Effects of the estrous cycle and ovarian hormones on central expression of interleukin-1 evoked by stress in female rats.
Keiko Arakawa, Hiroyuki Arakawa, Cara M Hueston, Terrence Deak
Index: Neuroendocrinology 100(2-3) , 162-77, (2015)
Full Text: HTML
Abstract
Exposure to stressors such as foot shock (FS) leads to increased expression of multiple inflammatory factors, including the proinflammatory cytokine interleukin-1 (IL-1) in the brain. Studies have indicated that there are sex differences in stress reactivity, suggesting that the fluctuations in gonadal steroid levels across the estrous cycle may play a regulatory role in the stress-induced cytokine expression. The present studies were designed to investigate the role of 17-β-estradiol (E2) and progesterone (Pg) in regulating the cytokine response within the paraventricular nucleus (PVN) of the hypothalamus through analysis of gene expression with real-time RT-PCR. Regularly cycling female rats showed a stress-induced increase in PVN IL-1 levels during the diestrous, proestrous, and estrous stages. During the metestrous stage, no change in IL-1 levels was seen following FS; however, estrogen receptor (ER)-β levels did increase. Ovariectomy resulted in an increase in PVN IL-1 levels, which was attenuated by treatment with estradiol benzoate (10 or 50 µg), indicating an E2-mediated anti-inflammatory effect. Ovariectomized rats treated with Pg (500 or 1,250 µg) showed no alteration in IL-1 levels, but Pg did up-regulate ER-β gene expression. The results from the current study implicate a potential mechanism through which high availability of endogenous Pg during the metestrous stage increases ER-β sensitivity, which in turn attenuates the PVN IL-1 response to stress. Thus, the interaction between gonadal steroid hormones and their central receptors may exert a powerful inhibitory effect on neuroimmune consequences of stress throughout the estrous cycle.© 2014 S. Karger AG, Basel.
Related Compounds
Related Articles:
Imaging of a clinically relevant stroke model: glucose hypermetabolism revisited.
2015-03-01
[Stroke 46(3) , 835-42, (2015)]
Suppression of the HSF1-mediated proteotoxic stress response by the metabolic stress sensor AMPK.
2015-02-03
[EMBO J. 34(3) , 275-93, (2015)]
Detailed characterization of a long-term rodent model of critical illness and recovery.
2015-03-01
[Crit. Care Med. 43(3) , e84-96, (2015)]
The chemokine (CCL2-CCR2) signaling axis mediates perineural invasion.
2015-02-01
[Mol. Cancer Res. 13(2) , 380-90, (2015)]
Developmental tightening of cerebellar cortical synaptic influx-release coupling.
2015-02-04
[J. Neurosci. 35(5) , 1858-71, (2015)]