Associations of wheezing phenotypes in the first 6 years of life with atopy, lung function and airway responsiveness in mid-childhood
作者:A. John Henderson, Raquel Granell, Jon Heron, Andrea Sherriff, Angela Simpson, Ashley Woodcock, D. P. Strachan, Seif O. Shaheen, Jonathan A C Sterne · 发表于:Thorax · 年份:2008 · DOI:10.1136/thx.2007.093187 · 被引用次数:531 · 研究领域:Asthma and respiratory diseases、Delphi Technique in Research、Neonatal Respiratory Health Research
BACKGROUND: Patterns of wheezing during early childhood may indicate differences in aetiology and prognosis of respiratory illnesses. Improved characterisation of wheezing phenotypes could lead to the identification of environmental influences on the development of asthma and airway diseases in predisposed individuals. METHODS: Data collected on wheezing at seven time points from birth to 7 years from 6265 children in a longitudinal birth cohort (the ALSPAC study) were analysed. Latent class analysis was used to assign phenotypes based on patterns of wheezing. Measures of atopy, airway function (forced expiratory volume in 1 s (FEV(1)), mid forced expiratory flow (FEF(25-75))) and bronchial responsiveness were made at 7-9 years of age. RESULTS: Six phenotypes were identified. The strongest associations with atopy and airway responsiveness were found for intermediate onset (18 months) wheezing (OR for atopy 8.36, 95% CI 5.2 to 13.4; mean difference in dose response to methacholine 1.76, 95% CI 1.41 to 2.12 %FEV(1) per mumol, compared with infrequent/never wheeze phenotype). Late onset wheezing (after 42 months) was also associated with atopy (OR 6.6, 95% CI 4.7 to 9.4) and airway responsiveness (mean difference 1.61, 95% CI 1.37 to 1.85 %FEV(1) per mumol). Transient and prolonged early wheeze were not associated with atopy but were weakly associated with increased airway responsiveness and persistent wheeze had intermediate associations with these outcomes. CONCLUSIONS: The wh...