Department of Pediatrics, Indiana University School of Medicine, Indianapolis, IN 46202, USA.
J Bone Miner Metab. 2012 Jan;30(1):31-9. doi: 10.1007/s00774-011-0292-6. Epub 2011 Jul 6.
Mechanical stimulation plays a critical role in bone development and growth. In view of recently recognized anabolic responses promoted by a joint-loading modality, we examined the effects of elbow loading on longitudinal growth of the ulna and the humerus. Using a custom-made piezoelectric loader, the left elbow of growing C57/BL/6 female mice was given daily 5-min bouts of dynamic loading for 10 days. The right forelimbs of those mice served as contralateral controls, and the limbs of non-treated mice were used as age-matched controls. The effects of elbow loading were evaluated through measurement of bone length, weight, bone mineral density (BMD), and bone mineral content (BMC), as well as mRNA expression levels of load-sensitive transcription factors such as c-fos, egr1, and atf3. The results revealed that the humerus was elongated by 1.2% compared to the contralateral and age-matched controls (both p < 0.001), while the ulna had become longer than the contralateral control (1.7%; p < 0.05) and the age-match control (3.4%; p < 0.001). Bone lengthening was associated with increases in bone weight, BMD and BMC. Furthermore, the mRNA levels of the selected transcription factors were elevated in the loaded ulna and humerus. Interestingly, the increase was observed not only at the elbow but also at the wrist and shoulder in the loaded limb. The present study demonstrates that joint loading is potentially useful for stimulating bone lengthening and treating limb length discrepancy.
机械刺激在骨骼发育和生长中起着关键作用。鉴于最近发现关节负荷方式可促进合成代谢反应,我们研究了肘部负荷对尺骨和肱骨纵向生长的影响。使用定制的压电加载器,对生长中的 C57/BL/6 雌性小鼠的左侧肘部进行每日 5 分钟的动态加载,持续 10 天。这些小鼠的右侧前肢作为对侧对照,未治疗小鼠的四肢作为年龄匹配对照。通过测量骨长度、重量、骨密度 (BMD) 和骨矿物质含量 (BMC) ,以及负荷敏感转录因子(如 c-fos、egr1 和 atf3)的 mRNA 表达水平来评估肘部负荷的影响。结果表明,与对侧和年龄匹配对照相比,肱骨伸长了 1.2%(均 p < 0.001),而尺骨比对侧对照(1.7%;p < 0.05)和年龄匹配对照(3.4%;p < 0.001)更长。骨延长与骨重、BMD 和 BMC 的增加有关。此外,选定转录因子的 mRNA 水平在负荷的尺骨和肱骨中升高。有趣的是,这种增加不仅在负荷肘部观察到,而且在负荷肢体的手腕和肩部也观察到。本研究表明,关节负荷可能有助于刺激骨延长和治疗肢体长度差异。