Literature DB >> 21232930

Airway and alveolar nitric oxide measurements in obstructive sleep apnea syndrome.

A M Fortuna1, R Miralda, N Calaf, M González, P Casan, M Mayos.   

Abstract

STUDY
OBJECTIVES: The process of intermittent hypoxia-reoxygenation produces airway inflammation and endothelial dysfunction that favors the development of cardiovascular disorders in obstructive sleep apnea syndrome (OSAS). Nitric oxide (NO) is an important mediator in airway inflammation and the regulation of endothelium-dependent vasodilation.
DESIGN: This study compared airway NO (FE(NO)) and alveolar NO (CA(NO)) measurements in exhaled breath in 30 OSAS patients to those of 30 healthy (non-OSAS) individuals and determined the relationship between NO levels and OSAS severity. Additionally, NO measurements were analyzed after 3 months of CPAP treatment. MEASUREMENTS AND
RESULTS: The mean (±SD) FE(NO) level in the OSAS group (27.2 ± 18 ppb) was higher than in the healthy non-OSAS group (p = 0.006). The mean CA(NO) level was 1.65 ± 0.90 ppb, lower than in the non-OSAS group (p = 0.001). A significant correlation was found between FE(NO) and CA(NO) levels and the apnea-hypopnea index (AHI) in the OSAS group (r = 0.8, p < 0.05; r = -0.9, p = 0.01, respectively). FE(NO) levels decreased and CA(NO) levels increased significantly after CPAP treatment.
CONCLUSIONS: Severe OSAS patients have higher FE(NO) and lower CA(NO) levels and these are restored to normal after CPAP treatment, reflecting the correction of local upper airway inflammation and endothelial dysfunction present in OSAS patients. Exhaled breath techniques can be useful to identify airway inflammation and endothelial dysfunction in severe OSAS patients.
Copyright © 2010 Elsevier Ltd. All rights reserved.

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Year:  2011        PMID: 21232930     DOI: 10.1016/j.rmed.2010.12.004

Source DB:  PubMed          Journal:  Respir Med        ISSN: 0954-6111            Impact factor:   3.415


  21 in total

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2.  Intermittent Hypoxia Contributes to the Lung Damage by Increased Oxidative Stress, Inflammation, and Disbalance in Protease/Antiprotease System.

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7.  Long-term continuous positive airway pressure therapy normalizes high exhaled nitric oxide levels in obstructive sleep apnea.

Authors:  Ai-Ping Chua; Loutfi S Aboussouan; Omar A Minai; Kelly Paschke; Daniel Laskowski; Raed A Dweik
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8.  Gestational Obstructive Sleep Apnea: Biomarker Screening Models and Lack of Postpartum Resolution.

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9.  Influence of CPAP treatment on airway and systemic inflammation in OSAS patients.

Authors:  Harun Karamanlı; Duygu Özol; K Serife Ugur; Zeki Yıldırım; Ferah Armutçu; Bulent Bozkurt; Ramazan Yigitoglu
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10.  Antero-cervical thermophysiological characterization of obstructive sleep apnea patients.

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Journal:  Sleep Breath       Date:  2018-02-23       Impact factor: 2.816

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