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大鼠尾椎松质骨对机械刺激的成骨反应特征

Characterization of osteogenic response to mechanical stimulation in cancellous bone of rat caudal vertebrae.

作者信息

Chow J W, Jagger C J, Chambers T J

机构信息

Department of Histopathology, St. George's Hospital Medical School, London, United Kingdom.

出版信息

Am J Physiol. 1993 Aug;265(2 Pt 1):E340-7. doi: 10.1152/ajpendo.1993.265.2.E340.

Abstract

We have recently developed an experimental model in which pins, inserted into the 7th and 9th caudal vertebrae of 13-wk-old rats, are used to load the 8th caudal vertebra in compression. We have now applied this model to assess the responsiveness of rat cancellous bone to mechanical stimulation. We found that daily exposure to loads that induce strains similar to those observed in bone during relatively gentle physical activity, for 30 cycles/day, increased the rate of lamellar bone formation on cancellous surfaces by up to 140-fold. Bone formation rate showed a highly significant (P < 0.0001) correlation with the number of days for which the bones were loaded and with the size of the load. A single loading episode of 300 cycles, representing a 10-min period of loading, increased bone formation to 24 times that in nonloaded controls. Indexes of bone resorption were essentially the inverse of the bone formation parameters. These experiments show that rat cancellous bone is exquisitely sensitive to mechanical stimulation and suggest that the mechanical environment is a major determinant of the physiological behavior of mammalian cancellous bone.

摘要

我们最近建立了一个实验模型,将销钉插入13周龄大鼠的第7和第9尾椎,用于对第8尾椎施加压缩负荷。我们现在已应用该模型来评估大鼠松质骨对机械刺激的反应性。我们发现,每天暴露于能诱导出与相对温和的体力活动期间在骨骼中观察到的应变相似的负荷下,每天30个循环,可使松质骨表面的板层骨形成速率提高多达140倍。骨形成速率与骨骼加载的天数以及负荷大小呈高度显著相关(P < 0.0001)。一次300个循环的加载过程,相当于10分钟的加载时间,可使骨形成增加至未加载对照的24倍。骨吸收指标与骨形成参数基本相反。这些实验表明,大鼠松质骨对机械刺激极为敏感,并提示机械环境是哺乳动物松质骨生理行为的主要决定因素。

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