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Published on: March 25, 2016
A feature of maternal sleep apnea during gestation causes autism-relevant neuronal and behavioral phenotypes in
Amanda M Vanderplow1, Bailey A Kermath1, Cassandra R Bernhardt1
1Department of Comparative Biosciences, University of Wisconsin-Madison, Madison, Wisconsin, United States of America.
Insights
Maternal sleep apnea during pregnancy, causing intermittent hypoxia, may lead to behavioral issues in offspring. This study found excessive synapse numbers and mTOR pathway hyperactivity linked to these neurodevelopmental outcomes.
Area of Science:
- Neuroscience
- Developmental Biology
- Psychiatry
Background:
- Many psychiatric disorders arise from gene-environment interactions, especially prenatal.
- Maternal sleep apnea (SA) and intermittent hypoxia (IH) are increasingly common.
- Long-term offspring neurodevelopmental effects of maternal SA are unknown.
Purpose of the Study:
- Investigate the impact of maternal SA-induced IH on offspring brain structure and behavior.
- Determine if prenatal IH affects synaptic development and function.
- Explore potential molecular pathways involved in these neurodevelopmental changes.
Main Methods:
- Developed a rat model exposing pregnant dams to IH during critical gestational periods.
- Assessed offspring forebrain synaptic structure and function.
- Evaluated offspring behavioral phenotypes across multiple developmental stages.
Main Results:
- Prenatal IH exposure resulted in sexually dimorphic behavioral phenotypes in offspring.
- Offspring exhibited excessive, rather than reduced, synapse numbers in the forebrain.
- Hyperactivity of the mammalian target of rapamycin (mTOR) pathway was implicated.
Conclusions:
- Maternal sleep apnea during pregnancy can cause lasting neurodevelopmental and behavioral changes in offspring.
- Excessive synapse formation, potentially mediated by mTOR hyperactivity, is linked to these behavioral aberrations.
- Findings suggest prenatal insults to the maternal environment may contribute to neuropsychiatric disorders.
Abstract:
Mounting epidemiologic and scientific evidence indicates that many psychiatric disorders originate from a complex interplay between genetics and early life experiences, particularly in the womb. Despite decades of research, our understanding of the precise prenatal and perinatal experiences that increase susceptibility to neurodevelopmental disorders remains incomplete. Sleep apnea (SA) is increasingly common during pregnancy and is characterized by recurrent partial or complete cessations in breathing during sleep. SA causes pathological drops in blood oxygen levels (intermittent hypoxia, IH), often hundreds of times each night. Although SA is known to cause adverse pregnancy and neonatal outcomes, the long-term consequences of maternal SA during pregnancy on brain-based behavioral outcomes and associated neuronal functioning in the offspring remain unknown. We developed a rat model of maternal SA during pregnancy by exposing dams to IH, a hallmark feature of SA, during gestational days 10 to 21 and investigated the consequences on the offspring's forebrain synaptic structure, synaptic function, and behavioral phenotypes across multiples stages of development. Our findings represent a rare example of prenatal factors causing sexually dimorphic behavioral phenotypes associated with excessive (rather than reduced) synapse numbers and implicate hyperactivity of the mammalian target of rapamycin (mTOR) pathway in contributing to the behavioral aberrations. These findings have implications for neuropsychiatric disorders typified by superfluous synapse maintenance that are believed to result, at least in part, from largely unknown insults to the maternal environment.
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