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An In Vivo Estrogen Deficiency Mouse Model for Screening Exogenous Estrogen Treatments of Cardiovascular Dysfunction After Menopause
Published on: August 13, 2019
Estrogen-induced osteogenesis in intact female mice lacking ERbeta
K E McDougall1, M J Perry, R L Gibson
1Academic Rheumatology, University of Bristol, Bristol BS2 8HW, United Kingdom.
Abstract:
We recently found that estrogen receptor (ER) antagonists prevent high-dose estrogen from inducing the formation of new cancellous bone within the medullary cavity of mouse long bones. In the present investigation, we studied the role of specific ER subtypes in this response by examining whether this is impaired in female ERbeta(-/-) mice previously generated by targeted gene deletion. Vehicle or 17beta-estradiol (E(2)) (range 4-4,000 microg. kg(-1). day(-1)) was administered to intact female ERbeta(-/-) mice and wild-type littermates by subcutaneous injection for 28 days. The osteogenic response was subsequently assessed by histomorphometry performed on longitudinal and cross sections of the tibia. E(2) was found to cause an equivalent increase in cancellous bone formation in ERbeta(-/-) mice and littermate controls, as assessed at the proximal and distal regions of the proximal tibial metaphysis. E(2) also resulted in a similar increase in endosteal mineral apposition rate in these two genotypes, as assessed at the tibial diaphysis. In contrast, cortical area in ERbeta(-/-) mice was found to be greater than that in wild types irrespective of E(2) treatment, as was tibial bone mineral density as measured by dual-energy X-ray absorptiometry, consistent with previous reports of increased cortical bone mass in these animals. We conclude that, although ERbeta acts as a negative modulator of cortical modeling, this isoform does not appear to contribute to high-dose estrogen's ability to induce new cancellous bone formation in mouse long bones.
Insights
Estrogen receptor beta (ERbeta) does not influence high-dose estrogen
Area of Science:
- Endocrinology
- Bone Biology
- Genetics
Background:
- Estrogen receptor antagonists block high-dose estrogen-induced cancellous bone formation in mouse long bones.
- Specific estrogen receptor (ER) subtypes' roles in this response are unclear.
Purpose of the Study:
- To investigate the role of ERbeta in high-dose estrogen-induced cancellous bone formation.
- To assess if ERbeta deficiency impairs estrogen's osteogenic response.
Main Methods:
- Female ERbeta(-/-) mice and wild-type littermates received vehicle or 17beta-estradiol (E(2)) for 28 days.
- Osteogenic response was assessed using histomorphometry of the tibia.
- Cortical bone mass was measured using dual-energy X-ray absorptiometry.
Main Results:
- E(2) induced equivalent increases in cancellous bone formation in ERbeta(-/-) mice and controls.
- Similar increases in endosteal mineral apposition rate were observed in both genotypes.
- ERbeta(-/-) mice exhibited greater cortical area and bone mineral density, irrespective of E(2) treatment.
Conclusions:
- ERbeta negatively modulates cortical bone modeling.
- ERbeta is not essential for high-dose estrogen-induced cancellous bone formation in mouse long bones.

