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首页> 外文期刊>Key Engineering Materials >Osteogenic Potential of Tissue Engineered Bone by Combination of Marrow Mesenchymal Cells and Cultured Bone/Ceramic Constructs
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Osteogenic Potential of Tissue Engineered Bone by Combination of Marrow Mesenchymal Cells and Cultured Bone/Ceramic Constructs

机译:骨髓间充质细胞和培养的骨/陶瓷构建体相结合的组织工程骨的成骨潜能

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摘要

Introduction: Osteogenesis occurs in porous hydroxyapatite (HA) when HA blocks combined with marrow mesenchymal cells are grafted in vivo. In vitro bone formation occurs in HA pores when HA combined with marrow cells is cultured in osteogenic medium containing dexamethasone. Cultured bone/HA constructs possess higher osteogenic ability when they are grafted in vivo. Marrow mesenchymal cells (MSCs) contain many stem cells which can generate many tissue types. In the present study, we investigated osteogenic potential of cultured bone/HA combined with MSCs. Materials and Methods: Marrow cells were obtained from the femoral bone shaft of male Fischer 344 rats (7 weeks old), and were cultured in T-75 flasks. Primary cultured cells were trypsinized and combined with porous HA (5x5x5 mm, Interpore 500). The composites were subcultured in osteogenic medium containing dexamethasone. One tenth of primary cells were transferred into new T-75 flasks containing standard medium. After 2 weeks, MSCs were trypsinized, combined with cultured-bone/HA constructs, and prepared for implantation. MSC/cultured-bone/HA constructs, cultured bone/HA constructs, and HA alone were subcutaneously implanted into syngeneic rats. These implants were harvested at 2 or 4 weeks post-implantation, and prepared for histological and biochemical analyses. Results: Alkaline phosphatase activity and osteocalcin content of MSC /cultured bone/HA constructs were much higher than those of cultured bone/HA constructs at 2 and 4 weeks post-implantation. Histological examination supported these findings. Discussion and Conclusion: MSCs show high ability of cell proliferation. In addition, MSCs can generate new blood vessels which would support regeneration of bone tissue. Here, we suggested that MSCs could promote osteogenesis. We also showed that excellent engineered bone tissue could be fabricated by combining MSCs and cultured bone derived from dexamethasone-treated MSC culture.
机译:简介:成骨发生在多孔羟基磷灰石(HA)中,当HA块结合骨髓间充质细胞在体内移植时发生。当在含有地塞米松的成骨培养基中培养HA和骨髓细胞时,HA孔中就会发生体外骨形成。当在体内移植时,培养的骨/ HA构建体具有更高的成骨能力。骨髓间充质细胞(MSC)包含许多可以产生多种组织类型的干细胞。在本研究中,我们调查了结合MSCs培养的骨/ HA的成骨潜力。材料与方法:骨髓细胞从雄性Fischer 344大鼠(7周龄)的股骨干中获得,并在T-75烧瓶中培养。用胰蛋白酶消化原代培养的细胞,并与多孔HA(5x5x5 mm,Interpore 500)合并。将复合物在含有地塞米松的成骨培养基中传代培养。将十分之一的原代细胞转移到装有标准培养基的新T-75烧瓶中。 2周后,用胰蛋白酶消化MSC,与培养的骨/ HA构建体合并,并准备植入。将MSC /培养骨/ HA构建体,培养的骨/ HA构建体和单独的HA皮下植入同系大鼠中。这些植入物在植入后2或4周收获,并准备进行组织学和生化分析。结果:在植入后2和4周,MSC /培养的骨/ HA构建体的碱性磷酸酶活性和骨钙素含量远高于培养的骨/ HA构建体。组织学检查支持了这些发现。讨论与结论:MSC具有很高的细胞增殖能力。此外,间充质干细胞可以产生支持骨骼组织再生的新血管。在这里,我们建议间充质干细胞可以促进成骨。我们还表明,通过将MSC与地塞米松处理的MSC培养物衍生的培养骨结合,可以制造出优良的工程骨组织。

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