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Fabrication of triple-layered vascular grafts composed of silk fibers, polyacrylamide hydrogel, and polyurethane nanofibers with biomimetic mechanical properties

机译:具有丝纤维,聚丙烯酰胺水凝胶和聚氨酯纳米纤维的三层血管移植物的制备,具有仿生性能

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摘要

Mimicking the mechanical properties of native tissue is an important requirement for tissue engineering scaffolds. Blood vessels are subject to repetitive dilation and contraction and possess a special nonlinear mechanical property due to their triple-layered structure. Fabrication of vascular grafts consisting of bioresorbable materials with biomimetic mechanical properties is an urgent demand, as well as a critical challenge. Inspired by the configuration and function of collagen and elastin in native blood vessels, a new type of triple-layered vascular graft (TLVG) was developed in this study. The TLVGs were composed of braided silk as the inner layer, polyacrylamide (PAM) hydrogel as the middle layer, and electrospun thermoplastic polyurethane (TPU) as the outer layer. The woven-structured silk fibers were able to mimic the properties of the loosely distributed collagen fibers, while the highly elastic PAM hydrogel and TPU nanofibers mimicked the elasticity of elastin in the blood vessel. With this specially designed microstructure and combination of rigid and elastic materials, the TLVGs successfully mimicked the nonlinear mechanical property of native blood vessels. Moreover, TLVGs possess sufficient suture retention strength for surgical implantation. The introduction of a PAM hydrogel layer effectively solved the leaking issue for conventional porous vascular grafts and greatly enhanced the burst pressure. In addition, all materials used have high biocompatibility to human endothelial cells, which indicates that the developed TLVGs have high potential to be used as readily available vascular grafts.
机译:模仿本地组织的力学性能是组织工程支架的重要要求。由于其三层结构,血管受重复扩张和收缩,并且具有特殊的非线性机械性能。由具有仿生机械性能的可生物吸收材料组成的血管移植物的制备是一种紧迫的需求,以及临界挑战。灵感灵感来自胶原蛋白和胶蛋白在天然血管中,在本研究中开发了一种新型的三层血管移植物(TLVG)。 TLVG由作为内层的编织丝,聚丙烯酰胺(PAM)水凝胶作为中间层,以及作为外层的电纺热塑性聚氨酯(TPU)。编织结构的丝纤维能够模仿松散分布的胶原纤维的性质,而高度弹性的PAM水凝胶和TPU纳米纤维模仿血管中弹性蛋白的弹性。通过这种专门设计的微观结构和刚性和弹性材料的组合,TLVGS成功地模仿原生血管的非线性力学性能。此外,TLVGS具有足够的缝合保留强度,用于外科植入。 PAM水凝胶层的引入有效地解决了常规多孔血管移植物的泄漏问题,大大提高了突发压力。此外,所用的所有材料都具有高生物相容性对人内皮细胞,这表明所发育的TLVG具有高潜力,以易于可获得的血管移植物。

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