TY - JOUR
T1 - Long-Term Ozone Exposure and Small Airway Dysfunction The China Pulmonary Health (CPH) Study
AU - China Pulmonary Health Study Group
AU - Niu, Yue
AU - Yang, Ting
AU - Gu, Xiaoying
AU - Chen, Renjie
AU - Meng, Xia
AU - Xu, Jianying
AU - Yang, Lan
AU - Zhao, Jianping
AU - Zhang, Xiangyan
AU - Bai, Chunxue
AU - Kang, Jian
AU - Ran, Pixin
AU - Shen, Huahao
AU - Wen, Fuqiang
AU - Huang, Kewu
AU - Chen, Yahong
AU - Sun, Tieying
AU - Shan, Guangliang
AU - Lin, Yingxiang
AU - Wu, Sinan
AU - Zhu, Jianguo
AU - Wang, Ruiying
AU - Shi, Zhihong
AU - Xu, Yongjian
AU - Ye, Xianwei
AU - Song, Yuanlin
AU - Wang, Qiuyue
AU - Zhou, Yumin
AU - Ding, Liren
AU - Yao, Wanzhen
AU - Guo, Yanfei
AU - Xiao, Fei
AU - Lu, Yong
AU - Peng, Xiaoxia
AU - Zhang, Biao
AU - Xiao, Dan
AU - Wang, Zuomin
AU - Zhang, Hong
AU - Bu, Xiaoning
AU - Zhang, Xiaolei
AU - An, Li
AU - Zhang, Shu
AU - Cao, Zhixin
AU - Zhan, Qingyuan
AU - Yang, Yuanhua
AU - Liang, Lirong
AU - Cao, Bin
AU - Dai, Huaping
AU - Wu, Tangchun
AU - He, Jiang
N1 - Publisher Copyright:
Copyright © 2022 by the American Thoracic Society.
PY - 2022/2/15
Y1 - 2022/2/15
N2 - Rationale: It remains unknown whether long-term ozone exposure can impair lung function. Objectives: To investigate the associations between long-term ozone exposure and adult lung function in China. Methods: Lung function results and diagnosis of small airway dysfunction (SAD) were collected from a cross-sectional study, the China Pulmonary Health Study (N = 50,991). We used multivariable linear and logistic regression models to examine the associations of long-term ozone exposure with lung function parameters and SAD, respectively, adjusting for demographic characteristics, individual risk factors, and longitudinal trends. We then performed a stratification analysis by chronic obstructive pulmonary disease (COPD). Measurements and Main Results: We observed that each 1 SD (4.9 ppb) increase in warm-season ozone concentrations was associated with a 14.2 ml/s (95% confidence interval [CI], 8.8–19.6 ml/s] decrease in forced expiratory flow at the 75th percentile of vital capacity and a 29.5 ml/s (95% CI, 19.6–39.5 ml/s) decrease in mean forced expiratory flow between the 25th and 75th percentile of vital capacity. The odds ratio of SAD was 1.09 (95% CI, 1.06–1.11) for a 1 SD increase in warm-season ozone concentrations. Meanwhile, we observed a significant association with decreased FEV1/FVC but not with FEV1 or FVC. The association estimates were greater in the COPD group than in the non-COPD group. Conclusions: We found independent associations of long-term ozone exposure with impaired small airway function and higher SAD risks, while the associations with airflow obstruction were weak. Patients with COPD appear to be more vulnerable.
AB - Rationale: It remains unknown whether long-term ozone exposure can impair lung function. Objectives: To investigate the associations between long-term ozone exposure and adult lung function in China. Methods: Lung function results and diagnosis of small airway dysfunction (SAD) were collected from a cross-sectional study, the China Pulmonary Health Study (N = 50,991). We used multivariable linear and logistic regression models to examine the associations of long-term ozone exposure with lung function parameters and SAD, respectively, adjusting for demographic characteristics, individual risk factors, and longitudinal trends. We then performed a stratification analysis by chronic obstructive pulmonary disease (COPD). Measurements and Main Results: We observed that each 1 SD (4.9 ppb) increase in warm-season ozone concentrations was associated with a 14.2 ml/s (95% confidence interval [CI], 8.8–19.6 ml/s] decrease in forced expiratory flow at the 75th percentile of vital capacity and a 29.5 ml/s (95% CI, 19.6–39.5 ml/s) decrease in mean forced expiratory flow between the 25th and 75th percentile of vital capacity. The odds ratio of SAD was 1.09 (95% CI, 1.06–1.11) for a 1 SD increase in warm-season ozone concentrations. Meanwhile, we observed a significant association with decreased FEV1/FVC but not with FEV1 or FVC. The association estimates were greater in the COPD group than in the non-COPD group. Conclusions: We found independent associations of long-term ozone exposure with impaired small airway function and higher SAD risks, while the associations with airflow obstruction were weak. Patients with COPD appear to be more vulnerable.
KW - Cross-sectional
KW - Long-term exposure
KW - Ozone
KW - SAD
UR - https://www.scopus.com/pages/publications/85124633460
U2 - 10.1164/rccm.202107-1599OC
DO - 10.1164/rccm.202107-1599OC
M3 - 文章
C2 - 34813411
AN - SCOPUS:85124633460
SN - 1073-449X
VL - 205
SP - 450
EP - 458
JO - American Journal of Respiratory and Critical Care Medicine
JF - American Journal of Respiratory and Critical Care Medicine
IS - 4
ER -