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首页> 外文期刊>Calcified tissue international. >Alfacalcidol-stimulated focal bone formation on the cancellous surface and increased bone formation on the periosteal surface of the lumbar vertebrae of adult female rats.
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Alfacalcidol-stimulated focal bone formation on the cancellous surface and increased bone formation on the periosteal surface of the lumbar vertebrae of adult female rats.

机译:阿法骨化醇刺激成年雌性大鼠腰椎的松质表面上的局灶性骨形成,并增加了腰椎骨膜表面上的骨形成。

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摘要

PURPOSE: To investigate the skeletal effects of alfacalcidol alone or in combination with exercise in intact adult female rats. METHODS: Seventy-four 8.5-month-old rats were orally administered 0, 0.005, 0.025, 0.05 or 0.1 microg/kg of alfacalcidol for 12 weeks, alone or in combination with exercise. Cancellous bone histomorphometric measurements were performed on the second lumbar vertebra. RESULTS: At 0.05 and 0.1 microg/kg, alfacalcidol caused a significant increase in cancellous bone volume, accompanied by an increase in trabecular architecture. Percent eroded surface, bone resorption and formation were suppressed by alfacalcidol treatment. However, mineral apposition rate was significantly increased, indicating osteoblast activity was increased. A positive balance between bone formation and resorption was observed in the rats treated with the highest dose of alfacalcidol. Alfacalcidol induced a unique bone formation site ("bouton") on the cancellous surface. These boutons connected adjacent trabeculae and increased trabecular thickness. They exhibited both smooth and scalloped cement lines, suggesting that they were formed by minimodeling- and remodeling-based bone formation. Furthermore, alfacalcidol at 0.1 microg/kg increased periosteal bone formation of the lumbar transverse processes. Bipedal stance exercise alone did not have an effect on bone balance and bone turnover. There were no interactions between alfacalcidol and bipedal stance exercise except for a decrease in bone resorption. CONCLUSION: Alfacalcidol exhibited both anti-catabolic and anabolic effects on bone in intact female rats. The effect of combined treatment with alfacalcidol and bipedal stance exercise was no better than that of alfacalcidol alone.
机译:目的:研究单独或联合运动对成年成年雌性大鼠的阿法骨化醇的骨骼作用。方法:74只8.5个月大的大鼠单独或联合运动口服0、0.005、0.025、0.05或0.1 microg / kg阿法骨化醇,持续12周。在第二个腰椎上进行松质骨组织形态测量。结果:在0.05和0.1 microg / kg时,阿法骨化醇引起松质骨体积显着增加,并伴有小梁结构的增加。阿法骨化醇可抑制表面侵蚀的百分比,骨吸收和形成。但是,矿物质的附着率显着增加,表明成骨细胞活性增加。在用最高剂量的阿法骨化醇治疗的大鼠中,观察到骨形成与吸收之间存在正平衡。阿法骨化醇在松质表面上诱导了独特的骨形成部位(“钮扣”)。这些钮扣连接相邻的小梁并增加了小梁的厚度。它们既显示出光滑的也显示出扇形的水泥线,表明它们是由基于微型模型和重塑的骨形成形成的。此外,0.1微克/千克的阿法骨化醇增加了腰椎横突的骨膜骨形成。单独的双足姿势锻炼不会对骨骼平衡和骨骼更新产生影响。除骨吸收减少外,阿法骨化醇与两足动物的姿势运动之间没有相互作用。结论:阿法骨化醇对完整雌性大鼠的骨具有抗分解代谢和同化作用。联合阿法骨化醇和双足站立运动的治疗效果不比单独使用阿法骨化醇更好。

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