Association of Breastfeeding and Air Pollution Exposure With Lung Function in Chinese Children
Chuan Zhang1, Yuming Guo2, Xiang Xiao1
1Guangdong Provincial Engineering Technology Research Center of Environmental Pollution and Health Risk Assessment, Department of Occupational and Environmental Health, School of Public Health, Sun Yat-sen University, Guangzhou, China.
Insights
Breastfeeding protects children from the harmful effects of air pollution on lung function. Children who were not breastfed had a significantly higher risk of lung impairment when exposed to pollutants.
Area of Science:
- Environmental Health
- Pediatrics
- Respiratory Medicine
Background:
- Ambient air pollution and breastfeeding are independently linked to children's respiratory health.
- Previous research has not investigated breastfeeding's role in mitigating air pollution's impact on lung function.
Purpose of the Study:
- To examine the association between breastfeeding and air pollution exposure on lung function in children.
- To determine if breastfeeding moderates the relationship between air pollution and respiratory health outcomes.
Main Methods:
- Cross-sectional study of 6740 children aged 11.6 years in 7 Chinese cities.
- Air pollutant concentrations (PM1, PM2.5, PM10, NO2) estimated via spatial modeling and monitoring stations.
- Lung function assessed using spirometry; impairment defined by reduced FVC, FEV1, PEF, or MMEF.
Main Results:
- Children not breastfed showed significantly higher odds of lung function impairment (FVC, FEV1) with increased exposure to PM1, PM2.5, and PM10.
- The protective effect of breastfeeding was more pronounced in younger children (<12 years).
- Linear regression confirmed worse lung function (FVC, FEV1) in non-breastfed children exposed to PM1.
Conclusions:
- Breastfeeding is associated with a reduced risk of lung function impairment in children exposed to air pollution in China.
- Breastfeeding may act as a protective factor against the adverse respiratory effects of air pollutants.
- Findings highlight the importance of breastfeeding for respiratory health in polluted environments.
Importance:
Breastfeeding and exposure to ambient air pollutants have been found to be independently associated with respiratory health in children; however, previous studies have not examined the association of breastfeeding as a potential moderator of the association.
Objective:
To assess associations of breastfeeding and air pollution with lung function in children.
Design, Setting, And Participants:
Using a cross-sectional study design, children were recruited from 62 elementary and middle schools located in 7 Chinese cities from April 1, 2012, to October 31, 2013. Data analyses were conducted from November 1, 2018, to March 31, 2019.
Exposures:
Long-term concentrations of airborne particulate matter with a diameter of 1 μm or less (PM1), airborne particulate matter with a diameter of 2.5 μm or less (PM2.5), airborne particulate matter with a diameter of 10 μm or less (PM10), and nitrogen dioxide were estimated using a spatial statistical model matched to children's geocoded home addresses, and concentrations of PM10, sulfur dioxide, nitrogen dioxide, and ozone were measured by local air monitoring stations.
Main Outcomes And Measures:
Breastfeeding was defined as maternal report of having mainly breastfed for longer than 3 months. Lung function was measured using portable electronic spirometers. Using previously published predicted spirometric values for children in Northeast China as the reference, lung impairment was defined as forced vital capacity (FVC) less than 85%, forced expiratory volume in the first second of expiration less than 85%, peak expiratory flow less than 75%, or maximum midexpiratory flow less than 75%.
Results:
Participants included 6740 children (mean [SD] age, 11.6 [2.1] years; 3382 boys [50.2%]). There were 4751 children (70.5%) who were breastfed. Mean (SD) particulate matter concentrations ranged from 46.8 (6.5) μg/m3 for PM1 to 95.6 (9.8) μg/m3 for PM10. The prevalence of lung function impairment ranged from 6.8% for peak expiratory flow to 11.3% for FVC. After controlling for age, sex, and other covariates, 1-interquartile range greater concentration of pollutants was associated with higher adjusted odds ratios (AORs) for lung function impairment by FVC among children who were not breastfed compared with those who were (PM1: AOR, 2.71 [95% CI, 2.02-3.63] vs 1.20 [95% CI, 0.97-1.48]; PM2.5: AOR, 2.27 [95% CI, 1.79-2.88] vs 1.26 [95% CI, 1.04-1.51]; and PM10: AOR, 1.93 [95% CI, 1.58-2.37] vs 1.46 [95% CI, 1.23-1.73]). Younger age (<12 years) was associated with lower lung function impairment among the children who had been breastfed. In children from elementary schools, 1-interquartile range greater concentration of pollutants was associated with higher AORs for lung function impairment by FVC among children who had not been breastfed compared with those who had (PM1: AOR, 6.43 [95% CI, 3.97-10.44] vs 1.89 [95% CI, 1.28-2.80]; PM2.5: AOR, 3.83 [95% CI, 2.63-5.58] vs 1.50 [95% CI, 1.12-2.01]; and PM10: AOR, 2.61 [95% CI, 1.90-3.57] vs 1.52 [95% CI, 1.19-1.95]). Results from linear regression models also showed associations of air pollution with worse lung function among children who were not breastfed compared with their counterparts who were breastfed, especially for FVC (PM1: β, -240.46 [95% CI, -288.71 to -192.21] vs -38.21 [95% CI, -69.27 to -7.16] mL) and forced expiratory volume in the first second of expiration (PM1: β, -201.37 [95% CI, -242.08 to -160.65] vs -30.30 [95% CI, -57.66 to -2.94] mL).
Conclusions And Relevance:
In this study, breastfeeding was associated with lower risk of lung function impairment among children in China exposed to air pollution, particularly among younger children.
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