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首页> 外文期刊>Biomaterials >The effects of co-delivery of BMSC-affinity peptide and rhTGF-β1 from coaxial electrospun scaffolds on chondrogenic differentiation
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The effects of co-delivery of BMSC-affinity peptide and rhTGF-β1 from coaxial electrospun scaffolds on chondrogenic differentiation

机译:BMSC-亲和肽和rhtGF-β1共同递送的影响来自同轴电纺支架对软骨生分化的影响

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摘要

Electrospinning is a promising technology for the fabrication of scaffolds in cartilage tissue engineering. Two other important elements for tissue engineering are seed cells and bioactive factors. Bone marrow-derived stem cells (BMSCs) and rhTGF-β1 are extensively studied for cartilage regeneration. However, little is known about scaffolds that can both specifically enrich BMSCs and release rhTGF-β1 to promote chondrogenic differentiation of the incorporated BMSCs. In this study, we first fabricated coaxial electrospun fibers using a polyvinyl pyrrolidone/bovine serum albumin/rhTGF-β1 composite solution as the core fluid and poly(ε-caprolactone) solution as the sheath fluid. Structural analysis revealed that scaffold fibers were relatively uniform with a diameter of 674.4 ± 159.6 nm; the core-shell structure of coaxial fibers was homogeneous and proteins were evenly distributed in the core. Subsequently, the BMSC-specific affinity peptide E7 was conjugated to the coaxial electrospun fibers to develop a co-delivery system of rhTGF-β1 and E7. The results of 1H nuclear magnetic resonance indicate that the conjugation between the E7 and scaffolds was covalent. The rhTGF-β1 incorporated in E7-modified scaffolds could maintain sustained release and bioactivity. Cell adhesion, spreading, and DNA content analyses indicate that the E7 promoted BMSC initial adhesion, and that the scaffolds containing both E7 and rhTGF-β1 (CBrhTE) were the most favorable for BMSC survival. Meanwhile, CBrhTE scaffolds could promote the chondrogenic differentiation ability of BMSCs. Overall, the CBrhTE scaffold could synchronously improve all three of the basic components required for cartilage tissue engineering in vitro, which paves the road for designing and building more efficient tissue scaffolds for cartilage repair.
机译:静电纺丝是制造软骨组织工程中的支架的有希望的技术。组织工程的另外两种重要元素是种子细胞和生物活性因子。骨髓衍生的干细胞(BMSC)和rhTGF-β1被广泛地研究软骨再生。然而,关于可以特别富集BMSC和释放rhTGF-β1的支架少知之甚少,以促进掺入的BMSC的软骨形成分化。在该研究中,首先使用聚乙烯吡咯烷酮/牛血清白蛋白/ rhTGF-β1复合溶液作为核心流体和聚(ε-己内酯)溶液作为鞘液制成同轴电梭纤维。结构分析显示,支架纤维的直径相对均匀,直径为674.4±159.6nm;同轴纤维的核心壳结构是均匀的,蛋白质均匀地分布在芯中。随后,将BMSC特异性亲和肽E7与同轴电梭纤维缀合,以产生rhtGF-β1和E7的共递送系统。 1H核磁共振的结果表明E7和支架之间的缀合是共价的。掺入E7改性支架中的rhTGF-β1可以保持持续的释放和生物活性。细胞粘附,扩散和DNA含量分析表明E7促进了BMSC初始粘附性,并且含有E7和rhtGF-β1(CBRHTH)的支架是最有利的BMSC存活率。同时,CBRHTH支架可以促进BMSCs的软骨性分化能力。总的来说,CBRHTE支架可以同步改善体外软骨组织工程所需的所有三种基本组件,这为软骨修复提供了设计和建造更高效的组织支架的道路。

著录项

  • 来源
    《Biomaterials》 |2014年第19期|共11页
  • 作者单位

    Institute of Sports Medicine Peking University Third Hospital 49 North Garden Road Haidian;

    Department of Biomedical Engineering Peking University College of Engineering No. 5 Yiheyuan Road;

    Institute of Sports Medicine Peking University Third Hospital 49 North Garden Road Haidian;

    Institute of Sports Medicine Peking University Third Hospital 49 North Garden Road Haidian;

    Institute of Sports Medicine Peking University Third Hospital 49 North Garden Road Haidian;

    Institute of Sports Medicine Peking University Third Hospital 49 North Garden Road Haidian;

    Institute of Sports Medicine Peking University Third Hospital 49 North Garden Road Haidian;

    Institute of Sports Medicine Peking University Third Hospital 49 North Garden Road Haidian;

    Medical and Healthy Analysis Centre Peking University 38 Xueyuan Road Haidian District Beijing;

    Department of Biochemistry and Molecular Biology Peking University School of Basic Medical;

    Department of Biomedical Engineering Peking University College of Engineering No. 5 Yiheyuan Road;

    Institute of Sports Medicine Peking University Third Hospital 49 North Garden Road Haidian;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物医学工程;
  • 关键词

    BMSC-affinity peptide; Cartilage tissue engineering; Coaxial electrospun fiber scaffold; RhTGF-β1; Sustained release;

    机译:BMSC-亲和肽;软骨组织工程;同轴电纺纤维脚手架;rhtgf-β1;持续释放;

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