Nocturnal Hypoxemia and CT Determined Pulmonary Artery Enlargement in Smokers
Abstract
:1. Introduction
2. Methods
2.1. Study Population
2.2. Measurements
2.3. Home Sleep Study
2.4. Chest CT
2.5. Statistical Analysis
3. Results
3.1. Participant Characteristics
3.2. Prevalence and Characteristics of Patients with Pulmonary Artery Enlargement
3.3. Association between Nocturnal Hypoxemia and Pulmonary Artery Enlargement
3.4. Sensitivity Analysis
4. Discussion
5. Conclusions
Supplementary Materials
Author Contributions
Funding
Institutional Review Board Statement
Conflicts of Interest
References
- World Health Organization. WHO Global Report on Trends in Tobacco Smoking 2000–2025. Available online: https://www.who.int/health-topics/tobacco (accessed on 19 March 2020).
- World Health Organization. Obesity and Overweight. Available online: https://www.who.int/news-room/fact-sheets/detail/obesity-and-overweight (accessed on 19 March 2020).
- Flenley, D.C. Sleep in chronic obstructive lung disease. Clin. Chest Med. 1985, 6, 651–661. [Google Scholar] [PubMed]
- Marin, J.M.; Soriano, J.B.; Carrizo, S.J.; Boldova, A.; Celli, B.R. Outcomes in patients with chronic obstructive pulmonary disease and obstructive sleep apnea: The overlap syndrome. Am. J. Respir. Crit. Care Med. 2010, 182, 325–331. [Google Scholar] [CrossRef] [PubMed]
- Chaouat, A.; Weitzenblum, E.; Krieger, J.; Ifoundza, T.; Oswald, M.; Kessler, R. Association of chronic obstructive pulmonary disease and sleep apnea syndrome. Am. J. Respir. Crit. Care Med. 1995, 151, 82–86. [Google Scholar] [CrossRef] [PubMed]
- Timms, R.M.; Khaja, F.U.; Williams, G.W. Hemodynamic response to oxygen therapy in chronic obstructive pulmonary disease. Ann. Intern. Med. 1985, 102, 29–36. [Google Scholar] [CrossRef]
- Nocturnal Oxygen Therapy Trial Group. Continuous or nocturnal oxygen therapy in hypoxemic chronic obstructive lung disease: A clinical trial. Ann. Intern. Med. 1980, 93, 391–398. [Google Scholar] [CrossRef]
- Medical Research Council Working Party. Report of the Medical Research Council Working Party. Long-term domiciliary oxygen therapy in chronic hypoxic cor pulmonale complicating bronchitis and emphysema. Lancet 1981, 1, 681–685. [Google Scholar]
- Sajkov, D.; Wang, T.; Saunders, N.A.; Bune, A.J.; Neill, A.M.; Mcevoy, D.R. Daytime pulmonary hemodynamics in patients with obstructive sleep apnea without lung disease. Am. J. Respir. Crit. Care Med. 1999, 159, 1518–1526. [Google Scholar] [CrossRef]
- Sanner, B.M.; Doberauer, C.; Konermann, M.; Sturm, A.; Zidek, W. Pulmonary hypertension in patients with obstructive sleep apnea syndrome. Arch. Intern. Med. 1997, 157, 2483–2487. [Google Scholar] [CrossRef]
- Arias, M.A.; Garcia-Rio, F.; Alonso-Fernandez, A.; Martínez, I.; Villamor, J. Pulmonary hypertension in obstructive sleep apnoea: Effects of continuous positive airway pressure: A randomized, controlled cross-over study. Eur. Heart J. 2006, 27, 1106–1113. [Google Scholar] [CrossRef] [Green Version]
- Shen, Y.; Wan, C.; Tian, P.; Wu, Y.; Li, X.; Yang, T.; An, J.; Wang, T.; Chen, L.; Wen, F. CT-base pulmonary artery measurement in the detection of pulmonary hypertension: A meta-analysis and systematic review. Medicine 2014, 93, e256. [Google Scholar] [CrossRef]
- Wells, J.M.; Washko, G.R.; Han, M.K.; Abbas, N.; Nath, H.; Mamary, A.J.; Regan, E.; Bailey, W.C.; Martinez, F.J.; Westfall, E.; et al. COPDGene investigators; ECLIPSE study investigators. Pulmonary arterial enlargement and acute exacerbations of COPD. N. Engl. J. Med. 2012, 367, 913–921. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- De-Torres, J.P.; Ezponda, A.; Alcaide, A.B.; Campo, A.; Berto, J.; Gonzalez, J.; Bastarrika, G. Pulmonary arterial enlargement predicts long-term survival in COPD patients. PLoS ONE 2018, 13. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Pérez-Warnisher, M.T.; Cabezas, E.; Troncoso, M.F.; Gómez, T.; Melchor, R.; Pinillos, E.J.; El Hachem, A.; Gotera, C.; Rodriguez, P.; Mahilo, I.; et al. Sleep disordered breathing and nocturnal hypoxemia are very prevalent in a lung cancer screening population and may condition lung cancer screening findings: Results of the prospective Sleep Apnea in Lung Cancer Screening (SAILS) study. Sleep Med. 2019, 54, 181–186. [Google Scholar] [CrossRef] [PubMed]
- Lopez-Campos, J.L.; Peces-Barba, G.; Soler-Cataluna, J.J.; Soriano, J.B.; de Lucas Ramos, P.; de-Torres, J.P.; Marin, J.M.; Casanova, C. Chronic obstructive pulmonary disease history assessment in Spain: A multidimensional chronic obstructive pulmonary disease evaluation: Study methods and organization. Arch. Bronconeumol. 2012, 48, 453–459. [Google Scholar] [CrossRef] [PubMed]
- Miller, M.R.; Hankinson, J.; Brusasco, V.; Burgos, F.; Casaburi, R.; Coates, A.; Crapo, R.; Enright, P.; van der Grinten, C.P.M.; Gustafsson, P.; et al. Standardisation of spirometry. Eur. Respir. J. 2005, 26, 319–338. [Google Scholar] [CrossRef] [Green Version]
- Graham, B.L.; Brusasco, V.; Burgos, F.; Cooper, B.G.; Jensen, R.; Kendrick, A.; MacIntyre, N.R.; Thompson, B.R.; Wagner, J. 2017 ERS/ATS standards for single-breath carbon monoxide uptake in the lung. Eur. Respir. J. 2017, 49, 1600016. [Google Scholar] [CrossRef] [Green Version]
- Global Initiative for Chronic Obstructive Lung Disease. The Global Strategy for Diagnosis, Management and Prevention of Chronic Obstructive Pulmonary Disease. Updated 2020. Available online: www.goldcopd.com (accessed on 23 August 2020).
- Johns, M.W. A new method for measuring daytime sleepiness: The Epworth sleepiness scale. Sleep 1991, 14, 540–545. [Google Scholar] [CrossRef] [Green Version]
- Berry, R.B.; Brooks, R.; Gamaldo, C.E.; Harding, S.M.; Lloyd, R.L.; Marcus, C.L.; Vaughn, B.V. The AASM Manual for the Scoring of Sleep and Associated Events: Rules, Terminology and Technical Specifications. Version 2.3; American Academy of Sleep Medicine: Darien, IL, USA, 2016. [Google Scholar]
- Truong, Q.A.; Massaro, J.M.; Rogers, I.S.; Mahabadi, A.A.; Kriegel, M.F.; Fox, C.S.; O’Donnell, C.J.; Hoffmann, U. Reference values for normal pulmonary artery dimensions by noncontrast cardiac computed tomography: The Framingham Heart Study. Circ. Cardiovasc. Imaging 2012, 5, 147–154. [Google Scholar] [CrossRef] [Green Version]
- Kessler, R.; Faller, M.; Weitzenblum, E.; Chaouat, A.; Aykut, A.; Ducolone, A.; Ehrhart, M.; Olswl-Mammosser, M. “Natural history” of pulmonary hypertension in a series of 131 patients with chronic obstructive lung disease. Am. J. Respir. Crit. Care Med. 2001, 164, 219–224. [Google Scholar] [CrossRef]
- Nathan, S.D.; Barbera, J.A.; Gaine, S.P.; Harari, S.; Martinez, F.J.; Olschewski, H.; Olsson, K.M.; Peacock, A.J.; Pepke-Zaba, J.; Provencher, S.; et al. Pulmonary hypertension in chronic lung disease and hypoxia. Eur. Respir. J. 2019, 53, 1801914. [Google Scholar] [CrossRef] [Green Version]
- Blanco, I.; Piccari, L.; Barberà, J.A. Pulmonary vasculature in COPD: The silent component. Respirology 2016, 21, 984–994. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Terzikhan, N.; Bos, D.; Lahousse, L.; Wolf, L.; Verhamme, K.M.C.; Leening, M.J.G.; Felix, J.F.; Gall, H.; Ghofrani, H.A.; Franco, O.H.; et al. Pulmonary artery to aorta ratio and risk of all-cause mortality in the general population: The Rotterdam Study. Eur. Respir. J. 2017, 49, 1602168. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Nakanishi, R.; Rana, J.S.; Shalev, A.; Gransar, H.; Hayes, S.W.; Labounty, T.M.; Dey, D.; Miranda-Peats, R.; Thomson, L.E.; Friedman, J.D.; et al. Mortality risk as a function of the ratio of pulmonary trunk to ascending aorta diameter in patients with suspected coronary artery disease. Am. J. Cardiol. 2013, 111, 1259–1263. [Google Scholar] [CrossRef] [PubMed]
- Raoufi, M.; Naini, S.A.A.S.; Azizan, Z.; Zade, F.J.; Shojaeian, F.; Boroujeni, M.G.; Robatjazi, F.; Haghighi, M.; Dolatabadi, A.A.; Soleimantabar, H.; et al. Correlation between chest computed tomography scan findings and mortality of COVID-19 cases; A cross sectional study. Arch. Acad. Emerg. Med. 2020, 14, e57. [Google Scholar]
- Steiger, D.; Han, D.; Yip, R.; Li, K.; Chen, X.; Liu, L.; Liu, J.; Ma, T.; Siddiqi, F.; Yankelevitz, D.F.; et al. Increased main pulmonary artery diameter and main pulmonary artery to ascending aortic diameter ratio in smokers undergoing lung cancer screening. Clin. Imaging 2020, 63, 16–23. [Google Scholar] [CrossRef]
- Adler, D.; Bailly, S.; Benmerad, M.; Joyeux-Faure, M.; Jullian-Desayes, I.; Soccal, P.M.; Janssens, J.P.; Sapène, M.; Grillet, Y.; Stach, B.; et al. Clinical presentation and comorbidities of obstructive sleep apnea-COPD overlap syndrome. PLoS ONE 2020, 15, e0235331. [Google Scholar] [CrossRef]
- Kendzerska, T.; Leung, R.S.; Aaron, S.D.; Ayas, N.; Sandoz, J.S.; Gershon, A.S. Cardiovascular outcomes and all-cause mortality in patients with obstructive sleep apnea and chronic obstructive pulmonary disease (overlap syndrome). Ann. Am. Thorac. Soc. 2019, 16, 71–81. [Google Scholar] [CrossRef]
- Macrea, M.M.; Owens, R.L.; Martin, T.; Smith, D.; Oursler, K.K.; Malhotra, A. The effect of isolated nocturnal oxygen desaturations on serum hs-CRP and IL-6 in patients with chronic obstructive pulmonary disease. Clin. Respir. J. 2019, 13, 120–124. [Google Scholar] [CrossRef]
- Albert, R.K.; Au, D.H.; Blackford, A.L.; Casaburi, R.; Cooper, J.A., Jr.; Criner, G.J.; Diaz, P.; Fuhlbrigge, A.L.; Gay, S.E.; Kanner, R.E.; et al. A randomized trial of long-term oxygen for COPD with moderate desaturation. Long-term oxygen treatment trial research group. N. Engl. J. Med. 2016, 375, 1617–1627. [Google Scholar]
- Lacasse, Y.; Sériès, F.; Corbeil, F.; Baltzan, M.; Paradis, B.; Simão, P.; Fernández, A.A.; Esteban, C.; Guimarães, M.; The INOX Trial Group. Randomized trial of nocturnal oxygen in chronic obstructive pulmonary disease. N. Engl. J. Med. 2020, 383, 1129–1138. [Google Scholar] [CrossRef]
- Santos, S.; Peinado, V.I.; Ramirez, J.; Melgosa, T.; Roca, J.; Rodriguez-Roisin, R.; Barbera, J.A. Characterization of pulmonary vascular remodelling in smokers and patients with mild copd. Eur. Respir. J. 2002, 19, 632–638. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Sevilla-Montero, J.; Labrousse-Arias, D.; Fernández-Pérez, C.; Fernández-Blanco, L.; Barreira, B.; Mondéjar-Parreño, G.; Alfaro-Arnedo, E.; López, I.P.; Pérez-Rial, S.; Peces-Barba, G.; et al. Cigarette smoke directly promotes pulmonary arterial remodeling and Kv7.4 channel dysfunction. Am. J. Respir. Crit. Care Med. 2020. Epub ahead of print. [Google Scholar] [CrossRef] [PubMed]
- National Lung Screening Trial Research Team; Aberle, D.R.; Adams, A.M.; Berg, C.D.; Clapp, J.D.; Clingan, K.L.; Gareen, I.F.; Lynch, D.A.; Marcus, P.M.; Pinsky, P.F. Baseline characteristics of participants in the randomized national lung screening trial. J. Natl. Cancer Inst. 2010, 102, 1771–1779. [Google Scholar] [PubMed]
- Koning, H.J.; van der Aalst, C.M.; de Jong, P.A.; Scholten, E.T.; Nackaerts, K.; Heuvelmans, M.A.; Lammers, J.J.; Weenink, C.; Yousaf-Khan, U.; Horeweg, N.; et al. Reduced lung-cancer mortality with volume CT screening in a randomized trial. N. Engl. J. Med. 2020, 382, 503–513. [Google Scholar] [CrossRef]
Variable | All Subjects (n = 284) | No PAE (n = 209) | PAE (n = 75) | p-Value * |
---|---|---|---|---|
Male, n(%) | 178 (63) | 129 (62) | 49 (65) | 0.266 |
Age, years—mean (SD) | 65 (7) | 65 (7) | 66 (7) | 0.273 |
Smoking history Packs—year Current smokers, n(%) | 42 (35–60) 142 (50) | 40 (32–60) 105 (50) | 50 (38–60) 37 (49) | 0.027 0.893 |
Body mass index, kg/m2 Body mass index ≥ 30 kg/m2, n(%) | 28 (25–31) 91 (32) | 27 (25–31) 53 (26) | 30 (25–34) 38 (51) | 0.002 <0.001 |
Prevalent comorbidities, n(%) Hypertension Diabetes Hyperlipidaemia Coronary heart disease Atrial fibrillation | 111 (39) 45 (16) 91 (32) 29 (10) 17 (6) | 75 (36) 29 (14) 63 (30) 19 (9) 10 (5) | 34 (46) 15 (20) 27 (36) 9 (12) 6 (8) | 0.149 0.209 0.350 0.468 0.300 |
FEV1, % predicted -mean (SD) COPD, n(%) | 84 (22) 171 (60) | 88 (20) 124 (59) | 74 (23) 47 (63) | <0.001 0.613 |
DLCO, % predicted—mean (SD) | 83 (23) | 84 (22) | 81 (25) | 0.310 |
Epworth sleepiness scale | 6 (4–8) | 6 (4–8) | 6 (4–9) | 0.069 |
Apnoea–hypopnoea index, events/h OSA, n(%) | 10 (4–22) 167 (59) | 10 (3–20) 124 (59) | 11 (5–30) 43 (57) | 0.273 0.763 |
Oxygen desaturation index, events/h | 11 (4–22) | 9 (4–19) | 10 (5–28) | 0.097 |
Resting O2 saturation, % | 94 (92–95) | 94 (92–95) | 93 (92–94) | 0.002 |
Median O2 saturation, % | 92 (90–93) | 92 (91–94 | 91 (89–93) | <0.001 |
T90, % T90 ≥ 10%, n (%) T90 ≥ 30%, n (%) | 6 (1–30) 119 (42) 71 (25) | 4 (1–23) 76 (36) 40 (19) | 17 (1–69) 43 (57) 31 (41) | <0.001 0.002 <0.001 |
% of lung with emphysema | 3 (1–7) | 3 (1–7) | 3 (1–6) | 0.852 |
Pulmonary artery diameter, mm | 26 (24–28) | 25 (23–26) | 31 (29–32) | <0.001 |
Aorta diameter, mm | 34 (31–37) | 33 (31–36) | 36 (33–39) | <0.001 |
PA:Ao ratio | 0.76 (0.68–0.84) | 0.76 (0.66–0.81) | 0.86 (0.79–0.92) | <0.001 |
PA:Ao > 0.9, n(%) | 32 (11.6) | 10 (4.8) | 22 (29.0) | <0.001 |
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Marin-Oto, M.; Seijo, L.M.; Divo, M.; Bastarrika, G.; Ezponda, A.; Calvo, M.; Zulueta, J.J.; Gallardo, G.; Cabezas, E.; Peces-Barba, G.; et al. Nocturnal Hypoxemia and CT Determined Pulmonary Artery Enlargement in Smokers. J. Clin. Med. 2021, 10, 489. https://doi.org/10.3390/jcm10030489
Marin-Oto M, Seijo LM, Divo M, Bastarrika G, Ezponda A, Calvo M, Zulueta JJ, Gallardo G, Cabezas E, Peces-Barba G, et al. Nocturnal Hypoxemia and CT Determined Pulmonary Artery Enlargement in Smokers. Journal of Clinical Medicine. 2021; 10(3):489. https://doi.org/10.3390/jcm10030489
Chicago/Turabian StyleMarin-Oto, Marta, Luis M. Seijo, Miguel Divo, Gorka Bastarrika, Ana Ezponda, Marta Calvo, Javier J. Zulueta, Guillermo Gallardo, Elena Cabezas, German Peces-Barba, and et al. 2021. "Nocturnal Hypoxemia and CT Determined Pulmonary Artery Enlargement in Smokers" Journal of Clinical Medicine 10, no. 3: 489. https://doi.org/10.3390/jcm10030489
APA StyleMarin-Oto, M., Seijo, L. M., Divo, M., Bastarrika, G., Ezponda, A., Calvo, M., Zulueta, J. J., Gallardo, G., Cabezas, E., Peces-Barba, G., Pérez-Warnisher, M. T., Marín, J. M., Celli, B. R., Casanova, C., & De-Torres, J. P. (2021). Nocturnal Hypoxemia and CT Determined Pulmonary Artery Enlargement in Smokers. Journal of Clinical Medicine, 10(3), 489. https://doi.org/10.3390/jcm10030489