Perrien Daniel S, Akel Nisreen S, Edwards Paul K, Carver Adam A, Bendre Manali S, Swain Frances L, Skinner Robert A, Hogue William R, Nicks Kristy M, Pierson Tyler M, Suva Larry J, Gaddy Dana
Department of Physiology and Biophysics, Center for Orthopaedic Research, University of Arkansas for Medical Sciences, 4301 West Markham, Slot 505, Little Rock, Arkansas 72205, USA.
Endocrinology. 2007 Apr;148(4):1654-65. doi: 10.1210/en.2006-0848. Epub 2006 Dec 28.
Gonadal function plays a major role in bone homeostasis. It is widely held that the skeletal consequences of hypogonadism are solely due to a loss of sex steroids; however, increases in bone turnover begin during perimenopause before decreases in serum estradiol levels. These data and our demonstration that inhibins acutely regulate bone cell differentiation in vitro led us to test whether inhibin A (InhA) regulates bone mass in vivo. Using a transgenic model of inducible human InhA expression, InhA increased total body bone mineral density, increased bone volume, and improved biomechanical properties at the proximal tibia in intact mice and also prevented the loss of BMD and bone volume and strength associated with gonadectomy at both the spine and proximal tibia. In addition, InhA increased mineral apposition rate, double-labeled surface, and serum osteocalcin levels in vivo and osteoblastogenesis ex vivo without affecting osteoclast number or activity. Together these results demonstrate novel stimulatory effects of InhA on the skeleton in vivo. These studies provide in vivo evidence demonstrating that gonadal factors other than sex steroids play an important role in regulating bone mass and strength and, combined with our previous clinical data, suggest that gonadal InhA may be a component of the normal endocrine repertoire that regulates bone quality in both the axial and appendicular skeleton.
性腺功能在骨稳态中起主要作用。人们普遍认为性腺功能减退对骨骼的影响完全是由于性类固醇的缺乏;然而,在围绝经期,骨转换增加在血清雌二醇水平下降之前就已开始。这些数据以及我们关于抑制素在体外急性调节骨细胞分化的证明,促使我们测试抑制素A(InhA)在体内是否调节骨量。使用可诱导人InhA表达的转基因模型,InhA增加了完整小鼠的全身骨矿物质密度、骨体积,并改善了胫骨近端的生物力学性能,还防止了脊柱和胫骨近端与去势相关的骨密度、骨体积和强度的损失。此外,InhA增加了体内的矿物质沉积率、双标记表面和血清骨钙素水平,以及体外的成骨细胞生成,而不影响破骨细胞数量或活性。这些结果共同证明了InhA在体内对骨骼具有新的刺激作用。这些研究提供了体内证据,表明除性类固醇外的性腺因子在调节骨量和强度方面起重要作用,并且结合我们之前的临床数据表明,性腺InhA可能是正常内分泌调节系统的一个组成部分,可调节中轴骨和附属骨的骨质。