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The effect of mask use on allergic rhinitis symptoms during COVID-19 pandemic

Year 2023, , 266 - 269, 28.07.2023
https://doi.org/10.38053/acmj.1313818

Abstract

Aims: Inspiratory particle load including the allergens in the inhaled air is decreased by the use of the mask, which is one of the methods for COVID-19 protection. The aim of the study is to investigate the effect of masks used by seasonal allergic rhinitis patients with pollen allergy on the control of rhinitis symptoms.
Methods: Mask usage characteristics of patients (mask type used, average number of days per week for mask usage, daily usage time),whether there was a change in the time spent outdoors during the pandemic compared to the pre-pandemic period, and rhinitis complaints and frequency of rhinitis-related drug use before the pandemic compared to the pandemic period were investigated.
Results:The frequency of nasal discharge (6.62±1.69; 6.00±1.89: p<0.001), obstruction (4.56±1.64; 4.28±1.86: p=0.099), itching(7.49±1.55; 7.16±1.83: p=0.038), sneezing (5.54±1.60; 5.21±1.89: p=0.046), and frequency of drug use (5.52±1.62; 5.17±1.91: p=0.037) decreased statistically significantly after the pandemic according to the visual analog scoring. However, an increase was found in ocular symptoms.
Conclusion:Although studies with larger patient and control groups are needed, we think that the use of face masks during the COVID-19 pandemic is an effective protective measure for protection from pollen in patients with allergic rhinitis,who have pollen sensitivity.

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References

  • Li Q, Guan X, Wu P, et al. Early transmission dynamics in Wuhan, China, of novel coronavirus-infected pneumonia. N Engl J Med. 2020;382(13):1199-1207.
  • World Health Organization. Coronavirus disease (COVID-19) pandemic. Available from: https://www.who.int/emergencies/diseases/novel-coronavirus-2019.
  • Wölfel R, Corman VM, Guggemos W, et al. Virological assessment of hospitalized patients with COVID-2019. Nature. 2020;581(7809):465-469.
  • Klimek L, Huppertz T, Alali A, et al. A new form of irritant rhinitis to filtering facepiece particle (FFP) masks (FFP2/N95/KN95 respirators) during COVID-19 pandemic. World Allergy Organ J. 2020;13(10):100474.
  • Klimek L, Jutel M, Akdis C, et al. ARIA-MASK Study Group. Handling of allergen immunotherapy in the COVID-19 pandemic: An ARIA-EAACI statement. Allergy. 2020;75(7):1546-1554.
  • Cherrie JW, Apsley A, Cowie H, et al. Effectiveness of face masks used to protect Beijing residents against particulate air pollution. Occup Environ Med. 2018;75(6):446-452.
  • Oberg T, Brosseau LM. Surgical mask filter and fit performance. Am J Infect Control. 2008;36(4):276-282.
  • Lee SA, Grinshpun SA, Reponen T. Respiratory performance offered by N95 respirators and surgical masks: human subject evaluation with NaCl aerosol representing bacterial and viral particle size range. Ann OccupHyg. 2008;52(3):177-185.
  • Dykewicz MS, Wallace DV, Amrol DJ, et al. Rhinitis 2020: a practice parameter update. J Allergy Clin Immunol. 2020;146(4): 721-767.
  • Skoner DP. Allergic rhinitis: definition, epidemiology, pathophysiology, detection, and diagnosis. J Allergy Clin Immunol. 2001;108(1 Suppl):S2-8.
  • Schröder K, Finis D, Meller S, Buhren BA, Wagenmann M, Geerling G. Die saisonale und perenniale allergische rhinokonjunktivitis [seasonal and perennial allergic rhinoconjunctivitis]. Laryngorhinootologie. 2017;96(2):89-97.
  • Bousquet J, Bullinger M, Fayol C, Marquis P, Valentin B, Burtin B. Assessment of quality of life in patients with perennial allergic rhinitis with the French version of the SF-36 Health Status Questionnaire. J Allergy Clin Immunol. 1994;94(2 Pt 1):182-188.
  • Gautier C, Charpin D. Environmental triggers and avoidance in the management of asthma. J Asthma Allergy. 2017;10:47-56.
  • Kef K, Güven S. The prevalence of allergic rhinitis and associated risk factors among university students in anatolia. J Asthma Allergy. 2020;13:589-597.
  • Dror AA, Eisenbach N, Marshak T, et al. Reduction of allergic rhinitis symptoms with face mask usage during the COVID-19 pandemic. J Allergy ClinImmunolPract. 2020;8(10):3590-3593. doi: 10.1016/j.jaip.2020.08.035.
  • Nisar M, Spence DP, West D, et al. A mask to modify inspired air temperature and humidity and its effect on exercise induced asthma. Thorax. 1992;47(6):446-450.
Year 2023, , 266 - 269, 28.07.2023
https://doi.org/10.38053/acmj.1313818

Abstract

Project Number

-

References

  • Li Q, Guan X, Wu P, et al. Early transmission dynamics in Wuhan, China, of novel coronavirus-infected pneumonia. N Engl J Med. 2020;382(13):1199-1207.
  • World Health Organization. Coronavirus disease (COVID-19) pandemic. Available from: https://www.who.int/emergencies/diseases/novel-coronavirus-2019.
  • Wölfel R, Corman VM, Guggemos W, et al. Virological assessment of hospitalized patients with COVID-2019. Nature. 2020;581(7809):465-469.
  • Klimek L, Huppertz T, Alali A, et al. A new form of irritant rhinitis to filtering facepiece particle (FFP) masks (FFP2/N95/KN95 respirators) during COVID-19 pandemic. World Allergy Organ J. 2020;13(10):100474.
  • Klimek L, Jutel M, Akdis C, et al. ARIA-MASK Study Group. Handling of allergen immunotherapy in the COVID-19 pandemic: An ARIA-EAACI statement. Allergy. 2020;75(7):1546-1554.
  • Cherrie JW, Apsley A, Cowie H, et al. Effectiveness of face masks used to protect Beijing residents against particulate air pollution. Occup Environ Med. 2018;75(6):446-452.
  • Oberg T, Brosseau LM. Surgical mask filter and fit performance. Am J Infect Control. 2008;36(4):276-282.
  • Lee SA, Grinshpun SA, Reponen T. Respiratory performance offered by N95 respirators and surgical masks: human subject evaluation with NaCl aerosol representing bacterial and viral particle size range. Ann OccupHyg. 2008;52(3):177-185.
  • Dykewicz MS, Wallace DV, Amrol DJ, et al. Rhinitis 2020: a practice parameter update. J Allergy Clin Immunol. 2020;146(4): 721-767.
  • Skoner DP. Allergic rhinitis: definition, epidemiology, pathophysiology, detection, and diagnosis. J Allergy Clin Immunol. 2001;108(1 Suppl):S2-8.
  • Schröder K, Finis D, Meller S, Buhren BA, Wagenmann M, Geerling G. Die saisonale und perenniale allergische rhinokonjunktivitis [seasonal and perennial allergic rhinoconjunctivitis]. Laryngorhinootologie. 2017;96(2):89-97.
  • Bousquet J, Bullinger M, Fayol C, Marquis P, Valentin B, Burtin B. Assessment of quality of life in patients with perennial allergic rhinitis with the French version of the SF-36 Health Status Questionnaire. J Allergy Clin Immunol. 1994;94(2 Pt 1):182-188.
  • Gautier C, Charpin D. Environmental triggers and avoidance in the management of asthma. J Asthma Allergy. 2017;10:47-56.
  • Kef K, Güven S. The prevalence of allergic rhinitis and associated risk factors among university students in anatolia. J Asthma Allergy. 2020;13:589-597.
  • Dror AA, Eisenbach N, Marshak T, et al. Reduction of allergic rhinitis symptoms with face mask usage during the COVID-19 pandemic. J Allergy ClinImmunolPract. 2020;8(10):3590-3593. doi: 10.1016/j.jaip.2020.08.035.
  • Nisar M, Spence DP, West D, et al. A mask to modify inspired air temperature and humidity and its effect on exercise induced asthma. Thorax. 1992;47(6):446-450.
There are 16 citations in total.

Details

Primary Language English
Subjects Allergy
Journal Section Research Articles
Authors

Sakine Nazik Bahçecioğlu 0000-0002-9143-5143

Hale Ateş 0000-0001-8374-5814

İlkay Koca Kalkan 0000-0002-9788-1056

Kurtuluş Aksu 0000-0001-6195-1158

Şenay Demir 0000-0003-2829-690X

Musa Topel 0000-0002-9162-928X

Selma Yeşilkaya 0000-0002-1841-0177

Project Number -
Early Pub Date July 26, 2023
Publication Date July 28, 2023
Published in Issue Year 2023

Cite

AMA Nazik Bahçecioğlu S, Ateş H, Koca Kalkan İ, Aksu K, Demir Ş, Topel M, Yeşilkaya S. The effect of mask use on allergic rhinitis symptoms during COVID-19 pandemic. Anatolian Curr Med J / ACMJ / acmj. July 2023;5(3):266-269. doi:10.38053/acmj.1313818

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