4.4 Article

Cognitive-impairing effects of medroxyprogesterone acetate in the rat: independent and interactive effects across time

期刊

PSYCHOPHARMACOLOGY
卷 218, 期 2, 页码 405-418

出版社

SPRINGER
DOI: 10.1007/s00213-011-2322-4

关键词

Hormone therapy; Contraceptive; Cognition; Progestins; Menopause; Aging; Learning and memory

资金

  1. National Institute on Aging [AG028084]
  2. state of Arizona
  3. ADHS
  4. Arizona Alzheimer's Disease Core Center
  5. NIH [AG027956]
  6. Welch Foundation [BK-0031]

向作者/读者索取更多资源

Rationale The synthetic progestin medroxyprogesterone acetate (MPA), widely used in hormone therapy (HT) and as the contraceptive Depo Provera, is implicated in detrimental cognitive effects in women. Recent evidence in aged ovariectomized (Ovx) rodents shows that short-term MPA treatment impairs cognition and alters the GABAergic system. Objectives Using rats, we evaluated the long-lasting cognitive and GABAergic effects of MPA administered in young adulthood (Early-MPA), modeling contraception, and how this early exposure interacts with later MPA treatment (Late-MPA), modeling HT. Methods Early-MPA treatment involved weekly anti-ovulatory MPA injections (3.5 mg) from 4 to 8 months of age in ovary-intact rats. At 10 months old, rats were Ovx and weekly MPA injections were re-initiated and continued throughout testing for Late-MPA treatment. Results On the water radial-arm maze, all MPA-treated groups showed working memory impairment compared to Controls (p < 0.05); Early + Late-MPA rats were impaired on multiple dimensions of working memory (p < 0.05). On the Morris maze, Late-MPA rats showed greater overnight forgetting compared to Controls (p < 0.05). At study conclusion, MPA was detected in serum in all MPA-treated groups except Early-MPA, confirming treatment and clearance from serum in Early-MPA rats. In animals with detectable serum MPA, higher MPA levels were associated with less dorsal-hippocampal glutamic acid decarboxylase, the synthesizing enzyme for GABA (p = 0.0059). Conclusions Findings suggest that MPA treatment leads to long-lasting cognitive impairments in the rodent, even in the absence of circulating MPA in animals given prior MPA treatment, which may relate to the GABAergic system. Further research defining the parameters of the negative impact of this widely used progestin on brain and cognition is warranted.

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