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Mobilization of bone marrow mesenchymal stem cells in vivo augments bone healing in a mouse model of segmental bone defect

机译:在部分节段性骨缺损的小鼠模型中,体内骨髓间充质干细胞的动员可增强骨的愈合

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Although the number of mesenchymal stem cells (MSC) in the bone marrow is sufficient to maintain skeletal homeostasis, in osteopenic pathology, aggravated osteoclast activity or insufficient osteoblast numbers ensue, affecting normal bone remodeling. Most of the currently available therapies are anti-resorptive with limited osteogenic potential. Since mobilization of stem/progenitors from the BM is a prerequisite for their participation in tissue repair, amplification of endogenous stem cells may provide an alternative approach in these conditions. The present study determined the potential of MSC mobilization in vivo, using combinations of different growth factors with the CXCR4 antagonist, AMD3100, in a mouse model of segmental bone defect. Results indicated that among several factors tested IGF1 had maximum proliferative ability of MSC in vitro. Results of the in vivo studies indicated that the combination of IGF1 and AMD3100 provided significant augmentation of bone growth as determined by DXA, micro-CT and histomorphometry in mice bearing segmental fractures. Further, characterization of MSC isolated from mice treated with IGF1 and AMD3100 indicated Akt/PI3K, MEK1/2-Erk1/2 and smad2/3 as key signaling pathways mediating this effect. These data indicate the potential of in vivo stem cell mobilization as a novel alternative for bone healing.
机译:尽管骨髓中的间充质干细胞(MSC)数量足以维持骨骼的稳态,但在骨质疏松病理学中,破骨细胞活性增强或成骨细胞数量不足,从而影响了正常的骨骼重塑。目前大多数可用的疗法是抗再吸收的,其成骨潜力有限。由于从BM中动员干细胞/祖细胞是其参与组织修复的先决条件,因此在这些情况下内源性干细胞的扩增可能提供了另一种方法。本研究通过在节段性骨缺损的小鼠模型中使用不同的生长因子与CXCR4拮抗剂AMD3100的组合,确定了体内MSC动员的潜力。结果表明,在测试的多个因素中,IGF1在体外具有最大的MSC增殖能力。体内研究结果表明,IGX1和AMD3100的组合可显着增强DXA,micro-CT和组织形态测定法在患有节段性骨折的小鼠中的骨生长。此外,从用IGF1和AMD3100处理的小鼠中分离的MSC的表征表明Akt / PI3K,MEK1 / 2-Erk1 / 2和smad2 / 3是介导此效应的关键信号通路。这些数据表明体内干细胞动员作为骨愈合的新选择的潜力。

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