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首页> 外文期刊>Biomedicine & pharmacotherapy =: Biomedecine & pharmacotherapie >Composite scaffolds loaded with bone mesenchymal stem cells promote the repair of radial bone defects in rabbit model
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Composite scaffolds loaded with bone mesenchymal stem cells promote the repair of radial bone defects in rabbit model

机译:装载骨髓间充质干细胞的复合支架促进了兔模型的径向骨缺陷的修复

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This study aimed to investigate the efficacy of three-dimensional scaffolds of silk fibroin/chitosan/nano-hydroxyapatite (SF/CS/nHA) and bone marrow derived mesenchymal stem cells (BMSCs) on the repair of long segmental bone defects in rabbits. BMSCs were cultured with SF/CS/nHA in vitro, and cell proliferation, alkaline phosphatase activity and Ca2+ content were examined. A 15 mm segmental defect in the radius was generated in 12 New Zealand White rabbits, which were divided randomly into three groups (n = 4): experimental group with SF/CS/nHA scaffold of induced BMSCs; control group with SF/CS/nHA scaffold; and blank group without any materials. Postoperatively at 12 weeks, osteogenesis effect and the degradation and absorption of SF/CS/nHA were evaluated by X-ray, hematoxylin eosin staining, and scanning electron microscopy. In vitro, SF/CS/nHA scaffolds exhibited good biocompatibility and no toxicity. SF/CS/nHA promoted adhesion, growth, and calcium nodule formation of BMSCs compared to control (P 0.05). In vivo, we observed gradual new bone formation and bone defect gradually recovered at 12 weeks in experimental and control group, but more new bone was formed in experimental group (P 0.05). In blank group, limited bone formation was observed and bone defect was obvious. In conclusion, SF/CS/nHA scaffolds loaded with BMSCs achieve high efficacy to repair segmental defect in the radius.
机译:本研究旨在探讨丝素蛋白/壳聚糖/纳米 - 羟基磷灰石(SF / CS / NHA)和骨髓衍生间充质干细胞(BMSC)对兔子长期骨缺损的修复的疗效。用SF / CS / NHA体外培养BMSC,检查细胞增殖,碱性磷酸酶活性和CA2 +含量。半径的15 mm节段性缺陷在12个新西兰白兔中产生,将随机分为三组(n = 4):实验组,具有诱导的BMSC的SF / CS / NHA支架;具有SF / CS / NHA脚手架的对照组;没有任何材料的空白组。术后12周,通过X射线,苏木酰胺吡酰染色和扫描电子显微镜评估骨开发效果和SF / CS / NHA的降解和吸收。体外,SF / CS / NHA支架表现出良好的生物相容性和无毒性。与对照相比,SF / CS / NHA促进BMSC的粘附,生长和钙结节形成(P <0.05)。在体内,我们观察到在实验和对照组12周的12周逐渐恢复的逐渐新的骨形成,但在实验组中形成了更多的新骨(P <0.05)。在空白组中,观察到有限的骨形成,骨缺损显而易见。总之,随着BMSC的载荷的SF / CS / NHA支架可实现高效率,以修复半径中的节段性缺陷。

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