Vitamin D Status Modifies the Response to Indoor Particulate Matter in Obese Urban Children with Asthma.

Bose, Sonali; Diette, Gregory B; Woo, Han; Koehler, Kirsten; Romero, Karina; Rule, Ana M; Detrick, Barbara; Brigham, Emily et al. · J Allergy Clin Immunol Pract · 2019

prospective_cohort · Level II

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Abstract

Indoor fine particulate air pollution (PM<sub>2.5</sub>) is linked to asthma morbidity; however, whether vitamin D status influences individual susceptibility to airborne exposures is unclear. We aimed to determine if vitamin D modifies the effects of indoor PM<sub>2.5</sub> on asthma symptoms in urban children. A total of 120 children aged 5 to 12 years with physician-diagnosed asthma were evaluated at baseline and every 3 months for 9 months. Indoor PM<sub>2.5</sub>, serum 25-hydroxy vitamin D (25-OH D) levels, and asthma symptoms were simultaneously assessed at each time point. Adjusting for confounders, generalized estimating equations assessed the 3-way interaction effects of 25-OH D, obesity, and PM on asthma symptoms. Children were of mean (standard deviation [SD]) age 9.7 (2.2) years, 36% were obese, and 95% self-reported black race. Mean (SD) PM<sub>2.5</sub> indoor exposure was 38.2 (42.9) μg/m<sup>3</sup> and 25-OH D was 19.1 (7.5) ng/mL. Three-way interaction models demonstrated significantly greater PM<sub>2.5</sub>-associated effects on daytime asthma symptoms only among obese children with low 25-OH D levels (odds ratio [OR]<sub>PM2.5</sub> = 1.26, P = .049 at vitamin D = 15.5 ng/mL, increasingly stronger PM effects at levels <15.5 ng/mL). In homes with increased PM<sub>2.5</sub>, higher 25-OH D was associated with decreased symptom odds (eg, OR<sub>Vitamin D</sub> = 0.87; P = .049 at PM<sub>2.5</sub> = 52.5 μg/m<sup>3</sup>, increasingly protective effects >52.5 μg/m<sup>3</sup>) among obese children. Among obese urban children with asthma, low individual 25-OH D enhanced adverse respiratory effects associated with indoor PM<sub>2.5</sub>. In high PM<sub>2.5</sub> environments, 25-OH D was protective against asthma symptoms. Optimizing vitamin D status in children may help reduce asthma morbidity driven by indoor air pollution.

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