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甲状旁腺激素与机械作用对大鼠胫骨干皮质骨具有协同效应。

Parathyroid hormone and mechanical usage have a synergistic effect in rat tibial diaphyseal cortical bone.

作者信息

Ma Y, Jee W S, Yuan Z, Wei W, Chen H, Pun S, Liang H, Lin C

机构信息

Radiobiology Division, University of Utah School of Medicine, Salt Lake City, Utah, USA.

出版信息

J Bone Miner Res. 1999 Mar;14(3):439-48. doi: 10.1359/jbmr.1999.14.3.439.

Abstract

Previous reports showed that bone mass and architecture only partially recovered by remobilization (RM) after immobilization (IM)-induced osteopenia, and that parathyroid hormone (PTH) had an anabolic effect on the skeleton. The aim of this study was to determine whether low doses of PTH could restore IM-induced cortical bone loss and whether a combination of PTH plus loading (RM) treatment would be more effective than the PTH in unloaded (IM) limbs. One hundred and sixty 6-month-old rats were divided into aging and IM groups. The right hindlimb of the rat was immobilized by elastic bandage for 18 weeks, and then groups of rats were either kept IM or RM and treated with 30 microgram or 80 microgram of hPTH(1-38)/kg/day for 2, 10, and 20 weeks. Fluorescent-labeled, undecalcified cross-sections of right tibial shafts were studied. We found that RM for 20 weeks after 18 weeks of IM only partially recovered IM-induced muscle weight loss and PTH had no effect on muscle weight in either IM or RM limbs; that RM for 20 weeks after 18 weeks of IM partially restored some minimal cortical width by stimulating periosteal and endocortical bone formation and decreasing endocortical resorption; that PTH treatment of IM limbs completely restored IM-induced cortical bone loss and added extra bone by stimulating bone formation indices on all bone surfaces and depressing bone resorption on endocortical surface; that PTH treatment of RM limbs produced similar anabolic effects as in IM limbs with 30 microgram/kg/day dose but the 80 microgram/kg/day dose-treated limbs had a higher periosteal bone formation rate, which created a larger cross-sectional area, more cortical bone area, and a thicker cortex than the same dose treated IM limbs; and that PTH 80 microgram/kg/day treatment produced more anabolic effect than the 30 microgram/kg/day in both IM and RM limbs. We concluded that reloading the hindlimb by RM after long-term IM could not recover the cortical bone mass. PTH at employed doses was able to completely restore IM-induced cortical bone loss, and this effect was independent of mechanical stimulation. However, when PTH was combined with mechanical loading (RM), a synergistic anabolic effect on periosteal bone formation occurred which increased the cross sectional area that can increase bone strength.

摘要

先前的报告显示,制动(IM)诱导的骨质减少后通过重新活动(RM),骨量和骨结构仅部分恢复,并且甲状旁腺激素(PTH)对骨骼具有合成代谢作用。本研究的目的是确定低剂量的PTH是否可以恢复IM诱导的皮质骨丢失,以及PTH加负荷(RM)治疗的联合应用是否比非负重(IM)肢体单独使用PTH更有效。160只6月龄大鼠被分为老龄组和IM组。大鼠右后肢用弹性绷带制动18周,然后将大鼠分组,分别保持制动状态或进行重新活动,并分别用30微克或80微克的hPTH(1-38)/千克/天治疗2周、10周和20周。对右胫骨干进行荧光标记的不脱钙横断面研究。我们发现,IM 18周后进行20周的RM仅部分恢复了IM诱导的肌肉重量减轻,并且PTH对IM或RM肢体的肌肉重量均无影响;IM 18周后进行20周的RM通过刺激骨膜和骨内膜骨形成并减少骨内膜吸收,部分恢复了一些最小皮质宽度;PTH治疗IM肢体完全恢复了IM诱导的皮质骨丢失,并通过刺激所有骨表面的骨形成指标和抑制骨内膜表面的骨吸收增加了额外的骨量;PTH治疗RM肢体产生了与IM肢体中30微克/千克/天剂量相似的合成代谢作用,但80微克/千克/天剂量治疗的肢体具有更高的骨膜骨形成率,其产生的横截面积更大、皮质骨面积更多且皮质更厚,比相同剂量治疗的IM肢体更大;并且80微克/千克/天的PTH治疗在IM和RM肢体中均比30微克/千克/天产生更强的合成代谢作用。我们得出结论,长期IM后通过RM对后肢进行重新加载不能恢复皮质骨量。所使用剂量的PTH能够完全恢复IM诱导的皮质骨丢失,并且这种作用与机械刺激无关。然而,当PTH与机械负荷(RM)联合使用时,对骨膜骨形成产生协同合成代谢作用,增加了横截面积,从而可以增强骨强度。

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