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Biomineralized poly (L-lactic-co-glycolic acid)-tussah silk fibroin nanofiber fabric with hierarchical architecture as a scaffold for bone tissue engineering

机译:具有分层结构的生物矿化聚(L-乳酸-乙醇酸)-tus蚕丝丝蛋白纳米纤维织物,作为骨组织工程的支架

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摘要

In bone tissue engineering, the fabrication of a scaffold with a hierarchical architecture, excellent mechanical properties, and good biocompatibility remains a challenge. Here, a solution of polylactic acid (PLA) and Tussah silk fibroin (TSF) was electrospun into nanofiber yarns and woven into multilayer fabrics. Then, composite scaffolds were obtained by mineralization in simulated body fluid (SBF) using the multilayer fabrics as a template. The structure and related properties of the composite scaffolds were characterized using different techniques. PLA/TSF (mass ratio, 9:1) nanofiber yarns with uniform diameters of 72±9μm were obtained by conjugated electrospinning; the presence of 10wt% TSF accelerated the nucleation and growth of hydroxyapatite on the surface of the composite scaffolds in SBF. Furthermore, the compressive mechanical properties of the PLA/TSF multilayer nanofiber fabrics were improved after mineralization; the compressive modulus and stress of the mineralized composite scaffolds were 32.8 and 3.0 times higher than that of the composite scaffolds without mineralization, respectively. Interestingly, these values were higher than those of scaffolds containing random nanofibers. Biological assay results showed that the mineralization and multilayer fabric structure of the composite nanofiber scaffolds significantly increased cell adhesion and proliferation and enhanced the mesenchymal stem cell differentiation toward osteoblasts. Our results indicated that the mineralized nanofiber scaffolds with multilayer fabrics possessed excellent cytocompatibility and good osteogenic activity, making them versatile biocompatible scaffolds for bone tissue engineering.
机译:在骨组织工程中,具有分级结构,优异的机械性能和良好的生物相容性的支架的制造仍然是挑战。在这里,将聚乳酸(PLA)和Tu蚕丝丝素(TSF)溶液电纺成纳米纤维纱,并织成多层织物。然后,通过使用多层织物作为模板在模拟体液(SBF)中矿化获得复合支架。复合支架的结构和相关性能使用不同的技术进行了表征。共轭电纺获得了直径为72±9μm的PLA / TSF(质量比为9:1)纳米纤维纱。 10wt%TSF的存在促进了SBF复合支架表面上羟基磷灰石的形核和生长。此外,矿化后,PLA / TSF多层纳米纤维织物的压缩机械性能得到改善;矿化的复合支架的压缩模量和应力分别比未矿化的复合支架高32.8和3.0倍。有趣的是,这些值高于含有随机纳米纤维的支架的值。生物学测定结果表明,复合纳米纤维支架的矿化和多层织物结构显着增加了细胞粘附和增殖,并增强了间充质干细胞向成骨细胞的分化。我们的结果表明,具有多层织物的矿化纳米纤维支架具有出色的细胞相容性和良好的成骨活性,使其成为用于骨组织工程的通用生物相容性支架。

著录项

  • 来源
    《Materials science & engineering》 |2018年第3期|195-207|共13页
  • 作者单位

    College of Textiles, Tianjin Polytechnic University,College of Textiles, Zhongyuan University of Technology,Collaborative Innovation Center of Textile and Garment Industry;

    College of Textiles, Zhongyuan University of Technology,Collaborative Innovation Center of Textile and Garment Industry;

    College of Textiles, Zhongyuan University of Technology,Collaborative Innovation Center of Textile and Garment Industry;

    College of Textiles, Zhongyuan University of Technology,Collaborative Innovation Center of Textile and Garment Industry;

    College of Textiles, Zhongyuan University of Technology,Collaborative Innovation Center of Textile and Garment Industry;

    College of Textiles, Zhongyuan University of Technology,Collaborative Innovation Center of Textile and Garment Industry;

    College of Textiles, Zhongyuan University of Technology,Collaborative Innovation Center of Textile and Garment Industry;

    College of Textiles, Zhongyuan University of Technology,Collaborative Innovation Center of Textile and Garment Industry;

    College of Textiles, Tianjin Polytechnic University;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Tussah silk fibroin; Mineralization; Nanofiber fabric; Hierarchical architecture; Bone tissue engineering;

    机译:s蚕丝丝蛋白;矿化;纳米纤维织物;等级体系;骨组织工程;

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