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Nonpeptide orexin type-2 receptor agonist ameliorates narcolepsy-cataplexy symptoms in mouse models
Author(s) -
Yoko IrukayamaTomobe,
Yasuhiro Ogawa,
Hiromu Tominaga,
Yukiko Ishikawa,
Naoto Hosokawa,
Shinobu Ambai,
Yuki Kawabe,
Shuntaro Uchida,
Ryo Nakajima,
Tsuyoshi Saitoh,
Takeshi Kanda,
Kaspar E. Vogt,
Takeshi Sakurai,
Hiroshi Nagase,
Masashi Yanagisawa
Publication year - 2017
Publication title -
proceedings of the national academy of sciences
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 5.011
H-Index - 771
eISSN - 1091-6490
pISSN - 0027-8424
DOI - 10.1073/pnas.1700499114
Subject(s) - narcolepsy , cataplexy , orexin , excessive daytime sleepiness , agonist , wakefulness , medicine , sleep paralysis , endocrinology , neuropeptide , sleep disorder , psychology , receptor , neuroscience , pharmacology , modafinil , insomnia , electroencephalography
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.

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