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Published on: January 25, 2016
An orexin agonist promotes wakefulness and inhibits cataplexy through distinct brain regions
Takashi Ishikawa1, Emi Kurimoto1, Adam A Joyal2
1Neuroscience Drug Discovery Unit, Research, Takeda Pharmaceutical Company Limited, 26-1 Muraoka-Higashi 2-chome, Fujisawa, Kanagawa 251-8555, Japan; Department of Neurology, Beth Israel Deaconess Medical Center and Harvard Medical School, 330 Brookline Avenue, Boston, MA 02215, USA.
Abstract:
Narcolepsy type 1, caused by selective loss of the orexin-producing neurons, is characterized by poor maintenance of wakefulness and cataplexy. Clinical trials show that orexin receptor 2 (OX2R) agonists substantially improve narcolepsy symptoms, but the key brain regions through which OX2R signaling produces these benefits are only partially understood. To address this question, we produced recombinant mice expressing the human diphtheria toxin receptor driven by the endogenous orexin promoter (orexinDTR mice). After injection with diphtheria toxin, orexinDTR mice had severe and selective loss of the orexin neurons, leading to narcolepsy symptoms, including poor maintenance of wakefulness and cataplexy; these symptoms were substantially improved by an OX2R-selective agonist OX-201. We then crossed orexinDTR mice with OX2R transcription-disrupted (TD) mice to produce a new model lacking orexin neurons and OX2R. We focally restored OX2R expression in specific brain regions of OX2R TD::orexinDTR mice and assessed whether OX-201 improves specific aspects of narcolepsy. In mice expressing OX2R only in the tuberomammillary nucleus (TMN) or basal forebrain (BF) regions, OX-201 improved maintenance of wakefulness but did not suppress cataplexy. In contrast, in mice expressing OX2R in the ventrolateral periaqueductal gray and lateral pontine tegmentum (vlPAG/LPT), OX-201 suppressed cataplexy without improving maintenance of wakefulness. These results suggest that OX2R signaling in the TMN and BF regions can stabilize wakefulness and OX2R signaling in the vlPAG/LPT region can suppress cataplexy, providing key insights into how orexins regulate wakefulness and muscle tone and how OX2R agonists improve the symptoms of narcolepsy. VIDEO ABSTRACT.
Insights
Narcolepsy type 1 treatments targeting orexin receptor 2 (OX2R) may work differently in distinct brain areas. OX2R in the tuberomammillary nucleus/basal forebrain improves wakefulness, while OX2R in the vlPAG/LPT suppresses cataplexy.
Area of Science:
- Neuroscience
- Sleep Medicine
- Pharmacology
Background:
- Narcolepsy type 1 results from orexin neuron loss, causing wakefulness and cataplexy issues.
- Orexin receptor 2 (OX2R) agonists help narcolepsy symptoms, but the specific brain regions involved are unclear.
Purpose of the Study:
- To identify the key brain regions mediating the therapeutic effects of OX2R agonists in narcolepsy.
Main Methods:
- Created orexin-deficient mice and mice lacking OX2R.
- Restored OX2R in specific brain regions (TMN/BF or vlPAG/LPT) of narcoleptic mice.
- Administered an OX2R agonist (OX-201) and assessed effects on wakefulness and cataplexy.
Main Results:
- OX2R activation in the tuberomammillary nucleus (TMN) and basal forebrain (BF) improved wakefulness maintenance.
- OX2R activation in the ventrolateral periaqueductal gray/lateral pontine tegmentum (vlPAG/LPT) suppressed cataplexy.
- No single region fully replicated the dual benefits of OX2R agonists.
Conclusions:
- Orexin receptor 2 signaling in the TMN/BF stabilizes wakefulness.
- Orexin receptor 2 signaling in the vlPAG/LPT suppresses cataplexy.
- These findings elucidate the distinct roles of OX2R in different brain areas for narcolepsy symptom control.
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