To determine whether female marmosets undergo a reduction in bone mineral density following ovariectomy or socially induced hypoestrogenic anovulation. RESULTS Chronic reduction in estrogen causes a reduction in bone mineral density and increase in osteoporosis in all species in which it has been studied. In marmosets, socially subordinate females regularly become anovulatory and may remain hypoestrogenic for extended periods of time. To determine whether these animals might possess a mechanism to protect them from the deleterious skeletal consequences of hypoestrogenism, we examined the effect of ovariectomy-induced or socially induced hypoestrogenism on bone mineral density in marmosets. No differences in bone minderal density were found between ovary-intact and ovariectomized females, or between dominant and subordinate females. A longitudinal study also failed to reveal any effects of ovariectomy on bone mineral density. Thus, marmosets may possess a unique adaptation protecting them from hypoestrogen-induced bone loss, and might provide a novel model for the investigation and treatment of osteoporosis. FUTURE DIRECTIONS We plan to confirm and extend our preliminary findings using a larger sample size, and to begin to investigate the possible biochemical and cellular mechanisms by which estrogen depletion does not cause bone loss in female marmosets. KEY WORDS dual-energy x-ray absorptiometry, skeletal system, osteoporosis

Agency
National Institute of Health (NIH)
Institute
National Center for Research Resources (NCRR)
Type
Primate Research Center Grants (P51)
Project #
5P51RR000167-38
Application #
6277691
Study Section
Project Start
1998-05-01
Project End
1999-04-30
Budget Start
1997-10-01
Budget End
1998-09-30
Support Year
38
Fiscal Year
1998
Total Cost
Indirect Cost
Name
University of Wisconsin Madison
Department
Type
DUNS #
161202122
City
Madison
State
WI
Country
United States
Zip Code
53715
Kang, HyunJun; Mesquitta, Walatta-Tseyon; Jung, Ho Sun et al. (2018) GATA2 Is Dispensable for Specification of Hemogenic Endothelium but Promotes Endothelial-to-Hematopoietic Transition. Stem Cell Reports 11:197-211
Rhoads, Timothy W; Burhans, Maggie S; Chen, Vincent B et al. (2018) Caloric Restriction Engages Hepatic RNA Processing Mechanisms in Rhesus Monkeys. Cell Metab 27:677-688.e5
Ellis-Connell, Amy L; Balgeman, Alexis J; Zarbock, Katie R et al. (2018) ALT-803 Transiently Reduces Simian Immunodeficiency Virus Replication in the Absence of Antiretroviral Treatment. J Virol 92:
Park, Mi Ae; Jung, Ho Sun; Slukvin, Igor (2018) Genetic Engineering of Human Pluripotent Stem Cells Using PiggyBac Transposon System. Curr Protoc Stem Cell Biol 47:e63
Mattison, Julie A; Colman, Ricki J; Beasley, T Mark et al. (2017) Caloric restriction improves health and survival of rhesus monkeys. Nat Commun 8:14063
Feltovich, Helen (2017) Cervical Evaluation: From Ancient Medicine to Precision Medicine. Obstet Gynecol 130:51-63
Singaravelu, Janani; Zhao, Lian; Fariss, Robert N et al. (2017) Microglia in the primate macula: specializations in microglial distribution and morphology with retinal position and with aging. Brain Struct Funct 222:2759-2771
Ellis, Amy; Balgeman, Alexis; Rodgers, Mark et al. (2017) Characterization of T Cells Specific for CFP-10 and ESAT-6 in Mycobacterium tuberculosis-Infected Mauritian Cynomolgus Macaques. Infect Immun 85:
Rodrigues, Michelle A (2017) Female Spider Monkeys (Ateles geoffroyi) Cope with Anthropogenic Disturbance Through Fission-Fusion Dynamics. Int J Primatol 38:838-855
Buechler, Connor R; Bailey, Adam L; Lauck, Michael et al. (2017) Genome Sequence of a Novel Kunsagivirus (Picornaviridae: Kunsagivirus) from a Wild Baboon (Papio cynocephalus). Genome Announc 5:

Showing the most recent 10 out of 528 publications