• Sleep · Sep 2014

    In utero exposure to valproic acid changes sleep in juvenile rats: a model for sleep disturbances in autism.

    • Danielle M Cusmano and Jessica A Mong.
    • Sleep. 2014 Sep 1;37(9):1489-99.

    Study ObjectivesTo determine whether sleep disturbances are found in the valproic acid model of autism spectrum disorders (ASD).DesignComparative study for sleep behavior, sleep architecture, electroencephalogram (EEG) spectral analysis, and glutamic acid decarboxylase (GAD) 65/67 protein expression in juvenile rats exposed to valproic acid (VPA), sodium salt, or saline in utero.SettingN/A.ParticipantsJuvenile (postnatal day 32) male and female Sprague-Dawley rats.InterventionsIn utero exposure to either saline or 400 mg/kg VPA administered intraperitoneally to the dams on gestational day 12.5. On postnatal days 22-24, all rats were implanted with transmitters to record EEG and electromyogram (EMG) activity.Measurements And ResultsDuring the light phase, when nocturnal animals are typically quiescent, the VPA-exposed animals spent significantly more time in wake (∼35 min) and significantly less time in non-rapid eye movement (NREM) sleep (∼26 min) compared to the saline controls. Furthermore, spectral analysis of the EEG revelled that VPA-exposed animals exhibited increased high-frequency activity during wake and rapid eye movement (REM) sleep and reduced theta power across all vigilance states. Interestingly, the gamma-aminobutyric acid (GABA)-ergic system, which modulates the induction and maintenance of sleep states, was also disrupted, with reduced levels of both GAD 65 and GAD67 in the cortical tissue of VPA-exposed animals compared to saline controls.ConclusionsTo date, the current animal models of ASD have been underutilized in the investigation of associated sleep disturbances. The VPA animal model recapitulates aspects of sleep disruptions reported clinically, providing a tool to investigate cellular and molecular dysregulation contributing to sleep disruptions in ASD.© 2014 Associated Professional Sleep Societies, LLC.

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