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Intercellular communication via gap junction channels between chondrocytes and bone cells

机译:通过软骨细胞和骨细胞之间的间隙结沟间细胞间通信

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摘要

Cell-to-cell communication between bone, cartilage and the synovial membrane is not fully understood and it is only attributed to the diffusion of substances through the extracellular space or synovial fluid. In this study, we found for the first time that primary bone cells (BCs) including osteocytes, synovial cells (SCs) and chondrocytes (CHs) are able to establish cellular contacts and to couple through gap junction (GJ) channels with connexin43 (Cx43) being dominant. Transwell co-culture and identification by mass spectrometry revealed the exchange of essential amino acids, peptides and proteins including calnexin, calreticulin or CD44 antigen between contacting SCs, BCs and CHs. These results reveal that CHs, SCs and BCs are able to establish intercellular connections and to communicate through GJ channels, which provide a selective signalling route by the direct exchange of potent signalling molecules and metabolites.
机译:骨,软骨和滑膜之间的细胞 - 细胞通信不完全理解,并且它仅归因于物质通过细胞外空间或滑膜液的扩散。 在这项研究中,我们首次发现了包括骨细胞,滑膜细胞(SCS)和软骨细胞(CHS)的原发性骨细胞(BCS)能够建立细胞触点并通过Connexin43(CX43)通过间隙结(GJ)通道耦合。(CX43 )占主导地位。 Transwell共培养和质谱鉴定揭示了在接触SCS,BCS和CHS之间的CALNEXIN,CaltreteLIN或CD44抗原的必需氨基酸,肽和蛋白质的交换。 这些结果表明,CHS,SCS和BC能够建立细胞间连接并通过GJ通道进行通信,该GJ通道通过直接交换有效的信号分子和代谢物提供选择性信号路径。

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