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Repaire of Large Segmental Bone Defects by Marrow Stromal Cells Transplant with Demineralized Bone Matrix

机译:用骨髓骨基质进行骨髓基质细胞修复大末端骨缺损

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The aim of this study was to determine the healing potential of large segmental bone defects using tissue-engineered constructs in a large animal model before it can be introduced into a clinical trial. Isolated Autologous marrow stromal cells (aMSCs) were cultured in vitro, then seeded into allogenic demineralized bone matrix (aDBM) and co-cultivated for 7 days to construct DBM-MSCs complex. 24 goats were randomly divided into three groups (8 in each), on which 3 cm diaphyseal femoral defects were created unilaterally and subsequently filled with the DBM-MSCs complex, DBM alone and untreated control, respectively. A semiquantitative grading score was applied for radiological analysis after 12 weeks and 24 weeks. DBM-MSCs group increased the radiological scoring and biomechanical strength significantly and superiored over DBM only group. The animals in DBM-MSCs group total bone regeneration was observed in X-ray, whereas most of animal of DBM only group showed partial bone regeneration, while untreated showed no defect healing. Bone regeneration of DBM-MSCs group was histologically better than in DBM only controls and failed in untreated group. In summary, this study confirmed that the goat critical size defect was appropriate in size to produce large defect nonunions model, and our results strongly encourage the application of the transplantation of bone marrow stromal cells within demineralized bone matrix for bone regeneration of large segmental bone defects.
机译:本研究的目的是通过在大型动物模型中使用大型动物模型中的组织工程构建体来确定大型节段性骨缺陷的愈合潜力在临床试验中。分离的自体骨髓基质细胞(AMSCs)在体外培养,然后将其播种成同种异体的脱耳化骨基质(ADBM)并共同培养7天以构建DBM-MSCs复合物。将24只山羊随机分为三组(每次8个),在此,单侧产生3cm的透气性股骨缺陷,随后分别填充DBM-MSCs复合物,单独的DBM和未处理的对照。在12周和24周后施加半定量分级评分。 DBM-MSCS组显着提高了放射性评分和生物力学强度,仅通过DBM群体进行了群体。在X射线中观察到DBM-MSCS组总骨再生中的动物,而大多数DBM的动物仅组均显示部分骨再生,而未经处理的情况显示没有缺陷愈合。 DBM-MSCs组的骨再生比在未经治疗的组中只能控制和失败的DBM中的组织学较好。总之,本研究证实,山羊临界大小缺陷的尺寸适当地产生大的缺陷undions模型,我们的结果强烈促进了骨髓基质细胞移植在脱矿质骨基质中的移植在大型节段性骨缺陷中的骨再生中的应用。

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