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首页> 外文期刊>Journal of bone and mineral research: the official journal of the American Society for Bone and Mineral Research >Mineralization and bone resorption are regulated by the androgen receptor in male mice.
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Mineralization and bone resorption are regulated by the androgen receptor in male mice.

机译:雄性小鼠中的雄激素受体调节矿化和骨吸收。

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摘要

Androgens play a key role in skeletal growth and bone maintenance; however, their mechanism of action remains unclear. To address this, we selectively deleted the androgen receptor (AR) in terminally differentiated, mineralizing osteoblasts using the Cre/loxP system in mice (osteocalcin-Cre AR knockouts [mOBL-ARKOs]). Male mOBL-ARKOs had decreased femoral trabecular bone volume compared with littermate controls because of a reduction in trabecular number at 6, 12, and 24 wk of age, indicative of increased bone resorption. The effects of AR inactivation in mineralizing osteoblasts was most marked in the young mutant mice at 6 wk of age when rates of bone turnover are high, with a 35% reduction in trabecular bone volume, decreased cortical thickness, and abnormalities in the mineralization of bone matrix, characterized by increased unmineralized bone matrix and a decrease in the amount of mineralizing surface. This impairment in bone architecture in the mOBL-ARKOs persisted throughout adulthood despite an unexpected compensatory increase in osteoblast activity. Our findings show that androgens act through the AR in mineralizing osteoblasts to maintain bone by regulating bone resorption and the coordination of bone matrix synthesis and mineralization, and that this action is most important during times of bone accrual and high rates of bone remodeling.
机译:雄激素在骨骼生长和骨骼维持中起关键作用。但是,它们的作用机理仍不清楚。为了解决这个问题,我们在小鼠中使用Cre / loxP系统(osteocalcin-Cre AR基因敲除[mOBL-ARKOs])选择性地删除了最终分化的矿化成骨细胞中的雄激素受体(AR)。与同窝对照相比,男性mOBL-ARKOs股骨小梁的骨量减少,因为在6、12和24周龄时骨小梁数量减少,表明骨吸收增加。 AR失活在成矿成骨细胞中的作用在6周龄的年轻突变小鼠中最为明显,这时骨骼更新率很高,小梁骨体积减少了35%,皮层厚度减小,并且骨骼矿化异常基质,其特征在于增加的未矿化骨基质和减少矿化表面的数量。尽管成骨细胞活性出乎意料的增加,但整个成年期,mOBL-ARKO的骨结构损害仍持续存在。我们的研究结果表明,雄激素通过增生作用在成矿成骨细胞中通过调节骨吸收以及协调骨基质合成和矿化来维持骨骼,并且在骨骼积聚和骨重塑率很高时,这一作用最为重要。

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