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Fetal Mesenchymal Stromal Cells Differentiating towards Chondrocytes Acquire a Gene Expression Profile Resembling Human Growth Plate Cartilage

机译:胎儿间质基质细胞向软骨细胞区分收购基因表达谱类似于人骺板软骨

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摘要

We used human fetal bone marrow-derived mesenchymal stromal cells (hfMSCs) differentiating towards chondrocytes as an alternative model for the human growth plate (GP). Our aims were to study gene expression patterns associated with chondrogenic differentiation to assess whether chondrocytes derived from hfMSCs are a suitable model for studying the development and maturation of the GP. hfMSCs efficiently formed hyaline cartilage in a pellet culture in the presence of TGFβ3 and BMP6. Microarray and principal component analysis were applied to study gene expression profiles during chondrogenic differentiation. A set of 232 genes was found to correlate with in vitro cartilage formation. Several identified genes are known to be involved in cartilage formation and validate the robustness of the differentiating hfMSC model. KEGG pathway analysis using the 232 genes revealed 9 significant signaling pathways correlated with cartilage formation. To determine the progression of growth plate cartilage formation, we compared the gene expression profile of differentiating hfMSCs with previously established expression profiles of epiphyseal GP cartilage. As differentiation towards chondrocytes proceeds, hfMSCs gradually obtain a gene expression profile resembling epiphyseal GP cartilage. We visualized the differences in gene expression profiles as protein interaction clusters and identified many protein clusters that are activated during the early chondrogenic differentiation of hfMSCs showing the potential of this system to study GP development.
机译:我们使用人类胎儿骨髓间充质基质细胞(hfMSCs)分化为软骨细胞作为人类生长板(GP)的替代模型。我们的目的是研究与软骨分化相关的基因表达模式,以评估源自hfMSC的软骨细胞是否是研究GP发育和成熟的合适模型。 hfMSC在TGFβ3和BMP6的存在下,在沉淀培养物中有效地形成透明软骨。微阵列和主成分分析用于研究软骨分化过程中的基因表达谱。发现一组232个基因与体外软骨形成相关。已知几种已鉴定的基因参与软骨形成,并验证了分化型hfMSC模型的稳健性。使用232个基因进行的KEGG通路分析揭示了9个与软骨形成相关的重要信号通路。为了确定生长板软骨形成的进展,我们比较了区分hfMSCs的基因表达谱与先前建立的of骨GP软骨表达谱。随着向软骨细胞的分化的进行,hfMSC逐渐获得类似于epi骨GP软骨的基因表达谱。我们将基因表达谱的差异可视化为蛋白质相互作用簇,并鉴定了在hfMSC的早期软骨分化过程中被激活的许多蛋白质簇,显示了该系统研究GP发育的潜力。

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