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Beta and Gamma Oscillations in Prefrontal Cortex During NMDA Hypofunction: An In Vitro Model of Schizophrenia
Beatriz Rebollo1, Maria Perez-Zabalza1, Marcel Ruiz-Mejias1
1IDIBAPS (Institut d'Investigacions Biomèdiques August Pi i Sunyer), C/Rosselló 149-153, 08036 Barcelona, Spain.
Abstract:
NMDA receptor (NMDAr) hypofunction has been widely used as a schizophrenia model. Decreased activation of NMDAr is associated with a disrupted excitation/inhibition balance in the prefrontal cortex and with alterations in gamma synchronization. Our aim was to investigate whether this phenomenon could be reproduced in the spontaneous oscillatory activity generated by the local prefrontal network in vitro and, if so, to explore the effects of antipsychotics on the resulting activity. Extracellular recordings were obtained from prefrontal cortex slices bathed in in vivo-like ACSF solution. Slow (<1 Hz) oscillations consisting of interspersed Up (active) and Down (silent) states spontaneously emerged. Fast-frequency oscillations (15-90 Hz) occurred during Up states. We explored the effects of the NMDAr antagonist MK-801 on the spontaneously generated activity. Bath-applied MK-801 induced a dose-dependent decrease in Up-state duration and in the frequency of Up states. However, the beta/gamma power during Up states significantly increased; this increase was in turn prevented by the antipsychotic drug clozapine. The increased beta/gamma power with NMDAr blockade implies that NMDAr activation in physiological conditions prevents hypersynchronization in this frequency range. High-frequency hypersynchronization following NMDAr blockade occurring in cortical slices suggests that-at least part of-the underlying mechanisms of this schizophrenia feature persist in the local cortical circuit, even in the absence of long-range cortical or subcortical inputs. The observed action of clozapine decreasing hypersynchronization in the local circuit may be one of the mechanisms of action of clozapine in preventing schizophrenia symptoms derived from NMDA hypofunction.
Insights
NMDA receptor hypofunction in schizophrenia models increases beta/gamma power in local brain circuits. The antipsychotic clozapine reversed this effect, suggesting a potential mechanism for its therapeutic action.
Area of Science:
- Neuroscience
- Psychiatry
- Computational Neuroscience
Background:
- NMDA receptor (NMDAr) hypofunction is a key model for schizophrenia.
- This hypofunction is linked to disrupted excitation/inhibition balance and altered gamma synchronization in the prefrontal cortex.
Purpose of the Study:
- To determine if NMDAr hypofunction can be replicated in spontaneous oscillatory activity of isolated prefrontal cortex networks.
- To investigate the effects of antipsychotics on this activity.
Main Methods:
- Extracellular recordings from rat prefrontal cortex slices in vitro.
- Application of the NMDAr antagonist MK-801 and the antipsychotic clozapine.
- Analysis of spontaneous slow oscillations and fast-frequency oscillations during Up states.
Main Results:
- MK-801 dose-dependently decreased Up-state duration and frequency.
- MK-801 significantly increased beta/gamma power during Up states.
- Clozapine prevented the MK-801-induced increase in beta/gamma power.
Conclusions:
- NMDAr activation normally prevents hypersynchronization in the beta/gamma frequency range.
- Schizophrenia-related hypersynchronization mechanisms persist in local cortical circuits.
- Clozapine's ability to reduce local circuit hypersynchronization may contribute to its efficacy in treating schizophrenia symptoms stemming from NMDAr hypofunction.
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