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首页> 外文期刊>Molecular and Cellular Biochemistry >Expression of ion channels of the TRP family in articular chondrocytes from osteoarthritic patients: changes between native and in vitro propagated chondrocytes
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Expression of ion channels of the TRP family in articular chondrocytes from osteoarthritic patients: changes between native and in vitro propagated chondrocytes

机译:骨关节炎患者关节软骨细胞中TRP家族离子通道的表达:天然和体外繁殖的软骨细胞之间的变化

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The maintenance of a differentiated chondrocyte phenotype is influenced by several factors of which signal transduction of extracellular stimuli through the cell membrane is of major interest. One important group of membrane-bound proteins which are involved in transmembrane signal transduction are ion channels. Human articular chondrocytes were obtained from osteoarthritic femoral condyles. Cells were released from the surrounding matrix and cultivated under standard conditions. We investigated gene expression of 12 members of the TRP ion channel family of freshly prepared (passage 0; P0) and in vitro propagated human articular chondrocytes (passage 2; P2) using conventional and real-time PCR (RT-PCR). In addition, the protein appearance of four TRP channels was demonstrated by immunofluorescence and western blotting. Chondrocyte differentiation was monitored by quantification of collagen type-II, type-I, and aggrecan gene expression. By conventional PCR, 8 channels could be detected, of which some displayed a heterogeneous PCR pattern. RT-PCR quantification revealed that TRPC1 was expressed on the same level in P0 and P2 chondrocytes while gene expression of TRPC3 and TRPC6 was elevated in passage 2 cells. TRPM5, TRPM7, and TRPV1 displayed an enhanced gene expression in freshly isolated chondrocytes. Immunofluorescence signal intensity of all four investigated TRP proteins was consistent with the corresponding gene expression data. In the present study, a correlation between the appearance of some members of the TRP ion channel family and the state of de-differentiation of osteoarthritic articular chondrocytes was shown. A possible direct involvement in the process of chondrocyte de-differentiation has to be investigated in further studies.
机译:分化的软骨细胞表型的维持受到几个因素的影响,其中通过细胞膜对细胞外刺激的信号转导是最重要的。跨膜信号转导中涉及的一组重要的膜结合蛋白是离子通道。人关节软骨细胞获自骨关节炎股骨dy。从周围的基质中释放细胞并在标准条件下培养。我们使用常规和实时PCR(RT-PCR)研究了新鲜制备的TRP离子通道家族的12个成员(第0代; P0)和体外繁殖的人关节软骨细胞(第2代; P2)的基因表达。另外,通过免疫荧光和蛋白质印迹证实了四个TRP通道的蛋白质外观。通过定量II型,I型和聚集蛋白聚糖基因表达来监测软骨细胞的分化。通过常规PCR,可以检测到8个通道,其中一些通道​​显示出异质PCR模式。 RT-PCR定量显示TRPC1在P0和P2软骨细胞中以相同的水平表达,而TRPC3和TRPC6的基因表达在第2代细胞中升高。 TRPM5,TRPM7和TRPV1在新鲜分离的软骨细胞中显示出增强的基因表达。所有四个研究的TRP蛋白的免疫荧光信号强度与相应的基因表达数据一致。在本研究中,显示了TRP离子通道家族某些成员的出现与骨关节炎关节软骨细胞去分化状态之间的相关性。软骨细胞去分化过程中可能直接参与的问题有待进一步研究。

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