Preeclampsia and Neurodevelopmental Outcomes: Potential Pathogenic Roles for Inflammation and Oxidative Stress?

Aaron Barron1,2, Cathal M McCarthy3, Gerard W O'Keeffe4,5

  • 1Department of Anatomy and Neuroscience, University College, Cork, Ireland.

Molecular Neurobiology
|January 25, 2021
PubMed

Insights

Preeclampsia (PE) exposure in utero may increase the risk of neurodevelopmental disorders in children. Inflammation and oxidative stress during pregnancy appear to be key mechanisms driving this association.

Area of Science:

  • Obstetrics and Gynecology
  • Neuroscience
  • Developmental Biology

Background:

  • Preeclampsia (PE) is a serious pregnancy complication affecting 3-5% of first-time pregnancies, leading to maternal and neonatal mortality.
  • Emerging evidence links in utero PE exposure to increased risk of neurodevelopmental disorders, including autism spectrum disorder and ADHD.
  • The precise mechanisms underlying the association between PE and neurodevelopmental outcomes remain unclear.

Purpose of the Study:

  • This review synthesizes current evidence on the causal role of PE exposure in neurodevelopmental disorders.
  • It offers a novel interpretation of neuroanatomical changes in PE-exposed offspring.
  • It postulates that inflammation and oxidative stress are central mediators of this relationship.

Main Methods:

  • Review of recent scientific literature on preeclampsia and neurodevelopmental disorders.
  • Analysis of evidence implicating inflammation and oxidative stress in PE pathophysiology.
  • Interpretation of neuroanatomical alterations in PE-exposed offspring.

Main Results:

  • PE exposure is increasingly implicated in the etiology of neurodevelopmental disorders.
  • Inflammation during PE leads to prenatal maternal immune activation and elevated pro-inflammatory cytokines, impacting fetal brain development.
  • Oxidative stress in PE contributes to placental dysfunction and direct fetal brain oxidative damage, affecting neurodevelopment.

Conclusions:

  • Inflammation and oxidative stress are likely key mediators linking PE exposure to neurodevelopmental disorders.
  • These processes interact to alter the neurodevelopmental trajectory of exposed offspring.
  • Understanding these mechanisms is crucial for identifying potential interventions.