Division of Endocrinology, Children's Mercy Hospitals, Kansas City, Missouri, USA.
Department of Pediatrics, University of Missouri-Kansas City-School of Medicine, Kansas City, Missouri, USA.
Physiol Rep. 2024 Aug;12(15):e16168. doi: 10.14814/phy2.16168.
It is not clear as to whether weight bearing and ambulation may affect bone growth. Our goal was to study the role of mechanical loading (one of the components of ambulation) on endochondral ossification and longitudinal bone growth. Thus, we applied cyclical, biologically relevant strains for a prolonged time period (4 weeks) to one tibia of juvenile mice, while using the contralateral one as an internal control. By the end of the 4-week loading period, the mean tibial growth of the loaded tibiae was significantly greater than that of the unloaded tibiae. The mean height and the mean area of the loaded tibial growth plates were greater than those of the unloaded tibiae. In addition, in female mice we found a greater expression of PTHrP in the loaded tibial growth plates than in the unloaded ones. Lastly, microCT analysis revealed no difference between loaded and unloaded tibiae with respect to the fraction of bone volume relative to the total volume of the region of interest or the tibial trabecular bone volume. Thus, our findings suggest that intermittent compressive forces applied on tibiae at mild-moderate strain magnitude induce a significant and persistent longitudinal bone growth. PTHrP expressed in the growth plate appears to be one growth factor responsible for stimulating endochondral ossification and bone growth in female mice.
目前尚不清楚负重和行走是否会影响骨骼生长。我们的目的是研究机械负荷(行走的组成部分之一)对软骨内骨化和纵向骨生长的作用。因此,我们对幼年小鼠的一条胫骨施加周期性的、生物学相关的应变,持续时间较长(4 周),同时将对侧胫骨作为内部对照。在 4 周的加载周期结束时,加载胫骨的平均胫骨生长明显大于未加载胫骨。加载胫骨生长板的平均高度和平均面积大于未加载胫骨。此外,我们在雌性小鼠中发现,加载胫骨生长板中的 PTHrP 表达高于未加载胫骨。最后,微 CT 分析显示,加载和未加载胫骨之间在感兴趣区域的骨体积与总体积的比值或胫骨小梁骨体积方面没有差异。因此,我们的研究结果表明,对胫骨施加中低应变幅度的间歇性压缩力会导致显著且持续的纵向骨生长。生长板中表达的 PTHrP 似乎是刺激雌性小鼠软骨内骨化和骨生长的生长因子之一。