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  4. Long-term PM2.5 exposure impairs lung growth and increases airway inflammation in Taiwanese school children
 
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Long-term PM2.5 exposure impairs lung growth and increases airway inflammation in Taiwanese school children

Journal
ERJ Open Research
Journal Volume
11
Journal Issue
4
Start Page
00972-2024
ISSN
2312-0541
Date Issued
2025-02-20
Author(s)
Tsai, Yi-Giien
Wang, Jiu-Yao
Yang, Kuender D.
HSIAO-YU YANG  
Yeh, Yen-Po
Chang, Yu-Jun
Lee, Jui Huan
Wang, Shu-Li
Huang, Shau-Ku
CHANG-CHUAN CHAN  
DOI
10.1183/23120541.00972-2024
URI
https://scholars.lib.ntu.edu.tw/handle/123456789/740958
Abstract
Rationale: Prolonged exposure to particulate matter with aerodynamic diameter <2.5 µm (PM2.5) may aggravate asthma, impair lung development and increase airway inflammation. This study investigated the impact of long-term PM2.5 exposure on respiratory health, lung function growth and fractional exhaled nitric oxide (F ENO) in a large longitudinal cohort of school children. Methods: A total of 6120 elementary school children residing in townships near coal-fired power plants in Taiwan were prospectively enrolled from 2016 to 2018. Baseline and follow-up data on asthmatic symptoms, spirometry, F ENO and environmental factors were collected. Annual PM2.5 exposure was estimated using land-use regression models based on school and home addresses, and associations were adjusted for SO2 and NO2. Results: The final analysis included 5364 children and revealed that a 1 μg·m-3 increase in annual PM2.5 exposure was associated with higher odds of current wheezing (OR 1.07), "ever" wheeze (OR 1.03), diagnosed asthma (OR 1.03) and exercise-induced wheeze (OR 1.04) (p<0.05). Each unit increase in PM2.5 exposure was associated with a decrease of 7 mL in forced expiratory volume in 1 s (FEV1), 5 mL in forced vital capacity (FVC) and a 0.479-ppb rise in F ENO after adjusting for potential confounders (p<0.05). Among 207 new-onset wheezing patients, increased PM2.5 exposure significantly decreased FEV1 by 13 mL and FVC by 15 mL, while increasing F ENO levels by 0.847 ppb (p<0.05). Conclusions: Long-term PM2.5 exposure significantly increases the risk of asthma symptoms, impedes lung growth and triggers airway inflammation, particularly affecting children with new-onset wheezing in community settings.
Publisher
European Respiratory Society (ERS)
Type
journal article

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