Wilsman Norman J, Bernardini Elizabeth S, Leiferman Ellen, Noonan Ken, Farnum Cornelia E
Department of Comparative Biosciences, University of Wisconsin-Madison, Madison, Wisconsin 53706, USA.
J Orthop Res. 2008 Nov;26(11):1457-65. doi: 10.1002/jor.20547.
Differential growth is the phenomenon whereby growth plates in the same individual at the same time all have uniquely different axial growth velocities. Differential growth is clearly present in the adolescent skeleton. In this study we ask two questions. When and by what pattern does the phenomenon of differential growth begin? Second, to what extent are the development of differential growth velocities correlated with changes in hypertrophic chondrocyte volume and/or with changes in chondrocytic production/turnover? Four growth plates (proximal and distal radial; proximal and distal tibial) were studied at 24 different time points in Long-Evans rats between the 17th gestational day (when differential growth does not exist) and postnatal day 27 (when differential growth is well established). Growth velocities were measured using fluorochrome labeling. Using stereological methodology, multiple chondrocytic kinetic parameters were measured for all growth plates. Elongation of the proximal radial growth plate decreases relative to elongation in the other three growth plates in the late fetal phase. Differential growth is fully expressed at postnatal day 13 when the other three growth plates start to decrease daily elongation at different rates. Differential growth is primarily associated with differences in hypertrophic cell volume manifested when growth deceleration occurs. This study also illustrates that differential growth is superimposed on systemic regulators that affect all growth plates simultaneously. The most dramatic illustration of this is the sharp decline in growth velocity in all four growth plates that occurs perinatally.
差异生长是指在同一时间同一个体中的生长板具有独特不同的轴向生长速度的现象。差异生长在青少年骨骼中明显存在。在本研究中,我们提出两个问题。差异生长现象何时开始以及以何种模式开始?其次,差异生长速度的发展在多大程度上与肥大软骨细胞体积的变化和/或软骨细胞产生/更新的变化相关?在长-伊文斯大鼠妊娠第17天(此时不存在差异生长)至出生后第27天(此时差异生长已充分确立)之间的24个不同时间点,对四个生长板(桡骨近端和远端;胫骨近端和远端)进行了研究。使用荧光染料标记测量生长速度。使用体视学方法,对所有生长板测量多个软骨细胞动力学参数。在胎儿后期,桡骨近端生长板的伸长相对于其他三个生长板的伸长有所减少。差异生长在出生后第13天充分表现出来,此时其他三个生长板开始以不同速率降低每日伸长。差异生长主要与生长减速时肥大细胞体积的差异有关。本研究还表明,差异生长叠加在同时影响所有生长板的全身调节因子上。最显著的例证是围产期所有四个生长板的生长速度急剧下降。