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Coaxial electrospun aligned tussah silk fibroin nanostructured fiber scaffolds embedded with hydroxyapatite-tussah silk fibroin nanoparticles for bone tissue engineering

机译:嵌入羟基磷灰石-tus蚕丝蛋白纳米颗粒的同轴电纺s蚕丝丝蛋白纳米结构纤维支架,用于骨组织工程

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摘要

The bone is a composite of inorganic and organic materials and possesses a complex hierarchical architecture consisting of mineralized fibrils formed by collagen molecules and coated with oriented hydroxyapatite. To regenerate bone tissue, it is necessary to provide a scaffold that mimics the architecture of the extracellular matrix in native bone. Here, we describe one such scaffold, a nanostructured composite with a core made of a composite of hydroxyapatite and tussah silk fibroia The core is encased in a shell of tussah silk fibroin. The composite fibers were fabricated by coaxial electrospinning using green water solvent and were characterized using different techniques. In comparison to nanofibers of pure tussah silk, composite notably improved mechanical properties, with 90-fold and 2-fold higher initial modulus and breaking stress, respectively, obtained. Osteoblast-like MG-63 cells were cultivated on the composite to assess its suitability as a scaffold for bone tissue engineering. We found that the fiber scaffold supported cell adhesion and proliferation and functionally promoted alkaline phosphatase and mineral deposition relevant for biomineralization. In addition, the composite were more biocompatible than pure tussah silk fibroin or cover slip. Thus, the nanostructured composite has excellent biomimetic and mechanical properties and is a potential biocompatible scaffold for bone tissue engineering.
机译:骨骼是无机和有机材料的复合物,具有复杂的层次结构,该层次结构由矿化的原纤维组成,这些原纤维由胶原分子形成并涂有定向的羟基磷灰石。为了再生骨组织,有必要提供一种模仿天然骨中细胞外基质结构的支架。在这里,我们描述了一种这样的支架,一种纳米结构的复合材料,其芯由羟基磷灰石和蚕丝纤维蛋白的复合材料制成。该芯被包裹在蚕丝纤维蛋白的外壳中。复合纤维是使用绿水溶剂通过同轴静电纺丝制造的,并使用不同的技术进行了表征。与纯天然蚕丝的纳米纤维相比,复合材料显着改善了机械性能,分别获得了90倍和2倍的初始模量和断裂应力。将成骨细胞样的MG-63细胞培养在复合材料上,以评估其作为骨组织工程支架的适用性。我们发现纤维支架支持细胞粘附和增殖,并在功能上促进了碱性磷酸酶和与生物矿化有关的矿物质沉积。此外,该复合材料比纯蚕丝丝蛋白或盖玻片更具生物相容性。因此,纳米结构复合材料具有优异的仿生和机械性能,并且是用于骨组织工程的潜在生物相容性支架。

著录项

  • 来源
    《Materials science & engineering》 |2016年第1期|342-351|共10页
  • 作者单位

    Key Laboratory of Advanced Textile Composites, Ministry of Education, Institute of Textile Composites, Tianjin Polytechnic University, Tianjin 300387, China;

    P.O. Box 110, College of Textiles, Zhongyuan University of Technology, 41 Zhongyuan Road, Zhengzhou, Henan Province 450007, China,Collaborative Innovation Center of Textile and Garment Industry, Henan Province, Zhengzhou 450007, China;

    Department of Acquired Immune Deficiency Syndrome Treatment and Research Center, The First Affiliated Hospital of Henan University of Traditional Chinese Medicine, Zhengzhou 450007, China;

    College of Textiles, Zhongyuan University of Technology, Zhengzhou 450007, China,Collaborative Innovation Center of Textile and Garment Industry, Henan Province, Zhengzhou 450007, China;

    Key Laboratory of Advanced Textile Composites, Ministry of Education, Institute of Textile Composites, Tianjin Polytechnic University, Tianjin 300387, China;

    College of Textiles, Zhongyuan University of Technology, Zhengzhou 450007, China,Collaborative Innovation Center of Textile and Garment Industry, Henan Province, Zhengzhou 450007, China;

    College of Textiles, Zhongyuan University of Technology, Zhengzhou 450007, China,Collaborative Innovation Center of Textile and Garment Industry, Henan Province, Zhengzhou 450007, China;

    College of Textiles, Zhongyuan University of Technology, Zhengzhou 450007, China,Collaborative Innovation Center of Textile and Garment Industry, Henan Province, Zhengzhou 450007, China;

    College of Textiles, Zhongyuan University of Technology, Zhengzhou 450007, China,Collaborative Innovation Center of Textile and Garment Industry, Henan Province, Zhengzhou 450007, China;

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

    Tussah silk fibroin; Hydroxyapatite; Coaxial electrospinning; Bone tissue engineering;

    机译:s蚕丝素蛋白;羟基磷灰石;同轴静电纺丝;骨组织工程;

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