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首页> 外文期刊>Biopolymers: Original Research on Biomolecules and Biomolecular Assemblies >Electrospun Tecophilic/Gelatin Nanofibers with Potential for Small Diameter Blood Vessel Tissue Engineering
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Electrospun Tecophilic/Gelatin Nanofibers with Potential for Small Diameter Blood Vessel Tissue Engineering

机译:静电纺丝嗜冷/明胶纳米纤维具有用于小直径血管组织工程的潜力

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Tissue engineering techniques particularly using electrospun scaffolds have been intensively used in recent years for the development of small diameter vascular grafts. However, the development of a completely successful scaffold that fulfills multiple requirements to guarantee complete vascular regeneration remains challenging. In this study, a hydrophilic and compliant polyurethane namely Tecophilic (TP) blended with gelatin (gel) at a weight ratio of 70:30 (TP(70)/gel(30)) was electrospun to fabricate a tubular composite scaffold with biomechanical properties closely simulating those of native blood vessels. Hydrophilic properties of the composite scaffold induced non-thrombogenicity while the incorporation of gelatin molecules within the scaffold greatly improved the capacity of the scaffold to serve as an adhesive substrate for vascular smooth muscle cells (SMCs), in comparison to pure TP. Preservation of the contractile phenotype of SMCs seeded on electrospun TP(70)/gel(30) was yet another promising feature of this scaffold. The nanostructured TP(70)/gel(30) demonstrated potential feasibility toward functioning as a vascular graft.
机译:近年来,特别是使用电纺支架的组织工程技术已广泛用于开发小直径血管移植物。然而,满足多种要求以确保完全血管再生的完全成功的支架的开发仍然具有挑战性。在这项研究中,静电纺丝的亲水性和顺应性聚氨酯,即Tecophilic(TP)与明胶(gel)以70:30(TP(70)/ gel(30))的重量比进行静电纺丝,以制造具有生物力学性能的管状复合支架紧密模拟天然血管。与纯TP相比,复合支架的亲水特性可诱导非血栓形成性,而在支架中掺入明胶分子则大大提高了支架用作血管平滑肌细胞(SMC)的粘附底物的能力。保留在静电纺丝TP(70)/ gel(30)上的SMC的收缩表型是该支架的另一个有希望的特征。纳米结构的TP(70)/ gel(30)表现出潜在的可行性,可以用作血管移植物。

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