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首页> 外文期刊>BioMed research international >Endothelial Progenitor Cell Fraction Contained in Bone Marrow-Derived Mesenchymal Stem Cell Populations Impairs Osteogenic Differentiation
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Endothelial Progenitor Cell Fraction Contained in Bone Marrow-Derived Mesenchymal Stem Cell Populations Impairs Osteogenic Differentiation

机译:骨髓间充质干细胞群体中包含的内皮祖细胞分数损害成骨分化。

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摘要

In bone tissue engineering (TE) endothelial cell-osteoblast cocultures are known to induce synergies of cell differentiation and activity. Bone marrow mononucleated cells (BMCs) are a rich source of mesenchymal stem cells (MSCs) able to develop an osteogenic phenotype. Endothelial progenitor cells (EPCs) are also present within BMC. In this study we investigate the effect of EPCs present in the BMC population on MSCs osteogenic differentiation. Human BMCs were isolated and separated into two populations. The MSC population was selected through plastic adhesion capacity. EPCs (CD34+and CD133+) were removed from the BMC population and the resulting population was named depleted MSCs. Both populations were cultured over 28 days in osteogenic medium (Dex+) or medium containing platelet lysate (PL). MSC population grew faster than depleted MSCs in both media, and PL containing medium accelerated the proliferation for both populations. Cell differentiation was much higher in Dex+medium in both cases. Real-time RT-PCR revealed upregulation of osteogenic marker genes in depleted MSCs. Higher values of ALP activity and matrix mineralization analyses confirmed these results. Our study advocates that absence of EPCs in the MSC population enables higher osteogenic gene expression and matrix mineralization and therefore may lead to advanced bone neoformation necessary for TE constructs.
机译:在骨组织工程学(TE)中,内皮细胞-成骨细胞共培养可诱导细胞分化和活性的协同作用。骨髓单核细胞(BMC)是能够形成成骨表型的间充质干细胞(MSC)的丰富来源。内皮祖细胞(EPC)也存在于BMC中。在这项研究中,我们调查了BMC人群中EPC对MSC成骨分化的影响。人类BMC被分离并分成两个种群。通过塑料粘附能力选择MSC群体。从BMC群体中去除了EPC(CD34 +和CD133 +),所得群体被称为耗尽MSC。两种种群均在成骨培养基(Dex +)或含血小板溶解产物(PL)的培养基中培养28天。在这两种培养基中,MSC种群的增长均快于耗尽的MSC,而含有PL的培养基促进了两种种群的增殖。在两种情况下,Dex + medium中的细胞分化程度都更高。实时逆转录-聚合酶链反应(RT-PCR)显示耗尽的MSC中成骨标记基因的上调。 ALP活性和基质矿化分析的较高值证实了这些结果。我们的研究主张,MSC群体中缺少EPC可以实现更高的成骨基因表达和基质矿化作用,因此可能导致TE构造必需的晚期骨新形成。

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