首页> 外文期刊>Journal of orthopaedic research >Massive bone reconstruction with heat-treated bone graft loaded autologous bone marrow-derived stromal cells and β-tricalcium phosphate composites in canine models
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Massive bone reconstruction with heat-treated bone graft loaded autologous bone marrow-derived stromal cells and β-tricalcium phosphate composites in canine models

机译:在犬模型中使用负载自体骨髓源性基质细胞和β-磷酸三钙复合材料的经热处理的骨移植物进行大规模骨重建

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摘要

Bone marrow-derived stromal cells (BMSCs) contain mesenchymal stem cells that are capable of forming various mesenchymal tissues. We hypothesized that BMSCs and β-tricalcium phosphate (β-TCP) composites would promote the remodeling of large-sized autologous devitalized bone grafts; therefore, the aim of this study was to evaluate the effects of the composites on the remodeling of autologous devitalized bone grafts. Autologous BMSCs cultured in culture medium containing dexamethasone (10-7 M) were loaded into porous β-TCP granules under low-pressure. Theses BMSC/TCP composites were put into the bone marrow cavity of autologous heat-treated bone (femoral diaphysis, 65-mm long, 100°C, 30 min) and put back to the harvest site. In the contralateral side, β-TCP without BMSC were used in the same manner as the opposite side as the control. Treatment with the BMSC/TCP composites resulted in a significant increase in thickness, bone mineral density, and matured bone volume of the cortical bone at the center of the graft compared to the control. Histological analysis showed matured regenerated bone in the BMSC loaded group. These results indicate that BMSC/TCP composites facilitated bone regeneration and maturation at the graft site of large-sized devitalized bone. This method could potentially be applied for clinical use in the reconstruction of large bone defects such as those associated with bone tumors.
机译:骨髓来源的基质细胞(BMSC)包含能够形成各种间充质组织的间充质干细胞。我们假设BMSCs和β-磷酸三钙(β-TCP)复合材料将促进大型自体失活骨移植的重塑。因此,本研究的目的是评估复合材料对自体失活骨移植物重塑的影响。在低压下将在含有地塞米松(10-7 M)的培养基中培养的自体BMSCs装入多孔的β-TCP颗粒中。将这些BMSC / TCP复合材料放入自体热处理骨(股骨干,长65 mm,100°C,30分钟)的骨髓腔中,然后放回收获部位。在对侧,以与对侧相同的方式使用不含BMSC的β-TCP。与对照相比,用BMSC / TCP复合材料进行处理可显着增加厚度,骨矿物质密度以及在移植物中心的皮质骨的成熟骨体积。组织学分析显示,BMSC负荷组的再生骨成熟。这些结果表明,BMSC / TCP复合材料促进了大型失活骨移植部位的骨再生和成熟。该方法可潜在地用于重建诸如与骨肿瘤相关的大骨缺损的临床用途。

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