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首页> 外文期刊>European Polymer Journal >Fabrication of core-shell structured nanofibers of poly (lactic acid) and poly (vinyl alcohol) by coaxial electrospinning for tissue engineering
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Fabrication of core-shell structured nanofibers of poly (lactic acid) and poly (vinyl alcohol) by coaxial electrospinning for tissue engineering

机译:通过同轴静电纺织芯螺旋用于组织工程,制备聚(乳酸)和聚(乙烯醇)的核心壳结构纳米纤维

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摘要

Poly Lactic Acid (PLA) nanofiber scaffold has enjoyed great interest as a candidate bioactive material for tissue regeneration. However, the hydrophobic nature of PLA and its weak mechanical properties with poor ductility and low strength hinder its practical applications. In this study, coaxial electrospinning was used to fabricate core-shell composite nanofibers with PLA in the core and PVA in the shell with significant enhancements in the surface wetting and mechanical properties. More specifically, the core/shell-structured PLA/PVA nanofiber mat exhibited excellent hydrophilic properties with a water contact angle of 27 +/- 1.5 degrees compared to 110 degrees +/- 2.5 degrees for pristine PLA. Moreover, the fabricated composite nanofibers displayed nearly 254% and 175% increase in tensile strength and strain at failure, respectively, compared to pristine PLA (14.5 MPa vs. 4.1 MPa for tensile strength and 110% vs. 40% for ductility). The coaxial electrospun PLA(core)/PVA(shell) nanofibers also showed suitable properties for proliferation, and attachment of human embryonic kidney cells (HEK-293). These excellent combined mechanical, surface wetting, and cytocompatibility properties clearly demonstrate the potential applications of the synthetic core-shell PLA/PVA composite nanofibers in biomedical and tissue regeneration.
机译:聚乳酸(PLA)纳米纤维支架具有很大的兴趣作为组织再生的候选生物活性材料。然而,PLA的疏水性质及其弱力力学性能差,延展性差和低强度妨碍了其实际应用。在这项研究中,同轴电纺纺织术用在壳体中用PLA制造核 - 壳复合纳米纤维,在壳体中具有显着增强的表面润湿和机械性能。更具体地,核/壳结构PLA / PVA纳米纤维垫具有优异的亲水性,与原始PLA的110℃+/- 2.5度相比具有27 +/- 1.5度的水接触角。此外,与原始PLA相比,制造的复合纳米纤维分别显示出近254%和175%的抗拉强度和菌株的菌株增加(14.5MPa与拉伸强度为4.1MPa,延展性为110%vs.40%)。同轴电纺PLA(核心)/ PVA(壳)纳米纤维还显示出适当的增殖性能,以及人胚胎肾细胞(HEK-293)的附着。这些优异的组合机械,表面润湿和细胞相容性清楚地证明了合成核 - 壳PLA / PVA复合纳米纤维在生物医学和组织再生中的潜在应用。

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