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Updated: Sep 12, 2025

Induction of Maternal Immune Activation in Mice at Mid-gestation Stage with Viral Mimic PolyI:C
Published on: March 25, 2016
Maternal immune activation and antibiotics affect offspring neurodevelopment, behaviour, and microbiome
Clara Deady1,2, Jamie FitzGerald3, Nirit Kara1,2
1Department of Anatomy & Neuroscience, University College Cork, Ireland.
Insights
Maternal inflammation and gut microbiome disruption during pregnancy impact offspring neurodevelopment. This study shows prenatal inflammation exacerbates behavioral and brain changes, while microbiome alterations affect offspring gut bacteria diversity.
Area of Science:
- Neuroscience
- Developmental Biology
- Microbiome Research
Background:
- Maternal inflammation and gut microbiome alterations during pregnancy are linked to offspring neurodevelopmental disorders.
- The interaction between maternal immune activation (MIA) and the maternal gut microbiome in influencing neurodevelopmental outcomes is understudied.
Purpose of the Study:
- To investigate if maternal gut microbiome disruption exacerbates the effects of systemic inflammation on offspring brain development, behavior, and long-term microbiome composition.
- To explore the combined impact of prenatal inflammation and microbiome dysbiosis on neurodevelopmental trajectories.
Main Methods:
- Pregnant Sprague Dawley rats received low-dose lipopolysaccharide (LPS) and an antibiotic cocktail to induce systemic inflammation and gut microbiome disruption, respectively.
- Embryonic development, offspring behavior (anxiety-like and repetitive behaviors), prefrontal cortex 5HT1a receptor expression, and microbiome composition were assessed.
Main Results:
- Prenatal LPS exposure led to reduced embryonic body and placental weight, increased offspring anxiety-like and repetitive behaviors, and decreased 5HT1a receptor expression in the prefrontal cortex.
- Antibiotic exposure alone did not cause behavioral changes but reduced offspring microbiome alpha-diversity and species richness.
- Combined exposures showed exacerbated effects on neurodevelopmental and microbiome parameters.
Conclusions:
- Prenatal exposure to inflammation and gut microbiome disruption significantly impacts offspring neurodevelopment and long-term health.
- Maternal immune activation and microbiome status interact to influence offspring neurodevelopmental outcomes.
- Further research into therapeutic interventions like probiotics is warranted to mitigate these adverse prenatal effects.
Abstract:
In utero exposure to an increased level of maternal inflammation or a disrupted maternal gut microbiome during pregnancy have been linked to several neurodevelopmental disorders in the offspring. Despite the strong links between these two adverse events, few studies looked at the interaction between the maternal gut microbiome and maternal immune activation (MIA) on the neurodevelopmental outcomes in the offspring. Here, we aim to determine if maternal gut microbiome disruption exacerbated the impact of systemic inflammation on brain development, offspring behaviour, and long-term microbiome changes. A low dose of intraperitoneal lipopolysaccharide (LPS) was administered to pregnant Sprague Dawley rats from gestational day 12-18. Concurrently, an antibiotic cocktail (ampicillin, neomycin, vancomycin) was given in the drinking water to disturb the maternal microbiome. Embryos at gestational day 18 were found to have a reduced body size and weight, along with reduced placental weight following exposure to LPS, with some effects also seen with antibiotic exposure. Offspring exposed to LPS in utero were found to have increased anxiety-like behaviours and repetitive-behaviours. No behavioural changes were noted from antibiotic exposure. The expression of 5HT1a receptors in the prefrontal cortex was found to be reduced following LPS exposure. The offspring microbiome varied between the groups, with prenatal antibiotic exposure playing a role in reducing α-diversity and species richness in the periadolescent period. This study highlights the impact of prenatal exposures on different aspects of neurodevelopment. However, additional research is warranted to explore the role of the maternal immune system and microbiome on the offspring development, while also testing the potential therapeutic agents such as probiotics.
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