Modulation of neurotransmitter release in orexin/hypocretin-2 receptor knockout mice: a microdialysis study

Jorge E Ortega1, Jason Katner, Richard Davis

  • 1Eli Lilly and Co., Indianapolis, Indiana 46240-0510, USA. jorge.ortega@ehu.es

Insights

Genetic deletion of orexin/hypocretin-2 receptors (OX2) alters neurotransmitter levels in mice. OX2 receptors inhibit norepinephrine, acetylcholine, and histamine release in the hypothalamus but negatively control monoamine release in the prefrontal cortex.

Area of Science:

  • Neuroscience
  • Neuropharmacology
  • Receptor Research

Background:

  • Orexinergic neurons, originating in the lateral hypothalamus, project widely throughout the brain.
  • Orexin/hypocretin-2 receptors (OX2) play a role in regulating neuronal activity and neurotransmitter release.

Purpose of the Study:

  • To investigate the role of OX2 receptors in modulating extracellular neurotransmitter concentrations in the hypothalamus and prefrontal cortex (PFC).
  • To compare neurotransmitter levels in OX2 knockout (KO) mice versus wild-type (WT) mice.

Main Methods:

  • Microdialysis technique was employed to measure neurotransmitter concentrations.
  • Experiments were conducted in the hypothalamus and PFC of OX2 KO and WT mice.
  • Neurotransmitter release was stimulated using KCl perfusion.

Main Results:

  • In the hypothalamus, basal concentrations of norepinephrine (NE), acetylcholine (ACh), and histamine (Hist) were higher in KO mice.
  • KCl perfusion caused reduced NE, ACh, and Hist release in the hypothalamus of KO mice compared to WT.
  • In the PFC, KCl perfusion led to significantly higher increases in NE, serotonin (5-HT), and dopamine (DA) release in KO mice.

Conclusions:

  • Genetic deletion of OX2 receptors differentially affects neurotransmitter concentrations in different brain regions.
  • OX2 receptors exert an inhibitory influence on basal NE, ACh, and Hist levels in the hypothalamus.
  • OX2 receptors appear to negatively regulate the evoked release of monoamines (NE, 5-HT, DA) in the PFC.

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