Maternal Immune Activation during Pregnancy Alters Postnatal Brain Growth and Cognitive Development in Nonhuman

Roza M Vlasova1, Ana-Maria Iosif2, Amy M Ryan3,4,5

  • 1Department of Psychiatry, University of North Carolina, Chapel Hill, North Carolina, 27514.

Insights

Maternal immune activation in pregnant monkeys led to subtle cognitive changes and reduced frontal brain matter in offspring. This study establishes a nonhuman primate model for prenatal immune challenge effects on neurodevelopment.

Area of Science:

  • Neuroscience
  • Developmental Biology
  • Immunology

Background:

  • Human studies link prenatal infection exposure to neurodevelopmental disorders.
  • Maternal immune activation (MIA) models show maternal immune response mediates infection's effects on fetal brain development.
  • Rodent MIA models have limitations; nonhuman primates offer a closer relation to humans for studying MIA.

Purpose of the Study:

  • To evaluate the neurodevelopmental effects of MIA in male rhesus monkeys.
  • To establish a translationally relevant nonhuman primate model for prenatal immune challenge research.
  • To investigate long-term brain growth trajectories following MIA exposure from gestation through adolescence.

Main Methods:

  • Pregnant rhesus monkeys received poly(I:C) (viral mimic) to induce MIA or saline control.
  • Offspring neurodevelopment was assessed through physical growth, cognitive tests, and longitudinal MRI.
  • Brain imaging tracked gray and white matter volumes in frontal and prefrontal cortices from 6 to 45 months.

Main Results:

  • MIA-exposed offspring showed subtle cognitive development changes and deviated from typical brain growth.
  • Significant gray matter reductions in prefrontal/frontal cortices were observed from 6 to 45 months.
  • Smaller frontal white matter volumes were noted in MIA-exposed animals at 36 and 45 months.

Conclusions:

  • Prenatal immune challenge via MIA alters neurodevelopment in nonhuman primates.
  • MIA-exposed offspring exhibit persistent reductions in frontal gray and white matter volumes.
  • This study provides the first evidence of postnatal brain changes in MIA-exposed nonhuman primates, supporting MIA's role in neurodevelopmental risks.