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Updated: Jul 2, 2026

Induction of Maternal Immune Activation in Mice at Mid-gestation Stage with Viral Mimic PolyI:C
Published on: March 25, 2016
Gut microbiota manipulation during the prepubertal period shapes behavioral abnormalities in a mouse
Justin M Saunders1, José L Moreno1,2, Daisuke Ibi1,3
1Department of Physiology and Biophysics, Virginia Commonwealth University School of Medicine, Richmond, VA, 23298, USA.
Insights
Maternal immune activation during pregnancy alters offspring brain serotonin receptors and cognition. Gut microbiota changes are linked to these neurodevelopmental and behavioral deficits, suggesting therapeutic potential.
Area of Science:
- Neuroscience
- Psychiatry
- Microbiology
Background:
- Maternal immune activation (MIA) is linked to offspring neurodevelopmental disorders.
- The gut microbiota influences brain development and behavior.
Purpose of the Study:
- To investigate the impact of MIA on offspring brain function and behavior.
- To explore the role of the gut microbiota in MIA-induced neurodevelopmental changes.
Main Methods:
- MIA induced by influenza virus in pregnant mice.
- Assessed frontal cortex 5-HT2AR density, head-twitch behavior, and cognitive performance (NOR test) in offspring.
- Investigated effects of antibiotic treatment and gut microbiota transplantation.
Main Results:
- MIA offspring showed increased frontal cortex 5-HT2AR density and augmented head-twitch behavior.
- MIA induced cognitive deficits in adult offspring.
- Antibiotic treatment prevented cognitive impairment but not receptor changes; gut microbiota transplantation induced deficits.
Conclusions:
- MIA alters offspring brain 5-HT2AR density and cognitive function, mediated by gut microbiota changes.
- Gut-brain axis manipulation offers a potential therapeutic strategy for MIA-associated neurodevelopmental psychiatric conditions.
Abstract:
Previous studies demonstrate an association between activation of the maternal immune system during pregnancy and increased risk of neurodevelopmental psychiatric conditions, such as schizophrenia and autism, in the offspring. Relatively recent findings also suggest that the gut microbiota plays an important role in shaping brain development and behavior. Here we show that maternal immune activation (MIA) accomplished by infection with a mouse-adapted influenza virus during pregnancy induced up-regulation of frontal cortex serotonin 5-HT2A receptor (5-HT2AR) density in the adult offspring, a phenotype previously observed in postmortem frontal cortex of schizophrenic subjects. 5-HT2AR agonist-induced head-twitch behavior was also augmented in this preclinical mouse model. Using the novel object recognition (NOR) test to evaluate cognitive performance, we demonstrate that MIA induced NOR deficits in adult offspring. Oral antibiotic treatment of prepubertal mice prevented this cognitive impairment, but not increased frontal cortex 5-HT2AR density or psychedelic-induced head-twitch behavior in adult MIA offspring. Additionally, gut microbiota transplantation from MIA mice produced behavioral deficits in antibiotic-treated mock mice. Adult MIA offspring displayed altered gut microbiota, and relative abundance of specific components of the gut microbiota, including Ruminococcaceae, correlated with frontal cortex 5-HT2AR density. Together, these findings provide a better understanding of basic mechanisms by which prenatal insults impact offspring brain function, and suggest gut-brain axis manipulation as a potential therapeutic approach for neurodevelopmental psychiatric conditions.
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