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Engineering small-caliber vascular grafts from collagen filaments and nanofibers with comparable mechanical properties to native vessels

机译:从胶原纤丝和纳米纤维的工程小口径血管移植物,具有与天然容器相当的机械性能

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At the present time, there is no successful synthetic, off-the-shelf small-caliber vascular graft (<6 mm) for the repair or bypass of the coronary or carotid arteries. This stimulates on-going investigations to fabricate an artificial vascular graft that has both sufficient mechanical properties as well as superior biological performance. Collagen has long been considered as a viable material to encourage cell recruitment, tissue regeneration, and revascularization, but its use has been limited by its inferior mechanical properties. In this study, novel electrochemically aligned collagen filaments were used to engineer a bilayer small-caliber vascular graft, by circular knitting the collagen filaments and electrospinning collagen nanofibers. The collagen prototype grafts showed significantly greater bursting strength under dry and hydrated conditions to that of autografts such as the human internal mammary artery and the saphenous vein (SV). The suture retention strength was sufficient under dry condition, but that under hydrated condition needs to be further improved. The radial dynamic compliance of the collagen grafts was similar to that of the human SV. During in vitro cell culture assays with human umbilical vein endothelial cells, the prototype collagen grafts also encouraged cell adhesion and promoted cell proliferation compared to the synthetic poly(lactic acid) grafts. In conclusion, this study demonstrated the feasibility of the use of novel collagen filaments for fabricating small caliber tissue-engineered vascular grafts that provide both sufficient mechanical properties and superior biological performance.
机译:目前,对于冠状动脉或颈动脉的修复或旁路,没有成功的合成,现成的小口径血管血管移植物(<6mm)。这刺激了进行的正在进行的研究,以制造人工血管移植物,所述人工血管移植物具有足够的机械性能以及优异的生物学性能。胶原蛋白长期被认为是一种可行的材料,以鼓励细胞募集,组织再生和血运重建,但其使用受其劣质机械性能的限制。在这项研究中,通过圆锥形胶原丝和静电纺丝胶原烯纤维,使用新型电化学对准的胶原丝胶原用于工程到双层小口腔血管移植物。胶原蛋白原型移植物在干燥和水合条件下显示出明显更大的爆破强度,与自体移植物等人内乳腺动脉和隐静脉(SV)的裂缝。在干燥条件下,缝合保留强度足够,但需要进一步改善水合条件下。胶原蛋白移植物的径向动态符合性与人类SV的径向动态依从性类似。在具有人脐静脉内皮细胞的体外细胞培养测定期间,与合成聚(乳酸)移植物相比,原型胶原移植物还鼓励细胞粘附和促进的细胞增殖。总之,本研究表明,使用新型胶原胶原细丝用于制造小口径组织工程血管移植物的可行性,所述小口径组织工程血管移植物提供足够的机械性能和优异的生物学性能。

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