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身体应激对软骨基质合成与降解的影响。

Effects of physical stress on the synthesis and degradation of cartilage matrix.

作者信息

Vasan N

出版信息

Connect Tissue Res. 1983;12(1):49-58. doi: 10.3109/03008208309005611.

Abstract

The effects of mechanical stress on the metabolism of dog femoral head cartilage have been investigated. The model involves exercising the dog on a treadmill for an 8-month period and isolating the cartilage proteoglycans from three different anatomical regions of the femoral head. These regions are 1) the articulating area, which shows degenerative changes, 2) the area surrounding the articulating area, and 3) the non-articulating area. The hexosamine analysis of cartilage from the exercised animals, indicates 43% and 21% decreases in regions 1 and 2, respectively, while in region 3 no significant change was observed. The size of the proteoglycan aggregates and monomers also decreased with exercise in regions 1 and 2, and the cartilage from these two regions also incorporated more radioactive sulfate, suggesting a possible attempt to repair the degenerative alterations. The proteoglycan monomer (D1) from the articulating region of exercised dogs failed to interact with hyaluronic acid, while the monomers from other regions in the same animal did interact. Glycosaminoglycan chains from region 1 were smaller than in the control tissue, and there was an increase in chondroitin-4-sulfate synthesis. The results of the present study indicate that the cartilage from the articulating area and the surrounding area resist mechanical deformation by increasing synthetic activity. These observations suggest that the exercised animal can be a valuable model and provide increased understanding of the mechanism of cartilage degeneration.

摘要

研究了机械应力对犬股骨头软骨代谢的影响。该模型包括让犬在跑步机上运动8个月,并从股骨头的三个不同解剖区域分离软骨蛋白聚糖。这些区域分别是:1)出现退行性变化的关节面区域;2)关节面区域周围的区域;3)非关节面区域。对运动动物软骨的己糖胺分析表明,区域1和区域2的己糖胺分别减少了43%和21%,而区域3未观察到显著变化。区域1和区域2的蛋白聚糖聚集体和单体大小也随运动而减小,且这两个区域的软骨还掺入了更多的放射性硫酸盐,提示可能存在修复退行性改变的尝试。运动犬关节面区域的蛋白聚糖单体(D1)未能与透明质酸相互作用,而同一动物其他区域的单体则能相互作用。区域1的糖胺聚糖链比对照组织中的短,且硫酸软骨素-4-硫酸盐合成增加。本研究结果表明关节面区域和周围区域的软骨通过增加合成活性来抵抗机械变形。这些观察结果提示运动动物可能是一个有价值的模型,有助于加深对软骨退变机制的理解。

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