Impact of Allergic Rhinitis-Induced Sleep Disruption on Cognition and Physical Performance in Athletes: A Narrative Review
DOI:
https://doi.org/10.12775/QS.2026.72.75153Keywords
allergic rhinitis, sleep disruption, athletic performance, executive function, sports medicineAbstract
Background: Allergic rhinitis (AR) is a pervasive condition among competitive athletes, especially in endurance and aquatic disciplines. IgE-mediated Th2-type inflammation causes mucosal edema and increased upper airway resistance, forcing nocturnal mouth-breathing mechanics. This instability triggers frequent micro-arousals and disrupts sleep architecture, leading to documented reductions in restorative slow-wave and rapid eye movement sleep.
Aim: To synthesize evidence on how AR-mediated sleep fragmentation degrades neurocognitive function, motor control, and physical output in athletes, while evaluating the safety and efficacy of contemporary pharmacotherapy.
Material and methods: Narrative review integrating clinical, immunological, somnological, and sports science research from primary databases, including PubMed and Scopus.
Results: Systemic pro-inflammatory cytokines and nocturnal airway obstruction disrupt sleep-wake regulation centers. Resulting fragmentation impairs executive function, spatial working memory, and reaction times. Physiological decrements manifest as reduced aerobic efficiency, decreased explosive power, and diminished agility, often accompanied by an elevated rate of perceived exertion. While sedating first-generation antihistamines further impair performance and sleep architecture, intranasal corticosteroids and second-generation antihistamines provide effective symptom relief without cognitive impairment or World Anti-Doping Agency compliance issues.
Conclusions: AR-induced sleep disruption is a significant, underdiagnosed performance-limiting factor. Proactive allergy screening, longitudinal sleep tracking, and the optimization of non-sedating therapeutic regimens are essential for safeguarding athlete health and maintaining the competitive edge.
References
1. Adeniji, K. O., Igado, O. O., Olopade, F. E., & Femi-Akinlosotu, O. M. (2026). Sleep deprivation and memory: A neurobiological perspective. IBRO Neuroscience Reports, 20, 170–180. https://doi.org/10.1016/j.ibneur.2026.01.010
2. Amri, A., Faleh, J., Ben Aissa, M., Ceylan, H. İ., Ben Hassen, S., Hmaidi, J., Guelmami, N., Dergaa, I., Ștefănică, V., & Souissi, N. (2026). Effects of sleep restriction on cognitive and physical performance in elite karate athletes: A randomized crossover study. Medicine, 105(11), e48064. https://doi.org/10.1097/MD.0000000000048064
3. Boulet, L.-P., Turmel, J., & Irwin, R. S. (2017). Cough in the athlete: CHEST guideline and expert panel report. CHEST, 151(2), 441–454. https://doi.org/10.1016/j.chest.2016.10.054
4. Bridgeman, M. B. (2017). Overcoming barriers to intranasal corticosteroid use in patients with uncontrolled allergic rhinitis. Integrated Pharmacy Research and Practice, 6, 109–119. https://doi.org/10.2147/IPRP.S119463
5. Choi, H., Seo, E., & Woo, J. (2025). Association of allergic conditions with adolescent sleep duration: A national survey. Children, 12(10), 1356. https://doi.org/10.3390/children12101356
6. de Oliveira, J. B., et al. (2025). Sleep and chronic rhinosinusitis with nasal polyposis. Sleep Science, 18(4), 443. https://doi.org/10.1055/s-0045-1811199
7. Fein, M. N., Fischer, D. A., O’Keefe, A., & Sussman, G. (2019). CSACI position statement: Newer generation H1-antihistamines are safer than first-generation H1-antihistamines. Allergy, Asthma & Clinical Immunology, 15(1), 61. https://doi.org/10.1186/s13223-019-0375-7
8. Feng, X., Gu, Z., & Wang, Y. (2026). The relationship between allergic rhinitis and sleep disorders and mental health. Frontiers in Allergy, 7, 1806555. https://doi.org/10.3389/falgy.2026.1806555
9. Hossenbaccus, L., Linton, S., Garvey, S., & Ellis, A. K. (2020). Allergic rhinitis. Allergy, Asthma & Clinical Immunology, 16(1), 39. https://doi.org/10.1186/s13223-020-00436-x
10. Hoyte, F. C. L., & Nelson, H. S. (2018). Recent advances in allergic rhinitis [version 1]. F1000Research, 7, 1333. https://doi.org/10.12688/f1000research.15367.1
11. Irawati, N., Wardani, R. S., Poerbonegoro, N. L., & Rahmawati, I. (2023). Sleep disturbance in chronic rhinitis: Evaluation of nasal symptoms, sleep disorder questionnaires, and sleep architecture in allergic and non-allergic rhinitis. Indian Journal of Otolaryngology and Head & Neck Surgery. https://doi.org/10.1007/s12070-023-03783-5
12. Irmak, G., et al. (2026). Impact of allergic rhinitis on school performance in adolescents. Journal of Asthma and Allergy. https://doi.org/10.2147/JAA.S606463
13. Kerdkaew, K., Rattanathamma, P., Tongtako, W., Mickleborough, T., & Jirapongsatorn, B. (2026). Effects of moderate-intensity aerobic exercise on clinical symptoms and physiological outcomes in young adults with persistent allergic rhinitis: A randomized controlled trial. International Journal of Environmental Research and Public Health, 23(5), 611. https://doi.org/10.3390/ijerph23050611
14. Kurowski, M., Jurczyk, J., Krysztofiak, H., & Kowalski, M. L. (2014). Association of serum Clara cell protein CC16 with respiratory infections and immune response to respiratory pathogens in elite athletes. Respiratory Research, 15, 45. https://doi.org/10.1186/1465-9921-15-45
15. Kwiliński, K., Kucharska, M., Szyszka, M., Wawrzyńska, B., Przybysz, P., Paruch, A., & Wadowska, M. (2024). Allergic rhinitis – a review of current diagnostic and therapeutic methods. Quality in Sport, 19, 54182. https://doi.org/10.12775/QS.2024.19.54182
16. Liu, J., Zhang, X., Zhao, Y., & Wang, Y. (2020). The association between allergic rhinitis and sleep: A systematic review and meta-analysis of observational studies. PLoS ONE, 15(2), e0228533. https://doi.org/10.1371/journal.pone.0228533
17. Lu, Z., Li, S., et al. (2025). Joint association of sleep quality and physical activity with allergic rhinitis in preschool children. Journal of Asthma and Allergy, 18, 101. https://doi.org/10.2147/JAA.S101
18. Magierska, A., Szczepaniak, Z., Ptak, O., & Gomułka, K. (2024). Biological therapy, therapeutic approaches and future perspectives in the treatment of chronic rhinitis. Quality in Sport, 18, 52161. https://doi.org/10.12775/QS.2024.18.52161
19. Matyja, M., Kowalska, M., Mazur, A., Brodziak, J., Fojcik, K., Ciszewska, W., Kosztyła-Czech, Z., Wiśniewski, T., & Dworak, M. (2025). Rhinitis in swimmers: A clinical issue at the intersection of sports medicine and otorhinolaryngology. Quality in Sport, 47, 66927. https://doi.org/10.12775/QS.2025.47.66927
20. Michalik, M., Lorenc, T., Muras, M., Marcinkowski, K., Mikszta, N., Mikszta, J., & Marcinkowska, J. (2025). Key updates in the WADA 2025 Prohibited List: Implications for competitive sports. Quality in Sport, 42, 61192. https://doi.org/10.12775/QS.2025.42.61192
21. Muñoz-Cano, R., et al. (2018). Impact of allergic rhinitis on quality of life, sleep and anxiety: A Spanish study. Clinical and Translational Allergy, 8, 23. https://doi.org/10.1186/s13601-018-0212-0
22. Papapostolou, G., Kiotseridis, H., Romberg, K., Dahl, Å., Bjermer, L., Lindgren, M., Aronsson, D., Tunsäter, A., & Tufvesson, E. (2021). Spatial working memory and executive function in children with allergic rhinitis. Pediatric Allergy and Immunology, 32, 67. https://doi.org/10.1111/pai.13328
23. Rollema, C., Metting, E. I., & Vries, T. W. (2022). Pharmacological treatment of allergic rhinitis: A narrative review. Clinical & Experimental Allergy, 52(10), 1247–1262. https://doi.org/10.1111/cea.14114
24. Sirohi, P., Khan, M. H., Sharma, S., Nuhmani, S., Al Muslem, W. H., & Abualait, T. (2022). A systematic review of effects of daytime napping strategies on sports performance in physically active individuals with and without partial-sleep deprivation. PeerJ, 10, e14460. https://doi.org/10.7717/peerj.14460
25. Song, Y., Huang, Y., Gao, Y., Zhang, M., Shao, Y., Zhou, G., Sun, H., Wang, G., Jia, T., Shi, J., & Sun, Y. (2025). Stress management in athletes: Predictive effects of sleep deprivation-induced cognitive control changes on competition performance. The Journal of Neuroscience, 45(16), e1683242025. https://doi.org/10.1523/JNEUROSCI.1683-24.2025
26. Sun, X., Qu, Z., Zhang, X., Zhang, Y., Zhang, X., Zhao, H., & Zhang, H. (2025). The effects of sleep deprivation on cognitive flexibility: A scoping review of outcomes and biological mechanisms. Frontiers in Neuroscience, 19, 1626309. https://doi.org/10.3389/fnins.2025.1626309
27. Tabata, K., Sumi, Y., Sasaki, H., & Kojimahara, N. (2025). Effectiveness of intranasal corticosteroids for sleep disturbances in patients with allergic rhinitis: A systematic review and meta-analysis. International Archives of Allergy and Immunology, 186, 330–344. https://doi.org/10.1159/000541389
28. Vitale, K. C., Owens, R., Hopkins, S. R., & Malhotra, A. (2019). Sleep hygiene for optimizing recovery in athletes: Review and recommendations. International Journal of Sports Medicine, 40(8), 535–543. https://doi.org/10.1055/a-0905-3103
29. Wannell, B. R., Brunner, F. M. J., Lovibond, Z., & Bond, B. O. (2025). The influence of partial sleep restriction on repeated sprint ability and reaction time in university athletes. Frontiers in Sports and Active Living, 7, 1519987. https://doi.org/10.3389/fspor.2025.1519987
30. Yan, X., Liu, P., Wang, W., Xuan, J., Shen, M., & Peng, J. (2025). Causal effects of different types of physical activity on allergic rhinitis: A Mendelian randomization study. Medicine, 104(35), e44159. https://doi.org/10.1097/MD.0000000000044159
31. Zaccarin, M., Zanni, S., Gallè, F., Protano, C., Valeriani, F., Liguori, G., Romano Spica, V., & Vitali, M. (2022). Studying respiratory symptoms related to swimming pools attendance in young athletes: The SPHeRA study. Toxics, 10, 759. https://doi.org/10.3390/toxics10120759
Downloads
Published
How to Cite
Issue
Section
License
Copyright (c) 2026 Piotr Szymański, Anna Hajduk, Jagoda Stańska, Aleksandra Baranowska, Aleksandra Dobrzańska, Kacper Kmieciak, Klaudia Borycka, Aleksandra Szymańska, Filip Kostanek, Maria Berek

This work is licensed under a Creative Commons Attribution-NonCommercial-ShareAlike 4.0 International License.
Stats
Number of views and downloads: 0
Number of citations: 0