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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
Abstract:
Orexinergic neurons are discretely localized within the lateral hypothalamus and have widespread projections to the whole brain. Here, the role of orexin/hypocretin-2 receptors (OX2) in modulating extracellular concentrations of neurotransmitters was evaluated in the hypothalamus and the prefrontal cortex (PFC) of OX2 knockout (KO) mice by using a microdialysis technique. In the hypothalamus, basal concentrations of norephinephrine (NE), acetylcholine (ACh), and histamine (Hist) were significantly higher in KO mice, whereas KCl perfusion (147 mM) resulted in significantly lesser increases in NE, ACh, and Hist release in KO compared with wild-type (WT) mice. No differences in basal concentrations or evoked release of serotonin (5-HT) or dopamine (DA) were found in the hypothalamus between genotypes. In the PFC, no differences in the basal concentrations of the studied neurotransmitters were found between genotypes. After KCl perfusion, significantly higher increases in NE, 5-HT, and DA release were found in KO compared with WT mice. No differences in the evoked release of ACh and Hist in the PFC were found between genotypes. The present results demonstrate that genetic deletion of OX2 receptors differentially modulates extracellular concentrations of distinct neurotransmitters in the somatodendritic region vs. a nerve terminal region of the orexinergic neurons. In the hypothalamus, an inhibitory role of the OX2 receptors in modulating basal concentrations of NE, ACh, and Hist was revealed, which probably accounts for the reduced responsiveness to KCl as well. In the PFC, the evoked release of the monoamines NE, 5-HT, and DA seems to be controlled negatively by OX2 receptors.
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.

