College of Mechanical Engineering, Yangzhou University, No. 196 West Huayang Road, Yangzhou, 225127, China.
Nantong Fuleda Vehicle Accessory Component Co., Ltd, Nantong, 226300, China.
J Mater Sci Mater Med. 2022 Dec 31;34(1):6. doi: 10.1007/s10856-022-06707-x.
Electrospinning is a promising technique for preparing bioartificial blood vessels. Nanofibers prepared by electrospinning can simulate the structure of extracellular matrix to promote cell adhesion and proliferation. However, thorn-like protrusions can appear as defects on electrospun scaffolds and coaxial electrospun nanofibers often have no clear core/shell structure, which can seriously affect the quality of bioartificial blood vessels. To address these problems, Tween 80 is added to the electrospinning solution, which results in a stable Taylor cone, eliminates the thorn-like protrusions on electrospun bioartificial blood vessels, and reduces interfacial effects due to different core/shell solutions during coaxial electrospinning. Simulations, biomechanical tests, and in vivo studies were performed. The results demonstrate the excellent mechanical properties and biocompatibility of the bioartificial blood vessel. This research provides a useful reference for optimizing the electrospinning process for fabricating bioartificial blood vessels.
静电纺丝是一种很有前途的制备生物人工血管的技术。静电纺丝制备的纳米纤维可以模拟细胞外基质的结构,促进细胞黏附和增殖。然而,静电纺丝支架上会出现刺状突起等缺陷,并且同轴静电纺丝纳米纤维通常没有明确的核/壳结构,这会严重影响生物人工血管的质量。为了解决这些问题,在静电纺丝溶液中添加吐温 80,得到稳定的泰勒锥,消除了静电纺丝生物人工血管上的刺状突起,并且减少了同轴静电纺丝中外层/内层溶液之间的界面效应。进行了模拟、生物力学测试和体内研究。结果表明,生物人工血管具有优异的力学性能和生物相容性。这项研究为优化静电纺丝工艺制备生物人工血管提供了有益的参考。