• This record comes from PubMed

Adherence of obstructive sleep apnoea syndrome patients to positive airway pressure therapy - 10-year follow-up

. 2022 Dec ; 166 (4) : 441-446. [epub] 20210702

Language English Country Czech Republic Media print-electronic

Document type Journal Article

PURPOSE: Continuous positive airway pressure (CPAP) is the most effective therapy for obstructive sleep apnoea syndrome (OSAS). Long-term adherence is necessary; however, it may be widely variable based on current literature, where the predicting factors are also not well defined. The aim of this study was to assess ten-year adherence to CPAP and to define factors influencing it. METHODS: In total, 107 patients (91 males) were enrolled in this study, with an average age of 53.5 years (SD 10.1), with CPAP therapy being indicated (Apnoea-Hypopnoea Index - AHI > 15). Anthropometric and social status data have been obtained as well as the average use of CPAP through device memory. RESULTS: Sufficient adherence (> 4 h per night) was found in 57% of patients in the first year with no subsequent significant change during the next 9 years. Adherence correlated significantly with the severity of OSAS - AHI (r = 0.321 over 5 years) and Epworth Sleepiness Scale (r = 0.317 over ten years) but did not correlate with the pressure used or the age of the patient. No statistically significant differences have been found between the sexes, the different mask groups, or the social status groups. CONCLUSION: Good adherence to CPAP therapy in OSAS patients is essential. According to our results, patients with more severe OSAS or more severe sleepiness seem to have better adherence.

See more in PubMed

Ferini-Strambi L, Fantini ML, Castronovo C. Epidemiology of obstructive sleep apnea syndrome. Minerva Med 2004;95(3):187-202. PubMed

American Academy of Sleep Medicine. International classification of sleep disorders, 3rd diagnostic and coding manual. Westchester: American Academy of Sleep Medicine. 2014.

Abumuamar AM, Newman D, Dorian P, Shapiro CM. Cardiac effects of CPAP treatment in patients with obstructive sleep apnea and atrial fibrillation. J Interv Card Electrophysiol 2019;54(3):289-97. PubMed DOI

Barcelo A, Pierola J, Lopez-Escribano H, de la Pena M, Soriano JB, Alonso-Fernandez A, Ladaria A, Agusti A. Telomere shortening in sleep apnea syndrome. Respir Med 2010;104(8):1225-9. PubMed DOI

Catalan-Serra P, Campos-Rodriguez F, Reyes-Nunez N, Selma-Ferrer MJ, Navarro-Soriano C, Ballester-Canelles M, Soler-Cataluna JJ, Roman-Sanchez P, Almeida-Gonzalez CV, Martinez-Garcia MA. Increased Incidence of Stroke, but Not Coronary Heart Disease, in Elderly Patients With Sleep Apnea. Stroke 2019;50(2):491-4. PubMed DOI

Andrade L, Paiva T. Ambulatory Versus Laboratory Polysomnography in Obstructive Sleep Apnea: Comparative Assessment of Quality, Clinical Efficacy, Treatment Compliance, and Quality of Life. J Clin Sleep Med 2018;14(8):1323-31. DOI

Young D, Collop N. Advances in the treatment of obstructive sleep apnea. Curr Treat Options Neurol 2014;16(8):305. PubMed DOI

Serrano Merino J, Perula de Torres LA, Bardwell WA, Munoz Gomez R, Roldan Villalobos A, Feu Collado N, Ruiz-Moral R, Jurado-Gamez B. Impact of Positive Pressure Treatment of the Airway on Health-Related Quality of Life in Elderly Patients With Obstructive Sleep Apnea. Biol Res Nurs 2018;20(4):452-61. PubMed DOI

Caples SM, Mansukhani MP, Friedman PA, Somers VK. The impact of continuous positive airway pressure treatment on the recurrence of atrial fibrillation post cardioversion: A randomized controlled trial. Int J Cardiol 2019;278:133-6. DOI

Peker Y, Balcan B. Cardiovascular outcomes of continuous positive airway pressure therapy for obstructive sleep apnea. J Thorac Dis 2018;10(Suppl 34):S4262-S79. PubMed DOI

McEvoy RD, Antic NA, Heeley E, Luo Y, Ou Q, Zhang X, Mediano O, Chen R, Drager LF, Liu Z, Chen G, Du B, McArdle N, Mukherjee S, Tripathi M, Billot L, Li Q, Lorenzi-Filho G, Barbe F, Redline S, Wang J, Arima H, Neal B, White DP, Grunstein RR, Zhong N, Anderson CS. CPAP for Prevention of Cardiovascular Events in Obstructive Sleep Apnea. N Engl J Med 2016;375(10):919-31. DOI

Campbell A, Neill A, Lory R. Ethnicity and socioeconomic status predict initial continuous positive airway pressure compliance in New Zealand adults with obstructive sleep apnoea. Intern Med J 2012;42(6):e95-101. PubMed DOI

Gagnadoux F, Le Vaillant M, Goupil F, Pigeanne T, Chollet S, Masson P, Humeau MP, Bizieux-Thaminy A, Meslier N. Influence of marital status and employment status on long-term adherence with continuous positive airway pressure in sleep apnea patients. PloS One 2011;6(8):e22503. PubMed DOI

Tan B, Tan A, Chan YH, Mok Y, Wong HS, Hsu PP. Adherence to Continuous Positive Airway Pressure therapy in Singaporean patients with Obstructive Sleep Apnea. Am J Otolaryngol 2018;39(5):501-6. DOI

Johns MW. Sleepiness in different situations measured by the Epworth Sleepiness Scale. Sleep 1994;17(8):703-10. PubMed DOI

Hobzova M, Hubackova L, Vanek J, Genzor S, Ociskova M, Grambal A, Prasko J. Cognitive function and depressivity before and after cpap treatment in obstructive sleep apnea patients. Neuro Endocrinol Lett 2017;38(3):145-53. PubMed

Inoue A, Chiba S, Matsuura K, Osafune H, Capasso R, Wada K. Nasal function and CPAP compliance. Auris Nasus Larynx 2019;46(4):548-58. PubMed DOI

Shirlaw T, Duce B, Milosavljevic J, Hanssen K, Hukins C. A randomised crossover trial comparing nasal masks with oronasal masks: No differences in therapeutic pressures or residual apnea-hypopnea indices. J Sleep Res 2018:e12760. PubMed DOI

Sova M, Valisova Z, Hobzova M. Adherence to continuous positive airway pressure therapy of obstructive sleep apnea syndrome - An observational study. Stud Pneumol Phthiseol 2016;76(6):219-25.

Rowland S, Aiyappan V, Hennessy C, Catcheside P, Chai-Coezter CL, McEvoy RD, Antic NA. Comparing the Efficacy, Mask Leak, Patient Adherence, and Patient Preference of Three Different CPAP Interfaces to Treat Moderate-Severe Obstructive Sleep Apnea. J Clin Sleep Med 2018;14(1):101-8. DOI

Borel JC, Tamisier R, Dias-Domingos S, Sapene M, Martin F, Stach B, Grillet Y, Muir JF, Levy P, Series F, Pepin JL. Type of mask may impact on continuous positive airway pressure adherence in apneic patients. PloS One 2013;8(5):e64382. PubMed DOI

Weaver TE, Grunstein RR. Adherence to continuous positive airway pressure therapy: the challenge to effective treatment. Proc Am Thorax Soc 2008;5(2):173-8. DOI

Dzierzewski JM, Wallace DM, Wohlgemuth WK. Adherence to Continuous Positive Airway Pressure in Existing Users: Self-Efficacy Enhances the Association between Continuous Positive Airway Pressure and Adherence. J Clin Sleep Med 2016;12(2):169-76. DOI

Van Ryswyk E, Anderson CS, Antic NA, Barbe F, Bittencourt L, Freed R, Heeley E, Liu Z, Loffler KA, Lorenzi-Filho G, Luo Y, Margalef MJM, McEvoy RD, Mediano O, Mukherjee S, Ou Q, Woodman R, Zhang X, Chai-Coetzer CL. Predictors of long-term adherence to continuous positive airway pressure in patients with obstructive sleep apnea and cardiovascular disease. Sleep 2019;42(10):152. DOI

Sanduzzi A, Balbo P, Candoli P, Catapano GA, Contini P, Mattei A, Puglisi G, Santoiemma L, Stanziola AA. COPD: adherence to therapy. Multidiscip Respir Med 2014;9(1):60. DOI

Bozek A, Jarzab J. Adherence to asthma therapy in elderly patients. J Asthma 2010;47(2):162-5. DOI

Ni Z, Dardas L, Wu B, Shaw R. Cardioprotective medication adherence among patients with coronary heart disease in China: a systematic review. Heart Asia 2019;11(2):e011173. PubMed DOI

Gao W, Jin Y, Wang Y, Sun M, Chen B, Zhou N, Deng Y. Is automatic CPAP titration as effective as manual CPAP titration in OSAHS patients? A meta-analysis. Sleep Breath 2012;16(2):329-40. DOI

Find record

Citation metrics

Loading data ...

Archiving options

Loading data ...