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.

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