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Ovariectomy in mice primes hippocampal microglia to exacerbate behavioral sickness responses. | LitMetric

Ovariectomy in mice primes hippocampal microglia to exacerbate behavioral sickness responses.

Brain Behav Immun Health

Division of Pharmacology & Toxicology, College of Pharmacy, The University of Texas at Austin, Austin, TX, 78712, USA.

Published: July 2023

AI Article Synopsis

  • Estrogens are important hormones for female reproductive health and influence immune responses, particularly during menopause.
  • A study involved ovariectomized mice (removal of ovaries for estrogen loss) that were given hormone replacement and then subjected to an immune challenge to assess behavioral changes.
  • Findings showed that estrogen loss led to altered social and affective behaviors in mice, indicating a connection between declining estrogen levels, microglial sensitivity in the brain, and increased vulnerability to negative emotional effects.

Article Abstract

Estrogens are a group of steroid hormones that promote the development and maintenance of the female reproductive system and secondary sex characteristics. Estrogens also modulate immune responses; estrogen loss at menopause increases the risk of inflammatory disorders. Elevated inflammatory responses in the brain can lead to affective behavioral changes, which are characteristic of menopause. Thus, here we examined whether loss of estrogens sensitizes microglia, the primary innate immune cell of the brain, leading to changes in affective behaviors. To test this question, adult C57BL/6 mice underwent an ovariectomy to remove endogenous estrogens and then received estradiol hormone replacement or vehicle. After a one-month recovery, mice received an immune challenge with lipopolysaccharide (LPS) or vehicle control treatment and underwent behavioral testing. Ovariectomized, saline-treated mice exhibited reduced social investigation compared to sham-operated mice. Furthermore, ovariectomized mice that received LPS exhibited an exacerbated decrease in sucrose preference, which was ameliorated by estradiol replacement. These results indicate that ovariectomy modulates affective behaviors at baseline and in response to an inflammatory challenge. Ovariectomy-related behavioral changes were associated with downregulation of , a microglial receptor that limits activation, suggesting that estrogen loss can disinhibit microglia to immune stimuli. Indeed, estradiol treatment reduced ovariectomy-induced increases in and expression after an immune challenge. Changes in microglial reactivity following ovariectomy are likely subtle, as overt changes in microglial morphology (e.g., soma size and branching) were limited. Collectively, these results suggest that a lack of estrogens may allow microglia to confer exaggerated neuroimmune responses, thereby raising vulnerability to adverse affective- and sickness-related behavioral changes.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10225896PMC
http://dx.doi.org/10.1016/j.bbih.2023.100638DOI Listing

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