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Published on: March 25, 2016
Chronic maternal interleukin-17 and autism-related cortical gene expression, neurobiology, and behavior
Serena Banu Gumusoglu1,2,3, Benjamin Wen Qing Hing2,3,4, Akanksha Sri Satya Chilukuri2,3
1Interdisciplinary Graduate Program in Neuroscience, University of Iowa, Iowa City, IA, USA.
Insights
Chronic maternal inflammation via interleukin-17 (IL-17) during pregnancy can lead to autism spectrum disorder (ASD) phenotypes in male offspring, impacting neurodevelopment and behavior.
Area of Science:
- Neuroscience
- Developmental Biology
- Immunology
Background:
- Chronic inflammation during pregnancy is linked to neurodevelopmental disorders in offspring, including autism spectrum disorder (ASD).
- Interleukin-17 (IL-17), a pro-inflammatory cytokine, is implicated in both gestational diseases and neurodevelopmental disorders, but its specific role in mediating these effects is unclear.
- Few animal models exist to study the chronic effects of gestational inflammation on offspring neurodevelopment.
Purpose of the Study:
- To investigate the impact of chronic maternal interleukin-17A (IL-17A) exposure throughout pregnancy on offspring neurodevelopment and behavior.
- To identify potential mediators and mechanisms linking gestational inflammation to offspring neurodevelopmental disorders like ASD.
Main Methods:
- Administered IL-17A continuously to pregnant C57BL/6J dams.
- Assessed offspring for body weight, cortical volume, gene expression (mRNA sequencing), cellular composition, and adult behavior.
- Analyzed gene expression in embryonic day 18 (E18) cortex and adult neocortex.
Main Results:
- IL-17A-exposed offspring showed reduced somatic and cortical size.
- mRNA sequencing of E18 male cortex revealed significant enrichment of ASD, synaptic, and cell cycle genes.
- Adult male offspring exhibited decreased glial cell density, altered synaptic gene expression (increased GABAergic), and reduced anxiety-like behavior.
- Social deficits in males correlated negatively with neocortical GABAergic gene expression.
Conclusions:
- Chronic gestational IL-17A exposure is sufficient to induce persistent ASD-like phenotypes in male offspring.
- Findings suggest IL-17 contributes to offspring ASD pathogenesis, mirroring the male bias and altered cortical development observed in human ASD.
- The study proposes a mechanism involving early dysregulation of synaptic and cell cycle genes leading to later neurodevelopmental and behavioral deficits.
Abstract:
Chronic inflammation during pregnancy (e.g., preeclampsia, diabetes) is linked to increased risk for offspring neurodevelopmental disorders such as autism spectrum disorder (ASD). However, mediators of such exposures that could be targeted with maternal intervention are unclear, as few chronic gestational inflammation models have been tested. One potential mediator is interleukin-17 (IL-17), a pro-inflammatory cytokine implicated in neurodevelopmental disorders and gestational disease. To test chronic maternal IL-17 impacts on offspring, C57BL/6J dams were administered IL-17A continuously throughout pregnancy. Offspring were assessed for body weight; cortical volume, gene expression, and cellular composition; and adult behavior. IL-17A-condition offspring exhibited decreased somatic and cortical size at embryonic day 18 (E18) and as adults. mRNA sequencing of E18 cortex revealed 320 differentially expressed genes in males, but none in females. These were significantly enriched for ASD (Simons Foundation Autism Research Initiative), synaptic, and cell cycle genes. By adulthood, neocortical glial cell density and gene expression were decreased, while GABAergic synaptic gene expression was increased in males. Furthermore, IL-17A-condition male but not female offspring exhibited reduced anxiety-like behavior. Social approach deficits in males were negatively correlated with neocortical GABAergic synaptic gene expression. Chronic gestational IL-17A was sufficient to cause ASD-like phenotypes early and persistently in male offspring. This echoes the male bias, altered cortical development, and behavioral findings in ASD, suggesting that chronic maternal IL-17 contributes to offspring ASD pathogenesis. Furthermore, the trajectory from embryonically dysregulated synaptic and cell cycle genes to disrupted adult glia, inhibitory synapses, and behavior suggests a mechanism for chronic maternal IL-17 effects on offspring.
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