Villemure I, Chung M A, Seck C S, Kimm M H, Matyas J R, Duncan N A
The McCaig Centre, The University of Calgary, Faculty of Medicine, 3330 Hospital Drive N.W., Calgary, Alberta, T2N 4N1, Canada.
Stud Health Technol Inform. 2002;91:114-8.
Bone growth is a complex process involving proliferation, maturation and hypertrophy of chondrocytes in the growth plates. Mechanical forces applied to growing bones alter their longitudinal growth. However, the mechanisms by which chondrocytes modulate longitudinal bone growth are not well understood. This in vitro study investigated the effects of mechanical loading on the mRNA expression pattern of key molecular components of the growth-plate. Short-term static loading was applied to rat proximal tibial growth-plate explants. Various age groups at specific developmental stages were investigated. In situ hybridization was used to assess the mRNA expression of the cells in different zones of the growth-plate. Four key components were investigated: 18s (basic cell metabolism), type II collagen (major extracellular matrix component), type X collagen (matrix component in hypertrophic zone) and PTH-PTHrP receptors (pre-hypertrophic chondrocytes). The spatial variation in the mRNA expression between loaded explants and their contralateral controls was compared to establish: -the sensitivity of the different growth-plate zones to mechanical loading; -the sensitivity of the different developmental stages to loading. Preliminary results indicated that static loading on the growth plate of 80 d.o. rats affects type II and X collagen gene expressions while PTH-PTHrP remains insensitive to static loading. Improved understanding of growth-plate mechanics and the underlying biology is required to provide a scientific basis for the treatment of progressive deformities.
骨骼生长是一个复杂的过程,涉及生长板中软骨细胞的增殖、成熟和肥大。施加于生长中骨骼的机械力会改变其纵向生长。然而,软骨细胞调节骨骼纵向生长的机制尚未完全明了。这项体外研究调查了机械负荷对生长板关键分子成分mRNA表达模式的影响。对大鼠胫骨近端生长板外植体施加短期静态负荷。研究了特定发育阶段的不同年龄组。采用原位杂交技术评估生长板不同区域细胞的mRNA表达。研究了四个关键成分:18s(基本细胞代谢)、II型胶原蛋白(主要细胞外基质成分)、X型胶原蛋白(肥大区的基质成分)和甲状旁腺激素-甲状旁腺激素相关蛋白受体(前肥大软骨细胞)。比较加载外植体与其对侧对照之间mRNA表达的空间差异,以确定:-不同生长板区域对机械负荷的敏感性;-不同发育阶段对负荷的敏感性。初步结果表明,对80日龄大鼠生长板施加静态负荷会影响II型和X型胶原蛋白基因的表达,而甲状旁腺激素-甲状旁腺激素相关蛋白对静态负荷不敏感。为了为进行性畸形的治疗提供科学依据,需要更好地理解生长板力学及其潜在生物学机制。