Neurosteroid-based intervention using Ganaxolone and Emapunil for improving stress-induced myelination deficits and

Gabrielle K Crombie1, Hannah K Palliser1, Julia C Shaw1

  • 1Mothers and Babies Research Centre, Hunter Medical Research Institute, Newcastle, NSW, Australia; School of Biomedical Sciences and Pharmacy, University of Newcastle, NSW, Australia.

Psychoneuroendocrinology
|October 3, 2021
PubMed

Insights

Prenatal stress in guinea pigs caused behavioral and white matter issues. Postnatal emapunil treatment improved myelin and behavior in offspring, suggesting early interventions can reverse prenatal stress damage.

Area of Science:

  • Neuroscience
  • Developmental Biology
  • Pharmacology

Background:

  • Prenatal stress can lead to lasting neurodevelopmental and behavioral problems in children, including ADHD and anxiety.
  • Oligodendrocyte maturation and myelin formation are vulnerable to maternal stress during pregnancy.
  • This study investigates prenatal stress effects on oligodendrocyte lineage and potential postnatal therapies.

Purpose of the Study:

  • To examine prenatal stress impacts on the oligodendrocyte lineage.
  • To identify disrupted processes in white matter development due to prenatal stress.
  • To assess if postnatal therapies can ameliorate white matter deficits and improve behavior.

Main Methods:

  • Pregnant guinea pigs exposed to stress or control conditions.
  • Offspring treated postnatally with ganaxolone, emapunil, or vehicle.
  • Behavioral tests (open field, elevated plus maze) and hippocampal tissue analysis for oligodendrocyte markers, neurogenesis, and steroidogenesis.
  • Plasma steroid quantification via ELISA.

Main Results:

  • Prenatal stress induced hyperactivity in males and anxiety in females.
  • Postnatal ganaxolone and emapunil treatments normalized behavior in females only.
  • Oligodendrocyte maturation, myelin basic protein (MBP) translation, and neurogenesis were impaired by prenatal stress.
  • Emapunil restored myelin levels in both sexes and oligodendrocyte lineage in females.

Conclusions:

  • Prenatal stress causes persistent behavioral and white matter deficits in a guinea pig model.
  • Postnatal emapunil treatment shows promise in restoring myelin repair and improving long-term outcomes.
  • Early therapeutic interventions can potentially reverse prenatal stress-induced damage.
Abstract

Related Concept Videos