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High hydrostatic pressure induces pro-osteoarthritic changes in cartilage precursor cells: A transcriptome analysis

机译:高静水压力诱导软骨前体细胞的骨关节炎变化:转录组分析

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摘要

Due to the high water content of cartilage, hydrostatic pressure is likely one of the main physical stimuli sensed by chondrocytes. Whereas, in the physiological range (0 to around 10 MPa), hydrostatic pressure exerts mostly pro-chondrogenic effects in chondrocyte models, excessive pressures have been reported to induce detrimental effects on cartilage, such as increased apoptosis and inflammation, and decreased cartilage marker expression. Though some genes modulated by high pressure have been identified, the effects of high pressure on the global gene expression pattern have still not been investigated. In this study, using microarray technology and real-time PCR validation, we analyzed the transcriptome of ATDC5 chondrocyte progenitors submitted to a continuous pressure of 25 MPa for up to 24 h. Several hundreds of genes were found to be modulated by pressure, including some not previously known to be mechano-sensitive. High pressure markedly increased the expression of stress-related genes, apoptosis-related genes and decreased that of cartilage matrix genes. Furthermore, a large set of genes involved in the progression of osteoarthritis were also induced by high pressure, suggesting that hydrostatic pressure could partly mimic in vitro some of the genetic alterations occurring in osteoarthritis.
机译:由于软骨中水含量高,静水压力可能是软骨细胞感知到的主要物理刺激之一。而在生理范围(0到10 MPa左右)中,静水压力在软骨细胞模型中主要发挥促软骨作用,据报道过高的压力会诱导软骨的有害作用,例如增加细胞凋亡和炎症,并降低软骨标记物的表达。 。尽管已经鉴定了一些由高压调节的基因,但是仍未研究高压对整体基因表达模式的影响。在这项研究中,使用微阵列技术和实时PCR验证,我们分析了ATDC5软骨细胞祖细胞在连续压力25 MPa下长达24 h的转录组。发现数百种基因受压力调节,其中包括一些以前未知的对机械敏感的基因。高压显着增加了应激相关基因,凋亡相关基因的表达,并降低了软骨基质基因的表达。此外,高压还诱导了一大批与骨关节炎发展有关的基因,这表明静水压力可以部分模拟体外发生在骨关节炎中的某些遗传改变。

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