Goodman W G, Baylink D J, Sherrard D J
Calcif Tissue Int. 1984 Mar;36(2):206-13. doi: 10.1007/BF02405319.
Bone formation, mineralization, and resorption were measured in vitamin D-deficient, azotemic rats given two different dosages of 24,25(OH)2D3 daily and in vehicle-treated controls (C). The intraperitoneal administration of 65 pmol over a 10 day period corrected the hypocalcemia observed in C, whereas 130 pmol produced mild hypercalcemia. Both dosages reduced osteoid width, osteoid area, and mineralization front width from control values. The rates of bone and matrix formation were unaffected by treatment. In C, matrix formation exceeded bone formation and resulted in osteoid accumulation; both dosages of 24,25(OH)2D3 reversed this relationship such that bone formation exceeded matrix formation in each treatment group. The rates of osteoid maturation and initial mineralization increased during repletion with 24,25(OH)2D3 at both dosage levels. However, the serum calcium concentration was correlated with both osteoid maturation rate (r = 0.68, P less than 0.01) and initial mineralization rate (r = 0.63, P less than 0.01) when all three experimental groups were considered. Bone resorption was unchanged from control values during treatment with 24,25(OH)2D3. The results suggest that 24,25(OH)2D3 promotes the maturation and mineralization of osteoid, and that this metabolite differs in its effects on bone formation and resorption. It is not clear, however, that the changes in bone dynamics observed are independent of the calcemic response induced by metabolite repletion under the conditions of this experiment.
在每日给予两种不同剂量的24,25-二羟维生素D3的维生素D缺乏、氮质血症大鼠以及给予赋形剂处理的对照组(C组)中,对骨形成、矿化和吸收进行了测量。在10天内腹腔注射65皮摩尔可纠正C组中观察到的低钙血症,而130皮摩尔则产生轻度高钙血症。两种剂量均使类骨质宽度、类骨质面积和矿化前沿宽度低于对照值。骨和基质形成速率不受治疗影响。在C组中,基质形成超过骨形成并导致类骨质积聚;两种剂量的24,25-二羟维生素D3均逆转了这种关系,使得每个治疗组中的骨形成超过基质形成。在两个剂量水平下,用24,25-二羟维生素D3补充期间,类骨质成熟和初始矿化速率均增加。然而,当考虑所有三个实验组时,血清钙浓度与类骨质成熟速率(r = 0.68,P < 0.01)和初始矿化速率(r = 0.63,P < 0.01)均相关。在用24,25-二羟维生素D3治疗期间,骨吸收与对照值无变化。结果表明,24,25-二羟维生素D3促进类骨质的成熟和矿化,并且这种代谢产物在对骨形成和吸收的影响方面有所不同。然而,在此实验条件下观察到的骨动力学变化是否独立于代谢产物补充引起的血钙反应尚不清楚。