首页> 外文期刊>Biorheology >Role of mechanical-stress inducible protein Hcs24/CTGF/CCN2 in cartilage growth and regeneration: Mechanical stress induces expression of Hcs24/CTGF/CCN2 in a human chondrocytic cell line HCS-2/8, rabbit costal chondrocytes and meniscus tissue cells
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Role of mechanical-stress inducible protein Hcs24/CTGF/CCN2 in cartilage growth and regeneration: Mechanical stress induces expression of Hcs24/CTGF/CCN2 in a human chondrocytic cell line HCS-2/8, rabbit costal chondrocytes and meniscus tissue cells

机译:机械应激诱导蛋白Hcs24 / CTGF / CCN2在软骨生长和再生中的作用:机械应激诱导Hcs24 / CTGF / CCN2在人软骨细胞HCS-2 / 8,兔肋软骨细胞和半月板组织细胞中表达

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Mechanical stress plays an important role in the cartilage metabolism. The aim of this study is to determine the influence of mechanical load magnitude and frequency on cartilage metabolism in terms of the expression of hypertrophic chondrocyte-specific gene product 24/connective tissue growth factor/CCN family 2 (Hcs24/CTGF/CCN2), as an essential mediator of extracellular matrix (ECM) production. When a human chondrocytic cell line, HCS-2/8 was exposed to uni-axial cyclic mechanical force (6% elongation, 10 times/min) only for 30 min, the expression level of Hcs24/CTGF/CCN2 (CCN2) increased, and c-Jun N-terminal protein kinase (JNK) was activated. These findings suggest that stretch-induced CCN2 may be mediated by the JNK pathway. When HCS-2/8 cells were subjected to cyclic tension force at 15 kPa, 30 cycles/min, which has been reported to be a degradation force for HCS-2/8 cells, the expressions of CCN2 and aggrecan were inhibited, and such expressions remained unchanged in rabbit hyaline costal cartilage cells. However, these expressions increased in rabbit meniscus tissue cells. These findings suggest that the sensitivity of mechanical stretch may be different depending on the type of cells. Furthermore, CCN2 was co-localized with aggrecan in this meniscus tissue region exposed to mechanical stress in vivo. These findings suggest that CCN2 induced by mechanical stress may therefore play some role in meniscus growth and regeneration.
机译:机械应力在软骨代谢中起重要作用。本研究的目的是根据肥大软骨细胞特异性基因产物24 /结缔组织生长因子/ CCN家族2(Hcs24 / CTGF / CCN2)的表达,确定机械负荷大小和频率对软骨代谢的影响,如下细胞外基质(ECM)生产的重要介质。当将人类软骨细胞HCS-2 / 8暴露于单轴循环机械力(伸长率为6%,10次/分钟)持续30分钟时,Hcs24 / CTGF / CCN2(CCN2)的表达水平增加, c-Jun N-末端蛋白激酶(JNK)被激活。这些发现表明,拉伸诱导的CCN2可能是由JNK途径介导的。当HCS-2 / 8细胞在15 kPa,30转/分钟的循环张力下经受循环张力(据报道这是HCS-2 / 8细胞的降解力)时,CCN2和聚集蛋白聚糖的表达受到抑制,因此表达在兔透明肋软骨细胞中保持不变。但是,这些表达在兔半月板组织细胞中增加。这些发现表明,机械拉伸的敏感性可能会有所不同,具体取决于细胞的类型。此外,在暴露于体内机械应力的半月板组织区域中,CCN2与聚集蛋白聚糖共定位。这些发现表明,机械应力诱导的CCN2可能因此在弯液面的生长和再生中发挥某些作用。

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