首页> 外文期刊>BioMed research international >Mineral and Skeletal Homeostasis Influence the Manner of Bone Loss in Metabolic Osteoporosis due to Calcium-Deprived Diet in Different Sites of Rat Vertebra and Femur
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Mineral and Skeletal Homeostasis Influence the Manner of Bone Loss in Metabolic Osteoporosis due to Calcium-Deprived Diet in Different Sites of Rat Vertebra and Femur

机译:矿物质和骨骼的动态平衡影响大鼠椎骨和股骨不同部位因缺钙饮食而引起的代谢性骨质疏松症骨丢失的方式

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Rats fed calcium-deprived diet develop osteoporosis due to enhanced bone resorption, secondary to parathyroid overactivity resulting from nutritional hypocalcemia. Therefore, rats provide a good experimental animal model for studying bone modelling alterations during biochemical osteoporosis. Three-month-old Sprague-Dawley male rats were divided into 4 groups: (1) baseline, (2) normal diet for 4 weeks, (3) calcium-deprived diet for 4 weeks, and (4) calcium-deprived diet for 4 weeks and concomitant administration of PTH (1-34) 40 µg/Kg/day. Histomorphometrical analyses were made on cortical and trabecular bone of lumbar vertebral body as well as of mid-diaphysis and distal metaphysis of femur. In all rats fed calcium-deprived diet, despite the reduction of trabecular number (due to the maintenance of mineral homeostasis), an intense activity of bone deposition occurs on the surface of the few remaining trabeculae (in answering to mechanical stresses and, consequently, to maintain the skeletal homeostasis). Different responses were detected in different sites of cortical bone, depending on their main function in answering mineral or skeletal homeostasis. This study represents the starting point for work-in-progress researches, with the aim of defining in detail timing and manners of evolution and recovery of biochemical osteoporosis.
机译:进食缺乏钙的饮食的大鼠由于增强的骨吸收而发展为骨质疏松症,这是由于营养性低钙血症导致的甲状旁腺功能亢进所致。因此,大鼠提供了一个很好的实验动物模型,用于研究生化性骨质疏松症期间骨骼模型的改变。将3个月大的Sprague-Dawley雄性大鼠分为4组:(1)基线,(2)正常饮食4周,(3)缺钙饮食4周和(4)缺钙饮食4周,并同时服用PTH(1-34)40µµg / Kg /天。对腰椎椎体的骨皮质和小梁以及股骨的中骨干和远端干physi端进行组织形态计量学分析。在所有饲喂缺钙饮食的大鼠中,尽管小梁数目减少(由于维持了矿物质的体内稳态),但剩余的小梁表面仍发生强烈的骨沉积活动(以应对机械应力,因此,维持骨骼的动态平衡)。在皮质骨的不同部位检测到不同的反应,这取决于它们在回答矿物质或骨骼稳态方面的主要功能。这项研究代表了进行中的研究的起点,目的是详细定义生化性骨质疏松症的演化和恢复的时机和方式。

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