Interleukin 15 modulates the effects of poly I:C maternal immune activation on offspring behaviour
Faraj L Haddad1, Salonee V Patel1, Ella E Doornaert1
1Anatomy & Cell Biology, Schulich School of Medicine & Dentistry, Canada.
Insights
Maternal immune activation (MIA) during pregnancy can affect offspring neurodevelopment. This study found Interleukin 15 (Il15) plays a complex role, influencing susceptibility to MIA-induced behavioral changes in offspring.
Area of Science:
- Neuroscience
- Immunology
- Developmental Biology
Background:
- Maternal infections during pregnancy are linked to increased offspring risk for neurodevelopmental disorders like Autism Spectrum Disorder and schizophrenia.
- Maternal Immune Activation (MIA) is a key factor in these neurodevelopmental disruptions, with cytokines like Interleukin 6 (Il6) identified as mediators.
Purpose of the Study:
- To investigate the role of Interleukin 15 (Il15) as a potential mediator of MIA's effects on offspring neurodevelopment.
- To examine the independent and synergistic effects of Poly I:C induced MIA and Il15 knockout on offspring behavior.
Main Methods:
- Poly I:C MIA was induced in wildtype (WT) and Il15 knockout rat dams at gestational day 9.5.
- Offspring behavior was assessed in adolescence and adulthood, examining parameters like startle reactivity, anxiety, and locomotor activity.
Main Results:
- Poly I:C MIA decreased startle reactivity in adult WT offspring.
- Il15 knockout offspring exposed to MIA showed increased adolescent anxiety and decreased adult locomotor activity.
- Il15 knockout offspring exhibited distinct phenotypes independent of MIA, including altered auditory brainstem signal transduction.
Conclusions:
- Il15 plays a significant, context-dependent role in offspring susceptibility to MIA-induced neurodevelopmental and behavioral changes.
- The absence of Il15 can either increase or decrease vulnerability to MIA, depending on the specific behavioral outcome.
- Further research is needed to elucidate the contributions of fetal versus maternal Il15 in MIA.
Abstract:
Maternal infections during pregnancy are linked with an increased risk for disorders like Autism Spectrum Disorder and schizophrenia in the offspring. Although precise mechanisms are still unclear, clinical and preclinical evidence suggest a strong role for maternal immune activation (MIA) in the neurodevelopmental disruptions caused by maternal infection. Previously, studies using the Polyinosinic:Polycytidylic (Poly I:C) MIA preclinical model showed that cytokines like Interleukin 6 (Il6) are important mediators of MIA's effects. In this study, we hypothesized that Il15 may similarly act as a mediator of Poly I:C MIA, given its role in the antiviral immune response. To test this hypothesis, we induced Poly I:C MIA at gestational day 9.5 in wildtype (WT) and Il15 rat dams and tested their offspring in adolescence and adulthood. Poly I:C MIA and Il15 knockout produced both independent and synergistic effects on offspring behaviour. Poly I:C MIA decreased startle reactivity in adult WT offspring but resulted in increased adolescent anxiety and decreased adult locomotor activity in Il15 offspring. In addition, Poly I:C MIA led to genotype-independent effects on locomotor activity and prepulse inhibition. Finally, we showed that Il15 offspring exhibit distinct phenotypes that were unrelated to Poly I:C MIA including altered startle reactivity, locomotion and signal transduction in the auditory brainstem. Overall, our findings indicate that the lack of Il15 can leave offspring either more or less susceptible to Poly I:C MIA, depending on the phenotype in question. Future studies should examine the contribution of fetal versus maternal Il15 in MIA to determine the precise developmental mechanisms underlying these changes.
More Related Videos
07:13Induction of Maternal Immune Activation in Mice at Mid-gestation Stage with Viral Mimic PolyI:C
Published on: March 25, 2016
08:50A Murine Model of Fetal Exposure to Maternal Inflammation to Study the Effects of Acute Chorioamnionitis on Newborn Intestinal Development
Published on: June 24, 2020
