Timing of secondhand smoke, pet, dampness or mould exposure and lung function in adolescence.
prospective_cohort · Level II
Where this comes from
- Record sourced from PubMed, PMID 31748257.
- Also identified by DOI 10.1136/thoraxjnl-2019-213149.
- No licence information is recorded for this record.
- Because redistribution is not established, this page shows the abstract only. Follow the links below for the full text.
Abstract
The relevance of timing of exposure in the associations of secondhand tobacco smoke (SHS), pets, and dampness or mould exposure with lung function is unclear. We investigated the relevance of timing of these exposures for lung function in adolescence. We used data from participants of the Dutch Prevention and Incidence of Asthma and Mite Allergy (PIAMA) cohort with spirometric measurements at ages 12 and 16 years (n=552). Data on residential exposure to SHS, pets, and dampness or mould were obtained by repeated parental questionnaires. We characterised timing of exposure through longitudinal patterns using latent class growth modelling and assessed associations of these patterns with FEV<sub>1</sub> and FVC at ages 12 and 16 and FEV<sub>1</sub> and FVC growth between ages 12 and 16 using linear regression models. Childhood SHS exposure was associated with reduced FEV<sub>1</sub> growth/year (95% CI) (-0.34% (-0.64% to -0.04%)). Late childhood and early life pet exposure was associated with increased FEV<sub>1</sub> growth (0.41% (0.14% to 0.67%)) and reduced FVC growth (-0.28% (-0.53% to -0.03%)), respectively, compared with very low exposure. Early life dampness or mould exposure was associated with reduced lung function growth. All time windows of SHS exposure tended to be associated with lower attained lung function and pet exposure tended to be associated with higher FEV<sub>1</sub>. SHS exposure during childhood could lead to reduced lung function growth and lower attained lung function in adolescence. While pet exposure in late childhood may not adversely affect lung function, early childhood pet exposure may slow down FVC growth in adolescence.
Medical subject headings
- Asthma
- Fungi
- Humidity
- Mites
- Tobacco Smoke Pollution