Honda K, Ohno S, Tanimoto K, Ijuin C, Tanaka N, Doi T, Kato Y, Tanne K
Department of Orthodontics, Hiroshima University Faculty of Dentistry, Japan.
Eur J Cell Biol. 2000 Sep;79(9):601-9. doi: 10.1078/0171-9335-00089.
Excessive mechanical load is thought to be responsible for the onset of osteoarthrosis (OA), but the mechanisms of cartilage destruction caused by mechanical loads remain unknown. In this study we applied a high magnitude cyclic tensile load to cultured chondrocytes using a Flexercell strain unit, which produces a change in cell morphology from a polygonal to spindle-like shape, and examined the protein level of cartilage matrixes and the gene expression of matrix metalloproteinases (MMPs), tissue inhibitors of matrix metalloproteinases (TIMPs) and proinflammatory cytokines such as IL-1beta and TNF-alpha. Toluidine blue staining, type II collagen immunostaining, and an assay of the incorporation of [35S]sulfate into proteoglycans revealed a decrease in the level of cartilage-specific matrixes in chondrocyte cultures subjected to high magnitude cyclic tensile load. PCR-Southern blot analysis showed that the high magnitude cyclic tensile load increased the mRNA level of MMP-1, MMP-3, MMP-9, IL-1beta, TNF-alpha and TIMP-1 in the cultured chondrocytes, while the mRNA level of MMP-2 and TIMP-2 was unchanged. Moreover, the induction of MMP-1, MMP-3 and MMP-9 mRNA expression was observed in the presence of cycloheximide, an inhibitor of protein synthesis. These findings suggest that excessive mechanical load directly changes the metabolism of cartilage by reducing the matrix components and causing a quantitative imbalance between MMPs and TIMPs.
过度的机械负荷被认为是骨关节炎(OA)发病的原因,但机械负荷导致软骨破坏的机制仍不清楚。在本研究中,我们使用Flexercell应变装置对培养的软骨细胞施加高强度循环拉伸负荷,该装置会使细胞形态从多边形变为纺锤形,并检测软骨基质的蛋白质水平以及基质金属蛋白酶(MMPs)、基质金属蛋白酶组织抑制剂(TIMPs)和促炎细胞因子如IL-1β和TNF-α的基因表达。甲苯胺蓝染色、II型胶原免疫染色以及[35S]硫酸盐掺入蛋白聚糖的测定显示,在经受高强度循环拉伸负荷的软骨细胞培养物中,软骨特异性基质水平降低。PCR- Southern印迹分析表明,高强度循环拉伸负荷增加了培养软骨细胞中MMP-1、MMP-3、MMP-9、IL-1β、TNF-α和TIMP-1的mRNA水平,而MMP-2和TIMP-2的mRNA水平未改变。此外,在蛋白质合成抑制剂环己酰亚胺存在的情况下,观察到MMP-1、MMP-3和MMP-9 mRNA表达的诱导。这些发现表明,过度的机械负荷通过减少基质成分并导致MMPs和TIMPs之间的定量失衡,直接改变软骨的代谢。