The objectives of this pilot project are to evaluate changes in ovarian morphology, serum estrogen, bone density, and DNA deletions over time in female rhesus monkeys. Preliminary results indicate that bone strength from young monkeys 3-5 years of age and aged monkeys 22-25 years is different and that breaking strength of femurs decreases substantially with age. Young monkey femur strength was 13.5 MPa (comparable to a previous report by Yamada, 1970) while aged monkey femur strength averaged 9.7 MPa, about 70% less. Thickness of cortical and trabecular bone decrease with age while the number of trabecular intersections increases. Similar measurements using the wing of the pelvis (iliem) failed to demonstrate these correlations. Enumeration of eggs, primary follicles and cystic follicles in histologic sections of ovaries showed substantial decreases with age. We have recently expanded this study to test strength of femurs and lumbar vertebrae in a large number of specimens from animals ranging from 1-29 years. The results could provide the basis for future studies on effects of aging in females from puberty through menopause in response to exercise and dietary

Agency
National Institute of Health (NIH)
Institute
National Center for Research Resources (NCRR)
Type
Primate Research Center Grants (P51)
Project #
2P51RR000164-37
Application #
6277438
Study Section
Project Start
1998-09-30
Project End
1999-04-30
Budget Start
1997-10-01
Budget End
1998-09-30
Support Year
37
Fiscal Year
1998
Total Cost
Indirect Cost
Name
Tulane University
Department
Type
DUNS #
City
New Orleans
State
LA
Country
United States
Zip Code
70118
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Ramesh, Geeta; Martinez, Alejandra N; Martin, Dale S et al. (2017) Effects of dexamethasone and meloxicam on Borrelia burgdorferi-induced inflammation in glial and neuronal cells of the central nervous system. J Neuroinflammation 14:28
Parthasarathy, Geetha; Philipp, Mario T (2017) Receptor tyrosine kinases play a significant role in human oligodendrocyte inflammation and cell death associated with the Lyme disease bacterium Borrelia burgdorferi. J Neuroinflammation 14:110

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