Osama Mahmoud1,2, Raquel Granell1, Kate Tilling1, Cosetta Minelli3, Judith Garcia-Aymerich4,5,6, John W Holloway7, Adnan Custovic8, Deborah Jarvis3, Jonathan Sterne1, John Henderson1. 1. Population Health Sciences, Bristol Medical School, University of Bristol, Bristol, United Kingdom. 2. Department of Applied Statistics, Helwan University, Cairo, Egypt. 3. Population Health and Occupational Disease, NHLI, Imperial College London, London, United Kingdom. 4. ISGlobal, Barcelona, Spain. 5. Pompeu Fabra University, Barcelona, Spain. 6. CIBER Epidemiología y Salud Pública, Barcelona, Spain. 7. Human Development and Health, Faculty of Medicine, University of Southampton, Southampton, United Kingdom; and. 8. Department of Paediatrics, Imperial College, London, United Kingdom.
Abstract
Rationale: Puberty may influence lung function, but the precise role of pubertal height growth in lung development is unclear. Objectives: To examine associations of timing of puberty and peak velocity of pubertal height growth with lung function in adolescence and early adulthood. Methods: Longitudinal analyses of repeat height measurements from age 5 to 20 years for a British birth cohort with 4,772 males and 4,849 females were conducted to characterize height growth trajectories and to derive pubertal age and peak height velocity using the validated SITAR (SuperImposition by Translation and Rotation) model. Association of these estimates with prebronchodilator and post-bronchodilator spirometry measures: FEV1; FVC; FEV1/FVC; FEF25-75% at age 15 and 24 years were investigated using multivariable regression models adjusted for lung function at age 8 years, height and age at time of outcome measurements, and potential confounders.Measurements and Main Results: Later pubertal age and greater peak velocity were associated with higher FEV1 and FVC at 24 years in both sexes. A 1-year increase in pubertal age was associated with a 263-ml higher FVC (95% confidence interval [CI], 167-360 ml) for males (n = 567) and 100-ml (95% CI, 50-150 ml) higher FVC for females (n = 990). A 1-cm/yr increase in peak velocity was associated with 145-ml (95% CI, 56-234 ml) and 50-ml (95% CI, 2-99 ml) increases in FVC for males and females, respectively. No associations were found with FEV1/FVC.Conclusions: Later onset and greater peak velocity of height growth in puberty are associated with increased FEV1 and FVC in young adults but there was no evidence of dysanapsis of pubertal lung growth.
Rationale: Puberty may influence lung function, but the precise role of pubertal height growth in lung development is unclear. Objectives: To examine associations of timing of puberty and peak velocity of pubertal height growth with lung function in adolescence and early adulthood. Methods: Longitudinal analyses of repeat height measurements from age 5 to 20 years for a British birth cohort with 4,772 males and 4,849 females were conducted to characterize height growth trajectories and to derive pubertal age and peak height velocity using the validated SITAR (SuperImposition by Translation and Rotation) model. Association of these estimates with prebronchodilator and post-bronchodilator spirometry measures: FEV1; FVC; FEV1/FVC; FEF25-75% at age 15 and 24 years were investigated using multivariable regression models adjusted for lung function at age 8 years, height and age at time of outcome measurements, and potential confounders.Measurements and Main Results: Later pubertal age and greater peak velocity were associated with higher FEV1 and FVC at 24 years in both sexes. A 1-year increase in pubertal age was associated with a 263-ml higher FVC (95% confidence interval [CI], 167-360 ml) for males (n = 567) and 100-ml (95% CI, 50-150 ml) higher FVC for females (n = 990). A 1-cm/yr increase in peak velocity was associated with 145-ml (95% CI, 56-234 ml) and 50-ml (95% CI, 2-99 ml) increases in FVC for males and females, respectively. No associations were found with FEV1/FVC.Conclusions: Later onset and greater peak velocity of height growth in puberty are associated with increased FEV1 and FVC in young adults but there was no evidence of dysanapsis of pubertal lung growth.
Entities:
Keywords:
Avon Longitudinal Study of Parents and Children; SuperImposition by Translation and Rotation; maximal lung function; pubertal age; velocity of pubertal height growth
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