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首页> 外文期刊>Journal of biomedical materials research, Part A >Endothelialization of electrospun polycaprolactone (PCL) small caliber vascular grafts spun from different polymer blends
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Endothelialization of electrospun polycaprolactone (PCL) small caliber vascular grafts spun from different polymer blends

机译:由不同聚合物共混物纺制的电纺聚己内酯(PCL)小口径血管移植物的内皮化

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摘要

Small caliber vascular grafts represent a challenge to material scientists. In contrast to large caliber grafts, prostheses with diameter <6 mm, lead to increased hemodynamic disturbances and thrombogenic complications. Thus, endothelialization of small caliber grafts should create a compatible interface for hemodynamic processes. The purpose of our study was to compare different compositions of electrospun scaffolds with conventional ePTFE grafts with an inner diameter of 4 mm as well as different pre-coatings to create an optimized physiological interface for endothelialization. Polycaprolactone, polylactide, and polyethylenglycol (PCL/PLA and PCL/PLA/PEG) electrospun grafts and ePTFE grafts were pre-coated with blood, gelatine or fibronectin and seeded with endothelial cells from the human term placenta. Best results were obtained with fibronectin-coated PCL/PLA/PEG grafts. Here, the number of attached viable cells was 78-81% higher than on fibronectin pre-treated ePTFE grafts. Cells attached to PCL/PLA/PEG grafts appeared in physiological cobblestone morphology. Viability analysis showed a high cell viability of more than 98%. Fibronectin-coated PCL/PLA/PEG grafts may be a promising improvement to conventionally used ePTFE grafts.
机译:小口径血管移植物对材料科学家构成了挑战。与大口径的移植物相比,直径小于6毫米的假体会增加血液动力学紊乱和血栓形成并发症。因此,小口径移植物的内皮化应为血流动力学过程创建兼容的界面。我们研究的目的是比较内径为4 mm的常规ePTFE移植物与电纺支架的不同组成以及不同的预涂层,以创建用于内皮化的最佳生理界面。将聚己内酯,聚丙交酯和聚乙二醇(PCL / PLA和PCL / PLA / PEG)电纺丝移植物和ePTFE移植物预先涂有血液,明胶或纤连蛋白,并接种了来自人胎盘的内皮细胞。纤连蛋白包被的PCL / PLA / PEG移植物获得了最佳结果。在这里,附着的活细胞数量比纤连蛋白预处理的ePTFE移植物高78-81%。附着在PCL / PLA / PEG移植物上的细胞以生理鹅卵石形态出现。生存力分析显示高的细胞生存力超过98%。纤连蛋白包被的PCL / PLA / PEG移植物可能是对常规使用的ePTFE移植物的有希望的改进。

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