Examining longitudinal associations between prenatal exposure to infections and child brain morphology

Anna Suleri1, Carolin Gaiser2, Charlotte A M Cecil3

  • 1Department of Child and Adolescent Psychiatry/Psychology, Erasmus University Medical Center, the Netherlands; The Generation R Study Group, Erasmus University Medical Center, Rotterdam, the Netherlands.

PubMed

Insights

Prenatal maternal infection exposure, particularly in the third trimester, influences child brain development, potentially leading to altered growth trajectories. This study suggests possible "catch-up growth" in brain regions, but further research is needed for confirmation.

Area of Science:

  • Neuroscience
  • Developmental Psychology
  • Public Health

Background:

  • Maternal infection during pregnancy is a known risk factor for offspring psychopathology.
  • Neuroimaging studies suggest prenatal infection affects child brain structure and function.
  • Preclinical data indicates potential normalization of brain effects over time (catch-up growth).

Purpose of the Study:

  • To investigate the association between prenatal maternal infection exposure and long-term neurodevelopmental trajectories in children.
  • To examine how maternal infections across pregnancy trimesters impact child brain development over time using repeated MRI measures.

Main Methods:

  • Utilized data from the population-based Generation R cohort (N=2,155).
  • Assessed self-reported infections during each pregnancy trimester.
  • Analyzed longitudinal brain morphology (cortical and subcortical) using three MRI scans (ages 8, 10, 14) with linear mixed-effects models.

Main Results:

  • Third-trimester infection exposure linked to slower volume decrease in pars orbitalis, rostral anterior cingulate, and superior frontal gyrus.
  • Faster volume increase observed in the middle temporal gyrus following third-trimester infection.
  • Divergent temporal pole volume changes: increased with more infections, decreased with fewer.

Conclusions:

  • Prenatal third-trimester infections may alter age-related brain growth patterns in specific regions during childhood.
  • Findings align with preclinical 'catch-up growth' hypotheses but could represent longitudinal or temporal deviations.
  • Longitudinal studies into full brain development are required to confirm the nature of these observed brain changes.
Abstract