首页> 美国卫生研究院文献>Annals of the Rheumatic Diseases >Adaptation of canine femoral head articular cartilage to long distance running exercise in young beagles.
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Adaptation of canine femoral head articular cartilage to long distance running exercise in young beagles.

机译:犬股骨头关节软骨适应年轻小猎犬的长距离跑步运动。

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摘要

OBJECTIVE--To study the effects of long term (one year), long distance (up to 40 km/day) running on the metabolism of articular cartilage the biosynthesis of proteoglycans was examined by in vitro labelling of anterior (weight bearing) and posterior (less weight bearing) areas of the femoral head from young beagles. METHODS--Total sulphate incorporation rates were determined and distribution of the incorporated sulphate was localised by quantitative autoradiography. Concentration and extractability of the proteoglycans were determined, and proteoglycan structures were investigated by gel filtration chromatography, agarose gel electrophoresis, and chemical determinations. RESULTS--In the less weight bearing area the amount of extractable proteoglycans was decreased (p < or = 0.02), simultaneously with an increased concentration of residual glycosaminoglycans in the tissue after 4 M GuCl extraction (p < or = 0.05). In control animals proteoglycan synthesis was most active in the deep zone of the cartilage, whereas exercise increased synthesis in the intermediate zone. There was a tendency to a lower keratan: chondroitin sulphate ratio in the running dogs. No macroscopical or microscopical signs of articular degeneration or injury were visible in any of the animals. CONCLUSION--The articular cartilage of the femoral head showed a great capacity to adapt to the increased mechanical loading. The reduced proteoglycan extractability in the less weight bearing area changed it similar to the weight bearing area, suggesting that the low extractability of proteoglycans reflects the long term loading history of articular cartilage. The congruency of the femoral head with acetabulum seems to protect the cartilage from the untoward alterations that occur in the femoral condyles subjected to a similar running programme.
机译:目的-为了研究长期(一年),长距离(长达40 km / day)对关节软骨代谢的影响,通过体外(前承重)和后承重体外标记来检测蛋白聚糖的生物合成幼犬的股骨头区域(负重)区域。方法-确定了硫酸盐的总掺入率,并通过定量放射自显影术确定了所掺入硫酸盐的分布。测定蛋白聚糖的浓度和可萃取性,并通过凝胶过滤色谱,琼脂糖凝胶电泳和化学测定研究蛋白聚糖的结构。结果-在重量较小的区域中,可萃取蛋白聚糖的量减少(p <或= 0.02),同时在4 M GuCl萃取后组织中残留的糖胺聚糖浓度增加(p <或= 0.05)。在对照动物中,蛋白聚糖的合成在软骨的深部区域最活跃,而运动在中部区域的合成增加。奔流犬的角质素:硫酸软骨素比例有降低的趋势。在任何动物中都没有可见的关节变性或损伤的宏观或微观迹象。结论-股骨头的关节软骨显示出很大的能力来适应增加的机械负荷。在较轻的承重区域中降低的蛋白聚糖提取能力使其变化与承重区域类似,这表明蛋白聚糖的较低提取能力反映了关节软骨的长期负荷历史。股骨头与髋臼的融合似乎可以保护软骨,使其免受在进行类似跑步程序的股骨dy中发生的不利改变。

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