首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Interaction among Calcium Diet Content PTH (1-34) Treatment and Balance of Bone Homeostasis in Rat Model: The Trabecular Bone as Keystone
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Interaction among Calcium Diet Content PTH (1-34) Treatment and Balance of Bone Homeostasis in Rat Model: The Trabecular Bone as Keystone

机译:钙饮食含量PTH(1-34)治疗与大鼠骨骼稳态平衡之间的相互作用:小梁骨为基石

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摘要

The present study is the second step (concerning normal diet restoration) of the our previous study (concerning the calcium-free diet) to determine whether normal diet restoration, with/without concomitant PTH (1-34) administration, can influence amounts and deposition sites of the total bone mass. Histomorphometric evaluations and immunohistochemical analysis for Sclerostin expression were conducted on the vertebral bodies and femurs in the rat model. The final goals are (i) to define timing and manners of bone mass changes when calcium is restored to the diet, (ii) to analyze the different involvement of the two bony architectures having different metabolism (i.e., trabecular versus cortical bone), and (iii) to verify the eventual role of PTH (1-34) administration. Results evidenced the greater involvement of the trabecular bone with respect to the cortical bone, in response to different levels of calcium content in the diet, and the effect of PTH, mostly in the recovery of trabecular bony architecture. The main findings emerged from the present study are (i) the importance of the interplay between mineral homeostasis and skeletal homeostasis in modulating and guiding bone’s response to dietary/metabolic alterations and (ii) the evidence that the more involved bony architecture is the trabecular bone, the most susceptible to the dynamical balance of the two homeostases.
机译:本研究是我们先前研究(关于无钙饮食)的第二步(关于正常饮食的恢复),用于确定正常饮食恢复与/不伴随PTH(1-34)的使用是否可以影响数量和沉积总骨量的部位。在大鼠模型的椎体和股骨上进行了硬化蛋白表达的组织形态计量学评价和免疫组化分析。最终目标是(i)定义恢复饮食后钙质变化的时机和方式,(ii)分析具有不同新陈代谢的两种骨结构(即小梁与皮质骨)的不同参与,以及(iii)验证PTH(1-34)管理的最终作用。结果表明,由于饮食中钙含量的不同水平,小梁骨相对于皮质骨的参与度更高,以及PTH的影响(主要在小梁骨结构的恢复中)。本研究的主要发现是:(i)矿物质稳态与骨骼稳态之间的相互作用在调节和指导骨骼对饮食/代谢变化的反应中的重要性;(ii)涉及更多的骨结构是小梁骨的证据,最容易受到两种稳态的动态平衡的影响。

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