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首页> 外文期刊>Cells tissues organs >Engraftability of Murine Bone Marrow-Derived Multipotent Mesenchymal Stem Cell Subpopulations in the Tissues of Developing Mice following Systemic Transplantation
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Engraftability of Murine Bone Marrow-Derived Multipotent Mesenchymal Stem Cell Subpopulations in the Tissues of Developing Mice following Systemic Transplantation

机译:系统移植后小鼠骨髓中的骨髓多能间充质干细胞亚群的可移植性。

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Introduction: Cell therapies for generalized musculoskeletal diseases would require distribution of cells to all the skeletal tissues; however, there are controversies regarding the transplantability of multipotent mesenchymal stems cells (MSCs). We generated single-cell subpopulations of MSCs from murine bone marrow and assessed them for differences in trafficking through the circulatory system and engraftment in bone and other tissues. Materials and Methods: Seven single-cell clonal subpopulations were generated by serial dilution of GFP-marked MSCs isolated from bone marrow. The subpopulations were examined for putative MSC surface marker expression, in vitro differentiation toward osteogenic and adipogenic lineages, migration and engraftment in different tissues following intravenous delivery in normal, sub lethally irradiated neonatal mice. Results: The surface marker expression profile revealed notable differences among clonal cells, specifically CD44 and CD105. All the cell subpopulations differentiated toward osteogenic and adipogenic lineages, with some committed to only one or the other. Two clones enriched in CXCR4 expression were highly efficient in migrating and engrafting in skeletal tissue including bone; this confirmed the role of this chemokine in cell migration. Donor cells retrieved from various tissues displayed different morphologies and potential differentiation into tissue cell type of engraftment, suggesting modification by the tissues in which the donor cells engrafted. Conclusion: We have reported that, within bone marrow, there are heterogeneous subpopulations of MSCs that may differ in their ability to migrate in the circulatory system and engraft in different tissues. (C) 2015 S. Karger AG, Basel
机译:简介:广泛性肌肉骨骼疾病的细胞疗法需要将细胞分配到所有骨骼组织。然而,关于多能间充质干细胞(MSCs)的可移植性存在争议。我们从鼠类骨髓中生成了MSC的单细胞亚群,并评估了它们在循环系统中的运输差异以及在骨骼和其他组织中的植入情况。材料和方法:通过连续稀释从骨髓中分离的GFP标记的MSC,产生了七个单细胞克隆亚群。检查这些亚群的假定的MSC表面标志物表达,向成骨和成脂谱系的体外分化,在正常,经致死剂量照射的新生小鼠中静脉内递送后在不同组织中的迁移和植入。结果:表面标志物表达谱显示出克隆细胞之间的显着差异,特别是CD44和CD105。所有的细胞亚群都向成骨和成脂谱系分化,其中一些仅针对一个或另一个。富含CXCR4表达的两个克隆在包括骨骼在内的骨骼组织中的迁移和移植效率很高。这证实了这种趋化因子在细胞迁移中的作用。从各种组织中检索到的供体细胞表现出不同的形态,并可能分化为植入的组织细胞类型,表明被供体细胞植入的组织进行了修饰。结论:我们已经报道,在骨髓中,存在异质性的MSC亚群,它们在循环系统中迁移和植入不同组织的能力可能不同。 (C)2015 S.Karger AG,巴塞尔

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