首页> 美国卫生研究院文献>Scientific Reports >Poly(ethylmethacrylate-co-diethylaminoethyl acrylate) coating improves endothelial re-population bio-mechanical and anti-thrombogenic properties of decellularized carotid arteries for blood vessel replacement
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Poly(ethylmethacrylate-co-diethylaminoethyl acrylate) coating improves endothelial re-population bio-mechanical and anti-thrombogenic properties of decellularized carotid arteries for blood vessel replacement

机译:聚(甲基丙烯酸乙酯-丙烯酸二乙氨基乙酯)共聚物可改善内皮细胞的重新填充去机械化颈动脉的生物力学和抗血栓形成特性以替代血管

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摘要

Decellularized vascular scaffolds are promising materials for vessel replacements. However, despite the natural origin of decellularized vessels, issues such as biomechanical incompatibility, immunogenicity risks and the hazards of thrombus formation, still need to be addressed. In this study, we coated decellularized vessels obtained from porcine carotid arteries with poly (ethylmethacrylate-co-diethylaminoethylacrylate) (8g7) with the purpose of improving endothelial coverage and minimizing platelet attachment while enhancing the mechanical properties of the decellularized vascular scaffolds. The polymer facilitated binding of endothelial cells (ECs) with high affinity and also induced endothelial cell capillary tube formation. In addition, platelets showed reduced adhesion on the polymer under flow conditions. Moreover, the coating of the decellularized arteries improved biomechanical properties by increasing its tensile strength and load. In addition, after 5 days in culture, ECs seeded on the luminal surface of 8g7-coated decellularized arteries showed good regeneration of the endothelium. Overall, this study shows that polymer coating of decellularized vessels provides a new strategy to improve re-endothelialization of vascular grafts, maintaining or enhancing mechanical properties while reducing the risk of thrombogenesis. These results could have potential applications in improving tissue-engineered vascular grafts for cardiovascular therapies with small caliber vessels.
机译:去细胞的血管支架是用于血管替代的有前途的材料。然而,尽管脱细胞血管的天然来源,但仍需要解决诸如生物力学不相容,免疫原性风险和血栓形成的危害等问题。在这项研究中,我们用聚(甲基丙烯酸乙酯-co-二乙基氨基乙基丙烯酸酯)(8g7)包被从猪颈动脉获得的脱细胞血管,以改善内皮细胞覆盖率和最小化血小板附着,同时增强脱细胞血管支架的机械性能。该聚合物以高亲和力促进内皮细胞(EC)的结合,还诱导了内皮细胞毛细管的形成。另外,血小板在流动条件下显示出在聚合物上的粘附减少。此外,脱细胞动脉的涂层通过增加其抗张强度和负荷改善了其生物力学性能。此外,在培养5天后,植入8g7涂层脱细胞动脉腔表面的ECs表现出良好的内皮再生。总体而言,这项研究表明,脱细胞血管的聚合物涂层提供了一种新的策略,可以改善血管移植物的再内皮化,维持或增强机械性能,同时降低血栓形成的风险。这些结果可能在改善小口径血管心血管治疗的组织工程血管移植物中具有潜在的应用价值。

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