Brain Structural and Vascular Anatomy Is Altered in Offspring of Pre-Eclamptic Pregnancies: A Pilot Study

M T Rätsep1, A Paolozza2, A F Hickman3

  • 1From the Department of Biomedical and Molecular Sciences (M.T.R., A.F.H., B.M., V.R.K., S.M., G.N.S., J.N.R., B.A.C.) m.ratsep@queensu.ca.

Insights

Children born to mothers with pre-eclampsia show enlarged brain volumes and reduced cerebral vessel radii. These findings suggest potential early brain alterations in offspring of pre-eclamptic pregnancies.

Area of Science:

  • Neuroscience
  • Developmental Biology
  • Obstetrics

Background:

  • Pre-eclampsia affects 3-5% of human pregnancies, causing endothelial dysfunction and vascular issues.
  • Offspring of pre-eclamptic pregnancies may experience cognitive deficits, depression, and increased stroke risk.
  • No prior brain imaging studies exist for children born of pre-eclamptic pregnancies.

Purpose of the Study:

  • To investigate brain structural and vascular anatomy in 7-10 year old offspring of pre-eclamptic pregnancies.
  • To compare brain imaging findings with matched controls.
  • To analyze maternal plasma for angiogenic factors associated with pre-eclampsia.

Main Methods:

  • MR imaging was used to assess brain structure and vascular anatomy in 20 children (10 offspring of pre-eclamptic pregnancies, 10 controls).
  • Maternal plasma samples from birth were analyzed for angiogenic factors using enzyme-linked immunosorbent assay.
  • Participants were recruited from a longitudinal cohort study on pre-eclampsia effects.

Main Results:

  • Offspring of pre-eclamptic pregnancies had enlarged cerebellar, temporal lobe, brain stem, and amygdalae volumes.
  • Reduced cerebral vessel radii were observed in the occipital and parietal lobes of these offspring.
  • Maternal plasma showed underexpression of placental growth factor in pre-eclampsia cases.

Conclusions:

  • This is the first study to report brain structural and vascular alterations in offspring of pre-eclamptic pregnancies.
  • Observed brain structural changes resemble those in autism spectrum disorder.
  • Vascular alterations may precede structural changes, warranting further investigation in larger cohorts.
Abstract