Pharmacological or genetic orexin1 receptor inhibition attenuates MK-801 induced glutamate release in mouse cortex

Leah Aluisio1, Ian Fraser1, Tamara Berdyyeva1

  • 1Janssen Pharmaceutical Research and Development, LLC San Diego, USA.

Insights

Orexin (hypocretin) OX1 receptors modulate brain glutamate levels. Blocking OX1 receptors reduces glutamate release, suggesting a therapeutic target for psychiatric disorders.

Area of Science:

  • Neuroscience
  • Neuropharmacology

Background:

  • Orexin/hypocretin neuropeptides regulate wakefulness, energy balance, stress, reward, and emotion.
  • Orexins interact with glutamate at the synaptic level, facilitating glutamatergic actions.

Purpose of the Study:

  • To investigate if orexins modulate glutamate signaling specifically through OX1 receptors in the frontal cortex.
  • To determine the impact of OX1 receptor inhibition on cortical glutamate release.

Main Methods:

  • Monitoring frontal cortex glutamate levels in freely moving mice using enzyme-coated biosensors.
  • Administering MK-801 (NMDA receptor antagonist) to induce glutamate release.
  • Using OX1 receptor antagonist GSK-1059865 and OX1 receptor knockout mice to assess OX1 receptor function.

Main Results:

  • Pretreatment with an OX1 receptor antagonist significantly attenuated MK-801-induced cortical glutamate release in wild-type mice.
  • OX1 receptor knockout mice showed a blunted glutamate release response to MK-801 compared to wild-type.
  • Both pharmacological and genetic inhibition of OX1 receptors similarly affected glutamatergic function.

Conclusions:

  • OX1 receptor activity is crucial for normal glutamatergic function in the cortex.
  • Targeting OX1 receptors may offer a novel therapeutic strategy for hyperglutamatergic states in psychiatric disorders.