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Published on: January 25, 2016
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.
Abstract:
The orexin/hypocretin neuropeptides are produced by a cluster of neurons within the lateral posterior hypothalamus and participate in neuronal regulation by activating their receptors (OX1 and OX2 receptors). The orexin system projects widely through the brain and functions as an interface between multiple regulatory systems including wakefulness, energy balance, stress, reward, and emotion. Recent studies have demonstrated that orexins and glutamate interact at the synaptic level and that orexins facilitate glutamate actions. We tested the hypothesis that orexins modulate glutamate signaling via OX1 receptors by monitoring levels of glutamate in frontal cortex of freely moving mice using enzyme coated biosensors under inhibited OX1 receptor conditions. MK-801, an NMDA receptor antagonist, was administered subcutaneously (0.178 mg/kg) to indirectly disinhibit pyramidal neurons and therefore increase cortical glutamate release. In wild-type mice, pretreatment with the OX1 receptor antagonist GSK-1059865 (10 mg/kg S.C.) which had no effect by itself, significantly attenuated the cortical glutamate release elicited by MK-801. OX1 receptor knockout mice had a blunted glutamate release response to MK-801 and exhibited about half of the glutamate release observed in wild-type mice in agreement with the data obtained with transient blockade of OX1 receptors. These results indicate that pharmacological (transient) or genetic (permanent) inhibition of the OX1 receptor similarly interfere with glutamatergic function in the cortex. Selectively targeting the OX1 receptor with an antagonist may normalize hyperglutamatergic states and thus may represent a novel therapeutic strategy for the treatment of various psychiatric disorders associated with hyperactive states.
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.

