Female Mice Lacking Estrogen Receptor-Alpha in Osteoblasts Have Compromised Bone Mass and Strength

被引:149
作者
Melville, Katherine M. [1 ,2 ]
Kelly, Natalie H. [1 ,2 ]
Khan, Sohaib A. [3 ]
Schimenti, John C. [4 ]
Ross, F. Patrick [5 ]
Main, Russell P. [6 ,7 ]
van der Meulen, Marjolein C. H. [1 ,5 ]
机构
[1] Cornell Univ, Sibley Sch Mech & Aerosp Engn, Ithaca, NY 14853 USA
[2] Cornell Univ, Dept Biomed Engn, Ithaca, NY USA
[3] Univ Cincinnati, Coll Med, Cincinnati, OH USA
[4] Cornell Univ, Coll Vet Med, Ithaca, NY 14853 USA
[5] Hosp Special Surg, Div Res, New York, NY 10021 USA
[6] Purdue Univ, Coll Vet Med, W Lafayette, IN 47907 USA
[7] Purdue Univ, Weldon Sch Biomed Engn, W Lafayette, IN 47907 USA
基金
美国国家卫生研究院;
关键词
GENETIC ANIMAL MODELS; SEX STEROIDS; OSTEOBLASTS; OSTEOPOROSIS; BIOMECHANICS; TRANSGENIC MICE; GROWTH; MOUSE; GENE; REVEALS; BETA; TRANSCRIPTION; OSTEOPOROSIS; DISRUPTION; DEFICIENT;
D O I
10.1002/jbmr.2082
中图分类号
R5 [内科学];
学科分类号
100201 [内科学];
摘要
Reduced bioavailability of estrogen increases skeletal fracture risk in postmenopausal women, but the mechanisms by which estrogen regulates bone mass are incompletely understood. Because estrogen signaling in bone acts, in part, through estrogen receptor alpha (ER), mice with global deletion of ER (ERKO) have been used to determine the role of estrogen signaling in bone biology. These animals, however, have confounding systemic effects arising from other organs, such as increased estrogen and decreased insulin-like growth factor 1 (IGF-1) serum levels, which may independently affect bone. Mice with tissue-specific ER deletion in chondrocytes, osteoblasts, osteocytes, or osteoclasts lack the systemic effects seen in the global knockout, but show that presence of the receptor is important for the function of each cell type. Although bone mass is reduced when ER is deleted from osteoblasts, no study has determined if this approach reduces whole bone strength. To address this issue, we generated female osteoblast-specific ERKO mice (pOC-ERKO) by crossing mice expressing a floxed ER gene (ERfl/fl) with mice transgenic for the osteocalcin-Cre promoter (OC-Cre). Having confirmed that serum levels of estrogen and IGF-1 were unaltered, we focused on relating bone mechanics to skeletal phenotype using whole bone mechanical testing, microcomputed tomography, histology, and dynamic histomorphometry. At 12 and 18 weeks of age, pOC-ERKO mice had decreased cancellous bone mass in the proximal tibia, vertebra, and distal femur, and decreased cortical bone mass in the tibial midshaft, distal femoral cortex, and L5 vertebral cortex. Osteoblast activity was reduced in cancellous bone of the proximal tibia, but osteoclast number was unaffected. Both femora and vertebrae had decreased whole bone strength in mechanical tests to failure, indicating that ER in osteoblasts is required for appropriate bone mass and strength accrual in female mice. This pOC-ERKO mouse is an important animal model that could enhance our understanding of estrogen signaling in bone cells in vivo. (c) 2014 American Society for Bone and Mineral Research.
引用
收藏
页码:370 / 379
页数:10
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