Institute of Sports Medicine, Beijing Key Laboratory of Sports Injuries, Peking University Third Hospital, 49 North Garden Road, Haidian District, Beijing 100191, P. R. China.
Sci Rep. 2016 Nov 17;6:37268. doi: 10.1038/srep37268.
Mechanical factors play a key role in regulating the development of cartilage degradation in osteoarthritis. This study aimed to identify the influence of mechanical stress in cartilage and chondrocytes. To explore the effects of mechanical stress on cartilage morphology, we observed cartilages in different regions by histological and microscopic examination. Nanoindentation was performed to assess cartilage biomechanics. To investigate the effects of mechanical stress on chondrocytes, cyclic tensile strain (CTS, 0.5 Hz, 10%) was applied to monolayer cultures of human articular chondrocytes by using Flexcell-5000. We quantified the mechanical properties of chondrocytes by atomic force microscopy. Chondrocytes were stained with Toluidine blue and Alcian blue after exposure to CTS. The expression of extracellular matrix (ECM) molecules was detected by qPCR and immunofluorescence analyses in chondrocytes after CTS. Our results demonstrated distinct morphologies and mechanical properties in different cartilage regions. In conclusion, mechanical stress can affect the chondrocyte phenotype, thereby altering the expression of chondrocyte ECM.
机械因素在调控骨关节炎软骨降解的发生发展中起着关键作用。本研究旨在探讨机械应力对软骨和软骨细胞的影响。为了研究机械应力对软骨形态的影响,我们通过组织学和显微镜检查观察了不同区域的软骨。通过纳米压痕评估软骨生物力学。为了研究机械应力对软骨细胞的影响,我们采用 Flexcell-5000 对单层培养的人关节软骨细胞施加循环拉伸应变(CTS,0.5Hz,10%)。我们通过原子力显微镜定量分析了软骨细胞的力学特性。在 CTS 作用后,用甲苯胺蓝和阿利新蓝对软骨细胞进行染色。在 CTS 作用后,通过 qPCR 和免疫荧光分析检测软骨细胞中细胞外基质(ECM)分子的表达。结果表明,不同软骨区域具有不同的形态和力学特性。总之,机械应力可以影响软骨细胞表型,从而改变软骨细胞 ECM 的表达。