Department of Molecular Pharmacology, Medical Research Institute, Tokyo Medical and Dental University, Chiyoda-ku, Tokyo, Japan.
Horm Metab Res. 2009 Nov;41(11):822-8. doi: 10.1055/s-0029-1231056. Epub 2009 Jul 23.
Male sex hormones play a critical role in regulation of bone metabolism. In male mice lacking androgen receptor (AR), osteopenia and high turnover state in bone remodeling have been reported. However, androgen receptor's role in disuse-induced osteopenia is not known. Therefore, we examined the effects of AR deficiency on unloading-induced bone loss. Wild type or androgen receptor deficient mice (ARKO) were subjected to hind limb unloading (HU) or normal housing (Control). The groups of mice were as follows; wild type control mice (Group WT-Cont), ARKO control mice (Group ARKO-Cont), wild type HU mice (Group WT-HU), and ARKO-HU mice (Group ARKO-HU). HU reduced cancellous bone mass in ARKO (ARKO-HU) by about 70% compared to ARKO-Cont and this reduction rate was over two-fold more than that of wild type (WT-HU) (reduction by less than 30% compared to WT-Cont). Combination of ARKO and HU (ARKO-HU) resulted in the least levels of cortical bone mass and bone mineral density among the four groups. ARKO-HU group indicated the highest levels of systemic bone resorption marker, deoxypyridinoline. Osteoclast development levels in the cultures in ARKO-HU derived bone marrow cells were the highest among the four groups. These data suggest that combination of androgen receptor deficiency and hind limb unloading results in exacerbation of disuse-induced osteopenia due to the enhanced levels of bone resorption.
雄性激素在骨骼代谢调节中起着关键作用。在缺乏雄激素受体 (AR) 的雄性小鼠中,已经报道了骨质疏松症和骨重塑的高转换状态。然而,雄激素受体在废用性骨质疏松症中的作用尚不清楚。因此,我们研究了 AR 缺失对去负荷诱导的骨丢失的影响。野生型或雄激素受体缺失型 (ARKO) 小鼠被置于后肢去负荷 (HU) 或正常饲养 (Control)。分组如下:野生型对照组小鼠 (Group WT-Cont)、AR 缺失型对照组小鼠 (Group ARKO-Cont)、野生型去负荷组小鼠 (Group WT-HU) 和 AR 缺失型去负荷组小鼠 (Group ARKO-HU)。HU 使 ARKO (ARKO-HU) 的松质骨量减少了约 70%,与 ARKO-Cont 相比,这一减少率是野生型 (WT-HU) 的两倍多 (与 WT-Cont 相比减少不到 30%)。ARKO 和 HU 的组合 (ARKO-HU) 导致四个组中皮质骨量和骨矿物质密度最低。ARKO-HU 组的全身骨吸收标志物脱氧吡啶啉水平最高。在 ARKO-HU 来源的骨髓细胞培养物中,破骨细胞的发育水平在四个组中最高。这些数据表明,雄激素受体缺失和后肢去负荷的结合导致废用性骨质疏松症的恶化,原因是骨吸收水平增强。