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Updated: Aug 14, 2026

Breath Collection from Children for Disease Biomarker Discovery
Published on: February 14, 2019
Clinical and technical factors affecting pH and other biomarkers in exhaled breath condensate
Ting F Leung1, Chung Y Li, Edmund Yung
1Department of Pediatrics, Chinese University of Hong Kong, Hong Kong SAR, China. leung2142@cuhk.edu.hk
Insights
Exhaled breath condensate (EBC) pH is a reproducible measure influenced by asthma severity in children. However, EBC pH measurement results depend on the collection devices used, impacting its clinical utility.
Area of Science:
- Pediatric Pulmonology
- Biomarkers
- Respiratory Medicine
Background:
- Exhaled breath condensate (EBC) pH is a potential asthma biomarker.
- Its association with clinical factors and inflammatory markers requires further investigation.
Purpose of the Study:
- To determine factors influencing EBC pH in asthmatic children.
- To assess EBC pH reproducibility and the impact of collection devices in adults.
Main Methods:
- EBC pH was measured in non-deaerated samples from asthmatic children and healthy adults.
- Inflammatory markers (8-isoprostane, cys-LT, LTB4) and FeNO were quantified.
- Reproducibility and device effects on EBC pH were analyzed.
Main Results:
- Lower EBC pH was observed in moderate-to-severe persistent asthma compared to intermittent asthma.
- EBC pH correlated inversely with asthma severity score but not with FeNO or other biomarkers.
- EBC pH measurement demonstrated good reproducibility, but results varied significantly between collection devices (RTubes vs. EcoScreen).
Conclusions:
- EBC pH is influenced by asthma severity in children.
- EBC pH is a reproducible biomarker, but its measurement is device-dependent, necessitating standardization for clinical application.
Abstract:
Exhaled breath condensate (EBC) pH appears to be a robust measure of asthma. However, the association between EBC pH and clinical factors and airway inflammatory markers remains unclear. The objectives of this study were to investigate the factors determining EBC pH in asthmatic children, and the reproducibility and effects of collection devices on EBC pH in nine healthy, nonsmoking adults. EBC was collected once from asthmatic children using EcoScreen, and from adults over 3 consecutive days using both RTubes and EcoScreen. EBC pH was measured immediately in non-deaerated samples by microelectrode pH meter. Concentrations of 8-isoprostane, cysteinyl leukotrienes (cys-LT), and leukotriene B4 (LTB4) were measured using enzyme immunoassay. Exhaled nitric oxide concentration (FeNO) was measured by chemiluminescence. Fifty-eight asthmatics (16 intermittent, 12 mild persistent, and 30 moderate-to-severe persistent) were recruited. EBC pH was lower among patients with moderate-to-severe persistent than intermittent asthma (P = 0.046). This marker correlated inversely with disease severity score (rho = -0.276, P = 0.036), but not FeNO or other EBC biomarkers. Bland-Altman analyses found pH but not other EBC biomarkers to be reproducible, which were confirmed by its low coefficient of variation (2.7%; range, 0.4-5.2%). There was poor correlation between pH in EBC collected by RTube and EcoScreen (rho = 0.059, P = 0.784). Factor analysis selected four factors that explained 67.5% of the total variance, and EBC pH clustered with both cys-LT and LTB4. In conclusion, our results suggest that pH in non-deaerated EBC is influenced by asthma severity in children. EBC pH measurement is reproducible, but is dependent on the collection devices used.
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