Repression of the Glucocorticoid Receptor Increases Hypoxic-Ischemic Brain Injury in the Male Neonatal Rat

Katherine R Knox-Concepcion1,2, Johnny D Figueroa2, Richard E Hartman3

  • 1Lawrence D. Longo, MD Center for Perinatal Biology, Loma Linda University School of Medicine, Loma Linda, CA 92350, USA.

Insights

Suppression of brain glucocorticoid receptors (GRs) worsened hypoxic-ischemic encephalopathy (HIE) injury in male neonates, increasing inflammation and neurobehavioral deficits. This suggests GRs protect male pups from HIE.

Area of Science:

  • Neuroscience
  • Neonatal Research
  • Developmental Biology

Background:

  • Hypoxic-ischemic encephalopathy (HIE) is a leading cause of neonatal brain damage with limited treatments.
  • Cerebral palsy is a common neurological sequela of HIE.
  • Endogenous glucocorticoid receptors (GRs) role in HIE is not fully understood.

Purpose of the Study:

  • To investigate the hypothesis that suppressing brain GRs exacerbates HIE-induced neonatal brain injury and neurobehavioral outcomes.
  • To explore the role of inflammation in GR-mediated HIE effects.
  • To examine sex differences in the response to GR suppression during HIE.

Main Methods:

  • A mild hypoxic-ischemic (HI) model was used in P9 rat pups.
  • Glucocorticoid receptor (GR) knockdown was achieved using intracerebroventricular injection of GR siRNAs.
  • Brain infarct size, inflammatory cytokine levels (TNF-α, IL-10), and neurobehavioral outcomes were assessed.

Main Results:

  • HI injury caused larger infarcts in female than male pups.
  • GR knockdown significantly increased infarct size and inflammatory cytokines in male pups post-HI.
  • GR repression worsened reflex responses and gait in male pups, but not females.

Conclusions:

  • Endogenous brain GRs play a protective role against HI-induced brain injury in male neonates.
  • GR suppression promotes inflammation and neurobehavioral deficits in male HIE models.
  • Glucocorticoids may have a sex-specific therapeutic role in treating neonatal HIE.

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