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Published on: January 25, 2016
Nonpeptide orexin type-2 receptor agonist ameliorates narcolepsy-cataplexy symptoms in mouse models
Yoko Irukayama-Tomobe1, Yasuhiro Ogawa1, Hiromu Tominaga1
1International Institute for Integrative Sleep Medicine, University of Tsukuba, 1-1-1 Tennodai, Tsukuba, Ibaraki 305-8575, Japan.
Abstract:
Narcolepsy-cataplexy is a debilitating disorder of sleep/wakefulness caused by a loss of orexin-producing neurons in the lateroposterior hypothalamus. Genetic or pharmacologic orexin replacement ameliorates symptoms in mouse models of narcolepsy-cataplexy. We have recently discovered a potent, nonpeptide OX2R-selective agonist, YNT-185. This study validates the pharmacological activity of this compound in OX2R-transfected cells and in OX2R-expressing neurons in brain slice preparations. Intraperitoneal, and intracerebroventricular, administration of YNT-185 suppressed cataplexy-like episodes in orexin knockout and orexin neuron-ablated mice, but not in orexin receptor-deficient mice. Peripherally administered YNT-185 also promotes wakefulness without affecting body temperature in wild-type mice. Further, there was no immediate rebound sleep after YNT-185 administration in active phase in wild-type and orexin-deficient mice. No desensitization was observed after repeated administration of YNT-185 with respect to the suppression of cataplexy-like episodes. These results provide a proof-of-concept for a mechanistic therapy of narcolepsy-cataplexy by OX2R agonists.
Insights
Narcolepsy-cataplexy may be treated by targeting OX2R receptors. A new compound, YNT-185, effectively suppressed cataplexy in mouse models, showing promise for narcolepsy treatment.
Area of Science:
- Neuroscience
- Pharmacology
Background:
- Narcolepsy-cataplexy stems from the loss of orexin-producing neurons.
- Orexin replacement therapies show promise in preclinical models.
Purpose of the Study:
- To validate the pharmacological activity of YNT-185, a novel OX2R-selective agonist.
- To assess the therapeutic potential of YNT-185 in mouse models of narcolepsy-cataplexy.
Main Methods:
- Pharmacological validation in OX2R-transfected cells and brain slices.
- Administration of YNT-185 in various mouse models (orexin knockout, neuron-ablated, receptor-deficient).
- Assessment of cataplexy suppression, wakefulness, and rebound sleep.
Main Results:
- YNT-185 demonstrated pharmacological activity at OX2R.
- Administration of YNT-185 suppressed cataplexy-like episodes in relevant mouse models.
- Peripherally administered YNT-185 promoted wakefulness without affecting body temperature and showed no rebound sleep or desensitization.
Conclusions:
- YNT-185 is a potent OX2R agonist with therapeutic potential for narcolepsy-cataplexy.
- These findings support OX2R agonists as a mechanistic therapy for narcolepsy-cataplexy.
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