Center for Menopause and Reproductive Medicine Research, Department of Obstetrics and Gynecology, Kaohsiung Chang-Gung Memorial Hospital, Kaohsiung, Taiwan.
Biochem Biophys Res Commun. 2011 Aug 5;411(3):477-82. doi: 10.1016/j.bbrc.2011.06.113. Epub 2011 Jun 23.
Male mice with androgen receptor knock-out (ARKO) show significant bone loss at a young age. However, the lasting effect of AR inactivation on bone in aging male mice remains unclear. We designed this study to evaluate the effect of AR on bone quality in aging male mice and to find the possible causes of AR inactivation contributing to the bone loss. The mice were grouped according to their ages and AR status and their trabecular bones were examined by micro-CT analysis at 6, 12, 18, and 30 weeks old. We found that bone mass consistently decreased and the bone microarchitectures continuously deteriorated in male ARKO mice at designated time points. To determine the cause of the bone loss in ARKO mice, we further examined the role of AR in bone cell fate decision and differentiation and we conducted experiments on bone marrow stromal cells (BMSC) obtained from wild type (WT) and AR knockout (KO) mice. We found that ARKO mice had higher numbers of colony formation unit-fibroblast (CFU-F), and CD44 and CD34 positive cells in bone marrow than WT mice. Our Q-RT-PCR results showed lower expression of genes linked to osteogenesis in BMSCs isolated from ARKO mice. In conclusion, AR nullification disrupted bone microarchitecture and caused trabecular bone mass loss in male ARKO mice. And the fate of BMSCs was impacted by the loss of AR. Therefore, these findings suggest that AR may accelerate the use of progenitor cells and direct them into osteogenic differentiation to affect bone metabolism.
雄性 AR 敲除(ARKO)小鼠在年轻时就表现出明显的骨丢失。然而,AR 失活对老年雄性小鼠骨骼的持久影响尚不清楚。我们设计了这项研究来评估 AR 对老年雄性小鼠骨质量的影响,并寻找 AR 失活导致骨丢失的可能原因。根据年龄和 AR 状态将小鼠分组,并在 6、12、18 和 30 周龄时通过 micro-CT 分析检查其小梁骨。我们发现,在指定的时间点,雄性 ARKO 小鼠的骨量持续减少,骨微结构不断恶化。为了确定 ARKO 小鼠骨丢失的原因,我们进一步研究了 AR 在骨细胞命运决定和分化中的作用,并在来自野生型(WT)和 AR 敲除(KO)小鼠的骨髓基质细胞(BMSC)上进行了实验。我们发现 ARKO 小鼠的骨髓中集落形成单位-成纤维细胞(CFU-F)和 CD44 和 CD34 阳性细胞数量高于 WT 小鼠。我们的 Q-RT-PCR 结果显示,从 ARKO 小鼠分离的 BMSC 中与成骨相关的基因表达降低。总之,AR 缺失破坏了骨微结构,导致雄性 ARKO 小鼠的小梁骨量丢失。BMSC 的命运受到 AR 缺失的影响。因此,这些发现表明 AR 可能加速祖细胞的利用,并将其引导为成骨分化,以影响骨代谢。