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首页> 外文期刊>Biomedical materials >In vitro and preclinical characterisation of compressed, macro-porous and collagen coated poly-ε-caprolactone electro-spun scaffolds
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In vitro and preclinical characterisation of compressed, macro-porous and collagen coated poly-ε-caprolactone electro-spun scaffolds

机译:压缩,宏观多孔和胶原涂层涂覆多ε-己内酯电纺带状支架的体外和临床前表征

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摘要

Low in macro-porosity electro-spun scaffolds are often associated with foreign body response, whilst macro-porous electro-spun scaffolds have low mechanical integrity. Herein, compressed, macroporous and collagen (bovine Achilles tendon and human recombinant) coated electro-spun poly-ε-caprolactone scaffolds were developed and their biomechanical, in vitro and in vivo properties were assessed. Collagen coating, independently of the source, did not significantly affect the biomechanical properties of the scaffolds. Although no significant difference in cell viability was observed between the groups, collagen coated scaffolds induced significantly higherDNAconcentration. In vivo, no signs of adverse tissue effect were observed in any of the groups and all groups appeared to equally integrate into the subcutaneous tissue. It is evidenced that macro-porous poly-ε-caprolactone electrospun meshes with adequate mechanical properties and acceptable host response can be developed for biomedical applications.
机译:在宏观孔隙率电纺支架中的低常与异物反应相关,同时宏观多孔电纺支架具有低机械完整性。在此,促进了压缩,大孔和胶原(牛脑肌腱和人重组)涂覆的电纺聚 - ε-己内酯支架,并评估其生物力学,体外和体内性能。独立于来源的胶原涂层没有显着影响支架的生物力学性质。虽然在组之间观察到细胞活力没有显着差异,但胶原涂层支架在胶原蛋白质中诱导显着更高的浓度。在体内,在任何组中没有观察到不良组织效果的迹象,并且所有基团似乎同样地集成到皮下组织中。可以证明,可以为生物医学应用开发具有足够机械性能和可接受的宿主响应的宏观多孔多孔聚ε-己内酯电纺丝膜。

著录项

  • 来源
    《Biomedical materials》 |2019年第5期|共14页
  • 作者单位

    Regenerative Modular&

    Developmental Engineering Laboratory (REMODEL) National University of Ireland Galway (NUI Galway) Galway Ireland;

    Regenerative Modular&

    Developmental Engineering Laboratory (REMODEL) National University of Ireland Galway (NUI Galway) Galway Ireland;

    Regenerative Modular&

    Developmental Engineering Laboratory (REMODEL) National University of Ireland Galway (NUI Galway) Galway Ireland;

    Protein Engineering and Nano-Biotechnology The Robert H. Smith Institute of Plant Science and Genetics The Robert H. Smith Faculty of Agriculture Food and Environment The Hebrew University of Jerusalem Rehovot Israel;

    Regenerative Modular&

    Developmental Engineering Laboratory (REMODEL) National University of Ireland Galway (NUI Galway) Galway Ireland;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 医用一般科学;
  • 关键词

    bovine collagen; human recombinant collagen; electro-spun scaffolds; subcutaneous implantation;

    机译:牛胶原蛋白;人重组胶原;电动纺丝支架;皮下植入;

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