Chronic Sleep Deprivation as a Risk Factor for Cognitive Decline and Mood Disorders: Neurobiological Mechanisms and Therapeutic Implications
DOI:
https://doi.org/10.12775/JEHS.2026.95.73644Keywords
sleep deprivation, cognitive decline, mood disorders, depression, anxiety, prefrontal cortex, adenosine, HPA axis, neuroinflammation, cognitive behavioural therapy for insomniaAbstract
Chronic sleep deprivation has emerged as a significant and modifiable risk factor for cognitive decline and mood disorders, with neurobiological consequences that extend far beyond transient impairment of alertness. Modern societies are characterised by widespread, voluntary curtailment of sleep, with surveys consistently indicating that large proportions of adults in industrialised nations sleep fewer than the recommended seven to nine hours per night (Watson et al., 2015). The consequences of this pervasive sleep deficit include measurable impairments in sustained attention, working memory, executive function, and decision-making, as well as substantially elevated risks of developing major depressive disorder, anxiety disorders, and bipolar spectrum conditions (Lim and Dinges, 2010; Baglioni et al., 2011). At the neurobiological level, sleep deprivation disrupts adenosine homeostasis, impairs prefrontal cortical function, dysregulates hypothalamic-pituitary-adrenal axis activity, elevates systemic inflammation, and suppresses hippocampal neurogenesis—mechanisms that collectively explain the breadth and severity of observed clinical effects (Xie et al., 2013; Irwin, 2015). This review synthesises current evidence on sleep physiology, the neurobiological basis of sleep deprivation effects, specific cognitive and mood consequences, vulnerable populations, diagnostic approaches, therapeutic strategies, and public health implications, with the goal of providing a comprehensive foundation for clinical recognition and intervention.
References
Baglioni, C. et al. (2011) 'Insomnia as a predictor of depression: a meta-analytic evaluation of longitudinal epidemiological studies,' Journal of Affective Disorders, 135(1–3), pp. 10–19.
Borbély, A.A. (1982) 'A two process model of sleep regulation,' Human Neurobiology, 1(3), pp. 195–204.
Buysse, D.J. (2014) 'Sleep health: can we define it? Does it matter?' Sleep, 37(1), pp. 9–17.
Buysse, D.J. et al. (1989) 'The Pittsburgh Sleep Quality Index: a new instrument for psychiatric practice and research,' Psychiatry Research, 28(2), pp. 193–213.
Cappuccio, F.P. et al. (2010) 'Sleep duration and all-cause mortality: a systematic review and meta-analysis of prospective studies,' Sleep, 33(5), pp. 585–592.
Carskadon, M.A. (2011) 'Sleep in adolescents: the perfect storm,' Pediatric Clinics of North America, 58(3), pp. 637–647.
Czeisler, C.A. & Gooley, J.J. (2007) 'Sleep and circadian rhythms in humans,' Cold Spring Harbor Symposia on Quantitative Biology, 72, pp. 579–597.
Diekelmann, S. & Born, J. (2010) 'The memory function of sleep,' Nature Reviews Neuroscience, 11(2), pp. 114–126.
Goel, N. et al. (2009) 'Neurocognitive consequences of sleep deprivation,' Seminars in Neurology, 29(4), pp. 320–339.
Golden, R.N. et al. (2005) 'The efficacy of light therapy in the treatment of mood disorders: a review and meta-analysis of the evidence,' American Journal of Psychiatry, 162(4), pp. 656–662.
Harrison, Y. & Horne, J.A. (2000) 'The impact of sleep deprivation on decision making: a review,' Journal of Experimental Psychology: Applied, 6(3), pp. 236–249.
Harvey, A.G. et al. (2011) 'Sleep and circadian functioning: critical mechanisms in the mood disorders?' Annual Review of Clinical Psychology, 7, pp. 297–319.
Irwin, M.R. (2015) 'Why sleep is important for health: a psychoneuroimmunology perspective,' Annual Review of Psychology, 66, pp. 143–172.
Johns, M.W. (1991) 'A new method for measuring daytime sleepiness: the Epworth Sleepiness Scale,' Sleep, 14(6), pp. 540–545.
Kredlow, M.A. et al. (2015) 'The effects of physical activity on sleep: a meta-analytic review,' Journal of Behavioral Medicine, 38(3), pp. 427–449.
Krause, A.J. et al. (2017) 'The sleep-deprived human brain,' Nature Reviews Neuroscience, 18(7), pp. 404–418.
Lim, J. & Dinges, D.F. (2010) 'A meta-analysis of the impact of short-term sleep deprivation on cognitive variables,' Psychological Bulletin, 136(3), pp. 375–389.
Manber, R. et al. (2008) 'Cognitive behavioral therapy for insomnia enhances depression outcome in patients with comorbid major depressive disorder and insomnia,' Sleep, 31(4), pp. 489–495.
McEwen, B.S. (2006) 'Sleep deprivation as a neurobiologic and physiologic stressor: allostasis and allostatic load,' Metabolism, 55(10 Suppl 2), pp. S20–S23.
Morin, C.M. et al. (2006) 'Psychological and behavioral treatment of insomnia: update of the recent evidence (1998–2004),' Sleep, 29(11), pp. 1398–1414.
Mullington, J.M. et al. (2010) 'Cardiovascular, inflammatory, and metabolic consequences of sleep deprivation,' Progress in Cardiovascular Diseases, 51(4), pp. 294–302.
Porkka-Heiskanen, T. et al. (1997) 'Adenosine: a mediator of the sleep-inducing effects of prolonged wakefulness,' Science, 276(5316), pp. 1265–1268.
Riemann, D. et al. (2017) 'European guideline for the diagnosis and treatment of insomnia,' Journal of Sleep Research, 26(6), pp. 675–700.
Sateia, M.J. (2014) 'International Classification of Sleep Disorders: highlights and modifications,' Chest, 146(5), pp. 1387–1394.
Spiegel, K., Leproult, R. & Van Cauter, E. (1999) 'Impact of sleep debt on metabolic and endocrine function,' The Lancet, 354(9188), pp. 1435–1439.
Van Dongen, H.P.A. et al. (2003) 'The cumulative cost of additional wakefulness: dose-response effects on neurobehavioral functions and sleep physiology from chronic sleep restriction and total sleep deprivation,' Sleep, 26(2), pp. 117–126.
Walker, M.P. (2017) Why We Sleep: Unlocking the Power of Sleep and Dreams. New York: Scribner.
Walker, M.P. & van der Helm, E. (2009) 'Overnight therapy? The role of sleep in emotional brain processing,' Psychological Bulletin, 135(5), pp. 731–748.
Watson, N.F. et al. (2015) 'Recommended amount of sleep for a healthy adult: a joint consensus statement of the American Academy of Sleep Medicine and Sleep Research Society,' Sleep, 38(6), pp. 843–844.
Williamson, A.M. & Feyer, A.M. (2000) 'Moderate sleep deprivation produces impairments in cognitive and motor performance equivalent to legally prescribed levels of alcohol intoxication,' Occupational and Environmental Medicine, 57(10), pp. 649–655.
Xie, L. et al. (2013) 'Sleep drives metabolite clearance from the adult brain,' Science, 342(6156), pp. 373–377.
Yaffe, K. et al. (2014) 'Sleep-disordered breathing, hypoxia, and risk of mild cognitive impairment and dementia in older women,' JAMA, 306(6), pp. 613–619.
Yoo, S.S. et al. (2007) 'The human emotional brain without sleep — a prefrontal amygdala disconnect,' Current Biology, 17(20), pp. R877–R878.
Downloads
Published
How to Cite
Issue
Section
License
Copyright (c) 2026 Paweł Stępowski, Hanna Rzepka, Mateusz Tajster

This work is licensed under a Creative Commons Attribution-NonCommercial-ShareAlike 4.0 International License.
The periodical offers access to content in the Open Access system under the Creative Commons Attribution-NonCommercial-ShareAlike 4.0
Stats
Number of views and downloads: 123
Number of citations: 0