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首页> 外文期刊>Journal of Materials Science >A self-organising biomimetic collagen/nano-hydroxyapatite-glycosaminoglycan scaffold for spinal fusion
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A self-organising biomimetic collagen/nano-hydroxyapatite-glycosaminoglycan scaffold for spinal fusion

机译:用于脊柱融合的自组织肌肉胶原/纳米羟基磷灰石 - 糖氨基氨基葡聚糖支架

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摘要

The use of spinal fusion surgery as a treatment for degenerative spinal conditions and chronic back pain is increasing. However, this technique requires use of a bone grafting material to fuse the vertebrae, traditionally autologous bone, which consists of an optimal combination of osteogenic cell precursors, extracellular matrix proteins and mineral components. To date, this remains the 'gold standard' material but its supply is limited and is associated with a number of clinical and ethical difficulties; consequently, various combinations of cells with biological scaffold materials have been tested but have failed to achieve fusion rates even comparable to autologous bone. We successfully fabricated a novel collagen-based scaffold using self-organising atelocollagen combined with nano-hydroxyapatite and chondroitin sulphate, cross-linked by microbial transglutaminase. The scaffold was characterised using a range of imaging, chemical composition and thermal analysis techniques. It was found to exhibit appropriate stiffness and suitable pore size for the adhesion, growth and differentiation of MSCs. The low toxicity makes it suitable for clinical application, and its slow degradation profile would enable the scaffold to promote bone growth over an extended period. This material therefore shows promise for clinical use in spinal fusion and other procedures requiring the use of bone grafts.
机译:使用脊柱融合手术作为退行性脊柱条件和慢性背痛的治疗正在增加。然而,这种技术需要使用骨移植材料来熔化椎骨,传统的自体骨,这包括骨质发生细胞前体,细胞外基质蛋白和矿物组分的最佳组合。迄今为止,这仍然是“黄金标准”材料,但其供应有限,与许多临床和道德困难有关;因此,已经测试了具有生物支架材料的细胞的各种组合,但甚至未与自体骨骼相当的融合率达到融合率。我们使用自组织的加罗拉格成功地制造了一种新型基于胶原基的支架,与纳米羟基磷灰石和软骨素硫酸盐,通过微生物转谷氨酰胺酶交联。使用一系列成像,化学成分和热分析技术表征了支架。发现它具有适当的刚度和合适的孔径,用于MSCs的粘附,生长和分化。低毒性使其适用于临床应用,其缓慢的降解型材将使支架能够在较长时间内促进骨骼生长。因此,这种材料表明了脊柱融合中的临床应用和需要使用骨移植的其他程序的承诺。

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  • 来源
    《Journal of Materials Science》 |2017年第21期|共19页
  • 作者单位

    Univ Oxford Dept Mat Sci Parks Rd Oxford OX1 3PH England;

    Vet Affairs Med Ctr Collagen Core Connect Tissue Res Grp Dept Med Memphis TN 38163 USA;

    Oxford Univ Hosp NHS Trust Oxford Spinal Unit Nuffield Orthopaed Ctr Windmill Rd Oxford OX3 7HE England;

    Univ Oxford Oxford Inst Biomed Engn Old Rd Campus Res Bldg Oxford OX3 7DQ England;

    Oxford Univ Hosp NHS Trust Oxford Spinal Unit Nuffield Orthopaed Ctr Windmill Rd Oxford OX3 7HE England;

    Vet Affairs Med Ctr Collagen Core Connect Tissue Res Grp Dept Med Memphis TN 38163 USA;

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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

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