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Association of urinary perchlorate, nitrate, and thiocyanate concentrations with pulmonary function in children aged 6–19 years
Association of urinary perchlorate, nitrate, and thiocyanate concentrations with pulmonary function in children aged 6–19 years
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Association of urinary perchlorate, nitrate, and thiocyanate concentrations with pulmonary function in children aged 6–19 years
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Association of urinary perchlorate, nitrate, and thiocyanate concentrations with pulmonary function in children aged 6–19 years
Association of urinary perchlorate, nitrate, and thiocyanate concentrations with pulmonary function in children aged 6–19 years

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Association of urinary perchlorate, nitrate, and thiocyanate concentrations with pulmonary function in children aged 6–19 years
Association of urinary perchlorate, nitrate, and thiocyanate concentrations with pulmonary function in children aged 6–19 years
Journal Article

Association of urinary perchlorate, nitrate, and thiocyanate concentrations with pulmonary function in children aged 6–19 years

2025
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Overview
Background Humans are widely exposed to mixtures of environmental perchlorate, nitrate, and thiocyanate. However, the associations of perchlorate, nitrate, and thiocyanate with pulmonary function in children were unclear. Methods To investigate the associations of urinary perchlorate, nitrate, and thiocyanate concentrations with pulmonary function in children, a total of 2,271 children and adolescents aged 6–19 years with complete data on perchlorate, nitrate, and thiocyanate and pulmonary function were analyzed from the U.S. NHANES 2007–2012. Exposure to perchlorate, nitrate, and thiocyanate was estimated by measuring urinary concentration, and pulmonary function was assessed by spirometry. Linear regression and generalized linear models were performed to estimate the associations of perchlorate, nitrate, and thiocyanate concentrations with pulmonary function measures. Stratified subgroup analyses were performed to examine whether age (6–12 and 13–19 years) and sex differences modified these associations. Results In the overall population, concentrations of perchlorate and nitrate, except for thiocyanate, were associated with a modest decrease in pulmonary function. After stratification by age and sex, those negative associations were more pronounced among the children aged 6–12 years. In children aged 6–12 years, perchlorate concentration was negatively associated with FEV1 (p-trend = 0.04) among boys. In children aged 6–12 years, nitrate concentration was negatively associated with FEV1, FVC, and PEF, respectively (all p-trends < 0.05), in both boys and girls. Conclusions Our study suggested that exposures to perchlorate, nitrate, except for thiocyanate were associated with impaired pulmonary function in children and adolescents aged 6–19 years, and those associations were more pronounced among children aged 6–12 years. Further replications of the associations in a large prospective cohort study are warranted.