4.5 Article

Altered stress responsiveness and hypothalamic-pituitary-adrenal axis function in male rat offspring of socially isolated parents

期刊

JOURNAL OF NEUROCHEMISTRY
卷 126, 期 4, 页码 493-502

出版社

WILEY
DOI: 10.1111/jnc.12273

关键词

3 alpha,5 alpha-tetrahydroprogesterone; glucocorticoid receptor; HPA axis; rat; socially isolated offspring; stress

资金

  1. Sardinian Government (RAS) [F71J11000900002]
  2. Fondazione Banco di Sardegna

向作者/读者索取更多资源

Social isolation in male rats at weaning results in reduced basal levels of the neuroactive steroid 3 alpha,5 alpha-tetrahydroprogesterone (3a, 5a-TH PROG) in the brain and plasma as well as increased anxiety-like behavior. We now show that socially isolated female rats also manifest a reduced basal cerebrocortical concentration of 3 alpha,5 alpha-TH PROG as well as an anxiety-like profile in the elevated plus-maze and Vogel conflict tests compared with group-housed controls. In contrast, despite the fact that they were raised under normal conditions, adult male offspring of male and female rats subjected to social isolation before mating exhibited an increased basal cerebrocortical level of 3 alpha,5 alpha-TH PROG but no difference in emotional reactivity compared with the offspring of group-housed parents. These animals also showed an increased basal activity of the hypothalamic-pituitary-adrenal axis as well as reduced abundance of corticotropin-releasing factor in the hypothalamus and of corticotropin-releasing factor receptor type 1 in the pituitary. Moreover, negative feedback regulation of hypothalamicpituitary-adrenal axis activity by glucocorticoid was enhanced in association with up-regulation of glucocorticoid receptor expression in the hippocampus. There was also attenuation of corticosterone release induced by foot-shock stress in the offspring of socially isolated parents. The increase in the brain concentration of 3 alpha,5 alpha-TH PROG induced by acute stress was also blunted in these animals. Our results thus show that a stressful experience before mating can influence neuroendocrine signaling in the next generation.

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