Maternal immune activation accelerates pup reflex development and alters immune proteins in pup stomach contents and

Michael J Trim1, Ryan V Wheeler1, Tamara B Franklin1

  • 1Dalhousie University, Faculty of Science, Department of Psychology and Neuroscience, Halifax, NS, Canada.

Brain Research
|August 26, 2024
PubMed

Insights

Maternal immune activation (MIA) from bacterial or viral infection in mice led to surprisingly early sensorimotor development in pups. This study also found differing inflammatory markers in milk and pup brains, suggesting complex impacts on early neurodevelopment.

Area of Science:

  • Neuroscience
  • Developmental Biology
  • Immunology

Background:

  • Prenatal infection is linked to neurodevelopmental disorders like autism and schizophrenia.
  • Maternal immune activation (MIA) rodent models are used to study this link, but often focus on adult outcomes.
  • Research on MIA's effects on early postnatal development, especially in outbred strains, is limited.

Purpose of the Study:

  • To investigate the impact of bacterial and viral MIA models on early sensorimotor development in CD-1 mouse pups.
  • To examine sickness and inflammatory indicators in dams and pups following MIA.
  • To identify potential inflammatory factors in milk and pup brains.

Main Methods:

  • Utilized modified Fox scale to assess sensorimotor development in mouse pups.
  • Employed telemetry implants to monitor dam activity and temperature.
  • Analyzed cytokine and chemokine levels in dams, milk, and pup brains.

Main Results:

  • Both bacterial (LPS) and viral (PolyIC) MIA models resulted in precocious reflex development in pups compared to controls.
  • MIA dams showed reduced activity post-infection but no fever; cytokine levels related to parturition were unaffected by MIA.
  • Differences were observed in milk cytokines (IL-12p70, IL-13) and pup brain IL-4 levels between MIA groups.

Conclusions:

  • Bacterial and viral MIA can induce similar precocious sensorimotor development in mice.
  • MIA leads to distinct long-term alterations in inflammatory markers within milk and pup brains.
  • These findings highlight complex, differential effects of MIA on early neurodevelopment and inflammation.