolds with aligned nanofibers were used to mimic native collagen fibrils to guide cell organization in vascular grafts. The results from artery bypass experiments showed that nanofibrous scaffolds allowed efficient infiltration of vascular cells and matrix remodeling. Acellular grafts (without MSCs) resulted in significant intimal thickening, whereas cellular grafts (with MSCs) had excellent long-term patency and exhibited well organized layers of endothelial cells (ECs) and smooth muscle cells (SMCs), as in native arteries. Short-term experiments showed that nanofibrous scaffolds alone induced platelet adhesion and thrombus formation, which was suppressed by MSC seeding. In addition, MSCs, as ECs, resisted platelet adhesion in vitro, which depended on cell-surface heparan sulfate proteoglycans. These data, together with the observation on the short-term engraftment of MSCs, suggest that the long-term patency of cellular grafts may be attributed to the antithrombogenic property of MSCs. These results demonstrate several favorable characteristics of nanofibrous scaffolds, the excellent patency of small-diameter nanofibrous vascular grafts, and the unique antithrombogenic property of MSCs.
机译:纳米结构生物材料在组织工程中具有巨大的潜力。然而,纳米材料在体内的性能和整合尚不十分清楚。血管组织工程学中的一个挑战是开发最佳支架并建立可扩展的细胞来源,以构建非血栓形成且具有长期开放性的组织工程血管移植物。在这里,我们使用组织工程化的血管移植物作为模型来证明将纳米纤维支架与骨髓间充质干细胞(MSC)结合用于血管组织工程化的潜力。具有对齐的纳米纤维的可生物降解的纳米纤维支架被用来模仿天然胶原纤维,以指导血管移植物中的细胞组织。动脉旁路实验的结果表明,纳米纤维支架可以使血管细胞有效浸润和基质重塑。无细胞移植物(无MSCs)导致内膜明显增厚,而细胞移植物(有MSCs)具有出色的长期通畅性,并表现出内皮细胞(ECs)和平滑肌细胞(SMCs)良好组织的层,就像在天然动脉中一样。短期实验表明,仅纳米纤维支架可诱导血小板粘附和血栓形成,而MSC接种可抑制血小板粘附和血栓形成。另外,作为EC的MSC在体外抵抗血小板粘附,这取决于细胞表面硫酸乙酰肝素蛋白聚糖。这些数据,加上对MSCs短期移植的观察,表明细胞移植物的长期开放可能归因于MSCs的抗血栓形成特性。这些结果证明了纳米纤维支架的几个有利特性,小直径纳米纤维血管移植物的优异通畅性以及MSC的独特抗血栓形成特性。

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