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首页> 外文期刊>Journal of biomedical materials research, Part A >Cartilage repair by local delivery of transforming growth factor-β1 or bone morphogenetic protein-2 from a novel, segmented polyurethane/polylactic- co-glycolic bilayered scaffold
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Cartilage repair by local delivery of transforming growth factor-β1 or bone morphogenetic protein-2 from a novel, segmented polyurethane/polylactic- co-glycolic bilayered scaffold

机译:通过局部递送转化生长因子-β1或骨形态发生蛋白-2,从新型,分段的聚氨酯/聚致乙醛双乙醛双糖型支架进行转化生长因子-β1或骨形态发生蛋白-2

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摘要

This study aimed to analyze the in vitro and in vivo release kinetics and evaluate the grades of repair induced by either the release of 50 ng of transforming growth factor-β1 or 2.5 or 5 μg of bone morphogenetic protein-2 (BMP-2) from a bilayer scaffold of segmented polyurethane/polylactic- co-glycolic (SPU/PLGA) in osteochondral defects, in a rabbit model. The scaffold consisted of a porous, bone-directed PLGA layer, overlaid with a cartilage-directed layer of growth factor (GF)-loaded PLGA microspheres, dispersed in a matrix of SPU. The PLGA porous layer was fabricated by gas foaming. Microspheres were prepared by a double emulsion method. SPU was synthesized by following the two-step method. GF release kinetics were assessed using iodinated (125I) GFs. The in vivo release profiles of both GFs fitted to zero-order kinetics, demonstrating a consistently good control of their release rates by SPU. Cartilage-like tissue, characterized by histological analysis, scoring, and immunolabeling of chondrogenic differentiation markers, was observed only after 12 weeks, maintaining integrity up to at least 24 weeks, independently of the GF and the dose of BMP-2. The biocompatibility and the resulting good quality, hyaline repair cartilage convert this system into a promising candidate for future applications in osteochondral lesions.
机译:本研究旨在分析体外和体内释放动力学,并评估通过50ng转化生长因子-β1或2.5或5μg骨形态发生蛋白-2(BMP-2)的释放诱导的修复等级在兔模型中,在骨质色神经缺陷中分段聚氨酯/聚致乙醇酸(SPU / PLGA)的双层支架。支架由多孔,骨导向的PLGA层组成,覆盖有软骨导向的生长因子层(GF) - 加载的PLGA微球,分散在SPU的基质中。通过气泡制造PLGA多孔层。通过双乳液法制备微球。通过以下两步方法合成SPU。使用碘化(125i)GFS评估GF释放动力学。适用于零级动力学的GFS的体内释放配置文件,展示了SPU对其释放速率的始终如一。在12周后仅观察到软骨状的组织,其特征在于软骨分析,评分和软骨分化标记的组织分析标志物,仅在12周后保持完整性,直到至少24周,与GF和BMP-2的剂量相比。生物相容性和所得良好的质量,透明修复软骨将该系统转换为未来骨质色神经病变中未来应用的有希望的候选者。

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  • 作者单位

    Department of Chemical Engineering and Pharmaceutical Technology Universidad de la Laguna San;

    Department of Chemical Engineering and Pharmaceutical Technology Universidad de la Laguna San;

    Department of Macromolecular Chemistry CSIC Instituto de Ciencia y Tecnología de Polimeros;

    Department of Chemical Engineering and Pharmaceutical Technology Universidad de la Laguna San;

    Traumatology Service Hospiten Rambla Ltd Santa Cruz de Tenerife Spain;

    Department of Macromolecular Chemistry CSIC Instituto de Ciencia y Tecnología de Polimeros;

    Department of Chemical Engineering and Pharmaceutical Technology Universidad de la Laguna San;

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

    BMP-2; controlled release; osteochondral repair; SPU-PLGA scaffold; TGF-β1;

    机译:BMP-2;控制释放;截骨骨折;SPU-PLGA脚手架;TGF-β1;

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