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Modulation of Hyaluronan Synthesis by the Interaction between Mesenchymal Stem Cells and Osteoarthritic Chondrocytes

机译:间充质干细胞与骨关节细胞间相互作用的透明质酸合成的调节

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Bone marrow mesenchymal stem cells (BM-MSCs) are considered a good source for cellular therapy in cartilage repair. But, their potential to repair the extracellular matrix, in an osteoarthritic environment, is still controversial. In osteoarthritis (OA), anti-inflammatory action and extracellular matrix production are important steps for cartilage healing. This study examined the interaction of BM-MSC and OA-chondrocyte on the production of hyaluronan and inflammatory cytokines in a Transwell system. We compared cocultured BM-MSCs and OA-chondrocytes with the individually cultured controls (monocultures). There was a decrease in BM-MSCs cell count in coculture with OA-chondrocytes when compared to BM-MSCs alone. In monoculture, BM-MSCs produced higher amounts of hyaluronan than OA-chondrocytes and coculture of BM-MSCs with OA-chondrocytes increased hyaluronan production per cell. Hyaluronan synthase-1 mRNA expression was upregulated in BM-MSCs after coculture with OA-chondrocytes, whereas hyaluronidase-1 was downregulated. After coculture, lower IL-6 levels were detected in BM-MSCs compared with OA-chondrocytes. These results indicate that, in response to coculture with OA-chondrocytes, BM-MSCs change their behavior by increasing production of hyaluronan and decreasing inflammatory cytokines. Our results indicate that BM-MSCs per se could be a potential tool for OA regenerative therapy, exerting short-term effects on the local microenvironment even when cell:cell contact is not occurring.
机译:骨髓间充质干细胞(BM-MSCs)被认为是软骨修复中的细胞疗法的好源。但是,他们在骨科环境中修复细胞外基质的可能性仍然存在争议。在骨关节炎(OA)中,抗炎作用和细胞外基质生产是软骨愈合的重要步骤。该研究检测了BM-MSC和OA软骨细胞对Transwell系统中透明质酸和炎性细胞因子的相互作用。我们将与单独培养的对照(单一栽培)进行比较了与单一的BM-MSCs和OA软骨细胞。与单独的BM-MSC相比,在与BM-MSC相比,BM-MSCs细胞计数的BM-MSCs细胞计数降低。在单一养芽中,BM-MSCs产生了熟悉量的透明质素,而不是oa-chondrocytes和bm-mscs的共培养,每种细胞增加透明质酸产量增加。透明质酸合成酶-1 mRNA表达在与OA-Chondrocytes共培养后在BM-MSC中升高,而透明质酸酶-1被下调。与OA软骨细胞相比,在BM-MSC中检测到枸杞子后,在BM-MSC中检测到下水平。这些结果表明,响应于与OA-Chondrocytes的共培养,BM-MSCs通过增加透明质酸的产生和减少炎症细胞因子来改变其行为。我们的结果表明,BM-MSCS本身可能是OA再生治疗的潜在工具,即使电池:细胞接触也不会发生对局部微环境的短期影响。

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