ArticleGenes, brain, and behavior2022
Sex-specific role of the circadian transcription factor NPAS2 in opioid tolerance, withdrawal and analgesia.
Article in Genes, brain, and behavior, 2022. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 12 papers.
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Who cites it
12 citing papers in PubMed, 16 citations in OpenAlex.
- Nociceptor circadian clock genes control excitability and pain perception in mice in a sex- and time-dependent manner.Nature communications · 2026Article
- Analgesic efficacy in women and men with cancer pain, treated with strong opioids: are there differences?BMJ oncology · 2026Article
- Sex-specific transcriptional signatures of oxycodone persist during withdrawal and abstinence in the suprachiasmatic nucleus of heterogeneous stock rats.Addiction neuroscience · 2025Article
- Narrative review of the scientific and methodological explanations for 101 mechanisms of opioid tolerance.Pain reports · 2025Article
- Disrupted circadian rhythms and opioid-mediated adverse effects: Bidirectional relationship and putative mechanisms.Journal of neuroendocrinology · 2025Review
- Adverse childhood experiences and chronic pain in adolescent patients with depressive disorder: the mediating role of circadian rhythm disruption.BMC psychiatry · 2025Article
- Circadian Rhythms and Pain: A Narrative Review on Clock Genes and Circadian-Based Interventions.Journal of pain research · 2025Review
- Endocannabinoid agonist 2-arachidonoylglycerol differentially alters diurnal activity and sleep during fentanyl withdrawal in male and female mice.Pharmacology, biochemistry, and behavior · 2024Article
- Review
- Differential Effects of Cocaine and Morphine on the Diurnal Regulation of the Mouse Nucleus Accumbens Proteome.Journal of proteome research · 2023Article
- Sex-specific role of the circadian transcription factor NPAS2 in opioid tolerance, withdrawal and analgesia.Genes, brain, and behavior · 2022Article
- Circadian gene NPAS2 modulates pain sensitization in CFA-induced inflammatory pain model.Molecular painArticle
Corrections and comments
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Authors and funding
5 authors at 2 institutions in 1 country.
Funding
Abstract
Opioids like fentanyl remain the mainstay treatment for chronic pain. Unfortunately, opioid's high dependence liability has led to the current opioid crisis, in part, because of side-effects that develop during long-term use, including analgesic tolerance and physical dependence. Both tolerance and dependence to opioids may lead to escalation of required doses to achieve previous therapeutic efficacy. Additionally, altered sleep and circadian rhythms are common in people on opioid therapy. Opioids impact sleep and circadian rhythms, while disruptions to sleep and circadian rhythms likely mediate the effects of opioids. However, the mechanisms underlying these bidirectional relationships between circadian rhythms and opioids remain largely unknown. The circadian protein, neuronal PAS domain protein 2 (NPAS2), regulates circadian-dependent gene transcription in structure of the central nervous system that modulate opioids and pain. Here, male and female wild-type and NPAS2-deficient (NPAS2-/-) mice were used to investigate the role of NPAS2 in fentanyl analgesia, tolerance, hyperalgesia and physical dependence. Overall, thermal pain thresholds, acute analgesia and tolerance to a fixed dose of fentanyl were largely similar between wild-type and NPAS2-/- mice. However, female NPAS2-/- exhibited augmented analgesic tolerance and significantly more behavioral symptoms of physical dependence to fentanyl. Only male NPAS2-/- mice had increased fentanyl-induced hypersensitivity, when compared with wild-type males. Together, our findings suggest sex-specific effects of NPAS2 signaling in the regulation of fentanyl-induced tolerance, hyperalgesia and dependence.
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