A'/> Mechanical properties and osteogenic activity of poly(<ce:small-caps>l</ce:small-caps>-lactide) fibrous membrane synergistically enhanced by chitosan nanofibers and polydopamine layer
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Mechanical properties and osteogenic activity of poly(l-lactide) fibrous membrane synergistically enhanced by chitosan nanofibers and polydopamine layer

机译:聚( L -Lactide)纤维膜的机械性能和骨质发生活性通过壳聚糖纳米纤维和聚二胺层协同增强

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摘要

Abstract To synergistically improve the mechanical properties and osteogenic activity of electrospinning poly(l-lactide) (PLLA) membrane, chitosan (CS) nanofibers were firstly introduced to prepare sub-micro and nanofibers interpenetrated PLLA/CS membrane, which was further surface modified with a polydopamine (PDA) layer to obtain PLLA/CS-PDA. Surface morphology, porosity, surface area and hydrophilicity of the obtained fibrous membranes were studied in detail. As compared to pure PLLA, the significant increase in the mechanical properties of the PLLA/CS, and especially of the PLLA/CS-PDA, was confirmed by tensile testing both in dry and wet states. Cells culture results indicated that both the PLLA/CS and PLLA/CS-PDA membranes, especially the latter, were more beneficial to adhesion, spreading and proliferation, as well as up-regulating alkaline phosphate activity and calcium deposition of MC3T3-E1 cells than PLLA membrane. Results suggested there was a synergistic effect of the CS nanofibers and PDA layer on the mechanical properties and osteogenic activity of PLLA membrane. Graphical abstract Display Omitted Highlights ? Sub-micro/nanofibers interpenetrated PLLA/CS membrane was successfully designed. ? The PLLA/CS fibrous membrane was further surface modified with a PDA layer. ? Hydrophilicity and tensile property of PLLA membrane was improved by modification. ? The PLLA/CS-PDA was more suited for cell growth and osteogenic differentiation. ? CS and PDA synergistically enhanced tensile properties and osteogenesis of PLLA. ]]>
机译:<![cdata [ 抽象 协同改善静电纺丝聚( L - 碱)(PLLA)膜,壳聚糖(Cs)纳米纤维以制备亚微米和纳米纤维的渗透性PLLA / CS膜,其用聚德莫胺(PDA)层进行进一步改性的表面以获得PLLA / CS-PDA。研究了所得纤维膜的表面形态,孔隙率,表面积和亲水性。与纯PLLA相比,通过在干燥和湿态中通过拉伸试验证实了PLLA / CS的机械性能,尤其是PLLA / CS-PDA的显着增加。细胞培养结果表明,PLLA / CS和PLLA / CS-PDA膜,尤其是后者,对粘附,扩散和增殖更有利,以及MC3T3-E1细胞的碱性磷酸盐活性和钙沉积而不是Plla膜。结果表明,Cs纳米纤维和PDA层对PLLA膜的机械性能和成骨活性进行了协同作用。 图形抽象 显示省略 亮点 副微/纳米纤维渗透PLLA / CS膜已成功设计。 PLLA / Cs纤维膜进一步用PDA层改性表面。 Plla膜的亲水性和拉伸性质得到改善通过修改。 PLLA / CS-PDA更适合细胞生长和成骨分化。 cs和pda协同增强的普拉拉的拉伸性和骨质发生。 ]]>

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  • 作者单位

    Biomaterial Research Laboratory Department of Material Science and Engineering College of Science and Engineering Jinan University;

    Biomaterial Research Laboratory Department of Material Science and Engineering College of Science and Engineering Jinan University;

    Biomaterial Research Laboratory Department of Material Science and Engineering College of Science and Engineering Jinan University;

    Biomaterial Research Laboratory Department of Material Science and Engineering College of Science and Engineering Jinan University;

    Biomaterial Research Laboratory Department of Material Science and Engineering College of Science and Engineering Jinan University;

    Biomaterial Research Laboratory Department of Material Science and Engineering College of Science and Engineering Jinan University;

    Biomaterial Research Laboratory Department of Material Science and Engineering College of Science and Engineering Jinan University;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学;
  • 关键词

    Poly(l-lactide); Chitosan; Polydopamine; Synergistic effect; Mechanical properties; Osteogenic activity;

    机译:聚(L-丙交酯);壳聚糖;聚二胺;协同效应;机械性能;成骨活性;

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