ArticleThe international journal of neuropsychopharmacology2025
Sleep deprivation engages the orexin/hypocretin system to regulate food reward seeking.
Article in The international journal of neuropsychopharmacology, 2025. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 6 papers.
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Who cites it
6 citing papers in PubMed.
- Acute Sleep Deprivation in Adolescence Produces Transcriptional Changes in the Orexin System and Regulates Motivation for Reward.Biological psychiatry global open science · 2026Article
- Suvorexant protects from ocular complications of diabetes in db/db mice.BMJ open diabetes research & care · 2026Article
- Sleep regulates drug seeking and relapse - a perspective.Molecular psychiatry · 2026Review
- Potential modulation of pain perception in animal models of acute sleep deprivation: implications of different stress response mechanisms.The journal of headache and pain · 2026Article
- Orexin and Lifestyle Habits: A Meaningful Connection Among Nutrition, Physical Activity, and Sleep Pattern in Health and Diseases.International journal of molecular sciences · 2025Review
- Hypocretin: a promising target for the regulation of homeostasis.Frontiers in neuroscience · 2025Review
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Authors and funding
7 authors.
Funding
Abstract
backgroundInadequate sleep is a prevalent health issue in modern society, with unintended consequences in dysregulation of the reward system. For example, acute sleep deprivation (SD) in humans increases craving for and intake of calorie-dense foods, which lead to further health concerns. The circuit and molecular mechanisms underlying sleep regulation of reward, however, remain poorly understood. The hypothalamic orexin (also called hypocretin) system is phylogenetically conserved to dually regulate sleep/arousal and reward. Here, we tested the hypothesis that acute SD engages the orexin (OX) system to modulate food reward seeking.
methodsWe used sucrose self-administration (SA) model in male and female mice to test how acute SD by gentle handling regulates sucrose reward seeking. We then administered specific OX receptor antagonists systemically (Ox1R antagonist SB-334867 10 mg/kg or Ox2R antagonist seltorexant 10 mg/kg) or in selective brain regions (up to 100 μm) to assess their respective roles.
resultsWe found that under normal sleep conditions the OX system is minimally involved in sucrose reward seeking. By contrast, SD increased sucrose SA in both male and female mice, and preferentially engaged orexin receptor 2 (Ox2R) signaling in females to mediate this effect. Moreover, in nucleus accumbens or paraventricular nucleus of hypothalamus, key reward regulatory regions enriched in Ox2Rs, blocking Ox2R signaling in each individually did not counteract the SD effects in females. Finally, c-Fos analysis showed highly correlative activity levels between diverse cortical and subcortical regions during sucrose SA in females, revealing differential network engagement following SD, which was partially restored by systemic Ox2R antagonism following SD in females.
conclusionThese results highlight Ox2R signaling in counteracting the acute SD effects on food reward seeking in females.
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