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Chondrogenic differentiation of Human Bone Marrow Mesenchymal stem cells Induced by Synovial Fluid in Vitro

机译:滑液体外诱导人骨髓间充质干细胞成软骨分化

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Mesenchymal stem cells (MSCs) have the potential to differentiate into distinct mesenchymal tissues including cartilage, which suggest these cells as an attractive cell source for cartilage tissue engineering approaches. Our objective was to study the effects of synovial fluid on chondrogenic differentiation of human MSCs in monolayer and micromass cultures. The cells in passage 2 were induced into chondrogenic differentiation with different concentration of synovial fluid (0,100,150 and 200 μl/ml. Differentiation along the chondrogenic lineage was documented by Sox9 and type II collagen expression for 21 days. The expression of the identified genes was confirmed by RT-PCR. RT-PCR showed that synovial fluid could promote expression of Sox9 and collagen II mRNA in an dose-dependant manner, especially at the concentration of 150 and 200 μl/ml. In summary, synovial fluid induce chondrogenesis of human mesenchymalstem cells, which encourage tissue engineering applications of MSC in chondral defects, as the natural environment in the joint is favorable for chodrogenic differentiation.
机译:间充质干细胞(MSC)可能分化为包括软骨在内的不同的间充质组织,这表明这些细胞是软骨组织工程方法的一种有吸引力的细胞来源。我们的目的是研究滑膜液对单层和微团培养中人MSC软骨分化的影响。在第2代的细胞中,以不同浓度的滑液(0,100,150和200μl/ ml)诱导软骨形成分化。沿软骨生成谱系的分化由Sox9和II型胶原表达记录21天,证实了所鉴定基因的表达。 RT-PCR结果显示,滑液可以剂量依赖性地促进Sox9和胶原II mRNA的表达,特别是在150和200μl/ ml的浓度下。关节中的自然环境有利于软骨形成分化,从而促进了MSC在软骨缺损中的组织工程应用。

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