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.

Neuroscience
|May 4, 2018
PubMed

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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