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Updated: Jun 15, 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 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.
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.
Abstract:
Prenatal infection increases the risk for neurodevelopmental disorders including autism spectrum disorder and schizophrenia. To better understand this link, a number of maternal immune activation (MIA) rodent models have been studied. However, the majority of these studies focus on adult behavioural outcomes that mirror adult symptoms related to neurodevelopmental disorders. There is little research reporting the effects of MIA on early postnatal development and even fewer using outbred mouse strains. Here, we use a modified version of the Fox scale to assess the effects of two MIA models, a bacterial model (LPS) and a viral model (PolyIC), on overall mouse pup sensorimotor development in CD-1 mice. Surprisingly, both bacterial and viral MIA models resulted in early reflex development when compared with control pups. To better characterize potential factors related to these changes, we examined indicators of sickness/inflammation in the immune-activated dams and in their pups. Sickness behaviour in the dams resulting from immune activation was assessed using a telemetry implant that allowed for continuous recording of temperature and activity in dams exposed to bacterial or viral immune activation. Although MIA dams showed reduced activity on the day immediately following MIA compared to controls, there was no evidence of fever. All dams showed elevated cytokines/chemokines associated with parturition, but this resolved by day 10 post-parturition and was unaffected by previous immune activation. Although circulating cytokines/chemokines in the dams were similar across MIA treatments, there were differences in the amount of interleukin-12p70 and interleukin-13 present in milk taken from milk bands in MIA pups, and interleukin-4 was overall decreased in LPS pup brain. These findings demonstrate that bacterial and viral models of MIA can result in similar precocious development in mice but differing long-term effects on inflammatory markers in both the milk provided to the pups and in their brains.
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