Journal
NEUROPSYCHOPHARMACOLOGY
Volume 33, Issue 5, Pages 1049-1061Publisher
NATURE PUBLISHING GROUP
DOI: 10.1038/sj.npp.1301498
Keywords
testosterone; aging; senescent; anxiety; cognition; 3 alpha-diol
Categories
Funding
- Intramural NIH HHS Funding Source: Medline
- NIMH NIH HHS [R01 MH067698-05, MH 06769801, R01 MH067698] Funding Source: Medline
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Although androgen secretion is reduced with aging, and may underlie decrements in cognitive and affective performance, the effects and mechanisms of androgens to mediate these behaviors are not well understood. Testosterone (T), the primary male androgen, is aromatized to estrogen (E-2), and reduced to dihydrotestosterone (DHT), which is converted to 5 alpha-androstane, 3 alpha, 17 beta-diol (3 alpha-diol). To ascertain whether actions of the neuroactive metabolite of T, 3 alpha-diol, mediates cognitive and affective behaviors, intact, aged male C57/B6 mice (24 month old) as well as young, intact and gonadectomized (GDX; 12 week old) mice were administered s.c. T, 3a-diol, E-2, or sesame oil vehicle (1 mg/kg; n = 4-5/group) at weekly intervals and 1 h later mice were tested in the activity box, roto-rod, open field, elevated plus maze, zero maze, mirror maze, dark-light transition, forced swim, or Vogel tasks. Mice were trained in the inhibitory avoidance or conditioned contextual fear and were administered hormones following training and then were tested. After the last test occasion, tissues were collected for evaluation of hormone levels and effects on gamma-aminobutyric acid (GABA)-stimulated chloride flux. T, 3 alpha-diol, or E-2 increased anti-anxiety and antidepressant behavior of aged, intact mice in the open field, light-dark transition, mirror maze, and forced swim tasks. T or 3 alpha-diol, but not E-2, enhanced anti-anxiety behavior in the elevated plus maze, zero maze, and the Vogel task, and increased motor behavior in the activity monitor, latency to fall in the Roto-rod task, and cognitive performance in the hippocampally-mediated, but not the amygdala-mediated, portion of the conditioned fear task and in the inhibitory avoidance task. Anti-anxiety and enhanced cognitive performance was associated with regimen that increased plasma and hippocampal 3 alpha-diol levels and GABA-stimulated chloride flux. Similar patterns were seen among young, adult GDX but not in intact mice. Thus, 3 alpha-diol can enhance affective and cognitive behavior of male mice.
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