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首页> 外文期刊>Calcified tissue international. >Inhibition of chondrocyte terminal differentiation and matrix calcification by soluble factors released by articular chondrocytes.
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Inhibition of chondrocyte terminal differentiation and matrix calcification by soluble factors released by articular chondrocytes.

机译:关节软骨细胞释放的可溶性因子抑制软骨细胞末端分化和基质钙化。

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Chondrocytes do not undergo terminal differentiation in normal articular cartilage, whereas growth plate chondrocytes synthesize ALPase and induce matrix calcification terminally. Articular chondrocytes in osteoarthritic joints have been reported to express the terminal differentiation phenotypes, suggesting that terminal differentiation of articular chondrocytes is inhibited in normal joints. In the present study, we investigated the underlying inhibitory mechanism of the terminal differentiation in articular cartilage using a culture on type II collagen-coated dishes or a novel culture model on Millipore filters. ALPase activity increased from day 7 to day 8 in growth plate chondrocyte cultures on the collagen-coated dishes, but not in articular chondrocyte cultures. The ALPase expression of growth plate chondrocytes on the collagen-coated dish was completely inhibited when the same number of articular chondrocytes was mixed in the growth plate chondrocyte cultures. When articular chondrocytes or growth plate chondrocytes were maintained on Millipore filters held in 16-mm dishes, they started to synthesize ALPase. The ALPase expression of the chondrocytes on Millipore filters was inhibited by the presence of articular chondrocytes maintained on the bottom collagen-coated substratum in the same dishes. These results indicate that factors that diffused into the medium through the Millipore filters are involved in the inhibition of terminal differentiation. Since the conditioned medium from articular chondrocyte cultures did not affect the ALPase expression, it is considered that the soluble factors, which are continuously released from articular chondrocytes, are responsible for the inhibition of terminal differentiation.
机译:软骨细胞在正常关节软骨中不经历终末分化,而生长板软骨细胞合成ALPase并最终诱导基质钙化。据报道,骨关节炎关节中的关节软骨细胞表达终末分化表型,这表明在正常关节中关节软骨细胞的终末分化受到抑制。在本研究中,我们使用II型胶原蛋白涂层培养皿上的培养物或Millipore滤器上的新型培养模型,研究了关节软骨终末分化的潜在抑制机制。从第7天到第8天,在涂有胶原蛋白的培养皿上的生长板软骨细胞培养物中,ALPase活性增加,但在关节软骨细胞培养物中,则没有。当在生长板软骨细胞培养物中混合相同数量的关节软骨细胞时,胶原蛋白涂层培养皿上生长板软骨细胞的ALPase表达被完全抑制。当关节软骨细胞或生长板软骨细胞保持在16毫米培养皿中的Millipore滤器上时,它们开始合成ALPase。软骨细胞在密理博滤器上的ALPase表达被相同培养皿中底部胶原蛋白包被的基质上保持的关节软骨细胞抑制。这些结果表明,通过密理博过滤器扩散到培养基中的因子参与了终末分化的抑制。由于来自关节软骨细胞培养的条件培养基不影响ALPase的表达,因此认为从关节软骨细胞连续释放的可溶性因子是抑制终末分化的原因。

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