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Published on: May 11, 2015
Sex-related differences in pulmonary physiologic outcome measures in a high-risk birth cohort
Amy O Thomas1, Daniel J Jackson1, Michael D Evans2
1Department of Pediatrics, University of Wisconsin School of Medicine and Public Health, Madison, Wis.
Insights
Prepubertal boys show lower airflow on spirometry, while girls exhibit greater lung ventilation defects. These sex-based differences in lung physiology may influence asthma development and progression.
Area of Science:
- Pediatric Respiratory Medicine
- Pulmonary Physiology
- Asthma Research
Background:
- Sex significantly impacts childhood wheezing illnesses and asthma prevalence.
- Understanding sex-specific mechanisms is crucial for asthma management.
- The Childhood Origins of ASThma (COAST) study investigates these relationships.
Purpose of the Study:
- To analyze longitudinal relationships between sex, lung function, and asthma in children.
- To identify sex-based differences in pulmonary physiology.
- To explore potential mechanisms underlying sex disparities in childhood asthma.
Main Methods:
- Longitudinal prospective follow-up of the COAST birth cohort from birth.
- Annual assessments including spirometry, fractional exhaled nitric oxide (Feno), mannitol challenge tests, and 3He gas MRI.
- Multivariate models analyzed sex differences, accounting for age, asthma diagnosis, and wheezing history.
Main Results:
- Girls had higher prebronchodilator FEV0.5/FVC; boys showed reduced postbronchodilator FEV0.5/FVC compared to girls.
- Girls exhibited greater ventilation defects on 3He MRI, suggesting potential subclinical air trapping.
- No significant sex differences were observed in mannitol test responses or Feno levels.
Conclusions:
- Prepubertal boys demonstrate lower spirometric airflow, while girls show increased 3He MRI ventilation defects.
- These findings suggest potential sex-specific subclinical lung abnormalities in prepubertal children.
- Further peripubertal follow-up is needed to determine if these differences influence asthma development and remission based on sex and age.
Background:
Sex influences the risk of wheezing illnesses and the prevalence of asthma throughout childhood.
Objective:
To better understand the mechanisms of these effects, we analyzed longitudinal relationships between sex, lung physiology, and asthma in the Childhood Origins of ASThma birth cohort study.
Methods:
Childhood Origins of ASThma birth cohort study children were followed prospectively from birth and assessed annually. Results of spirometry, fractional exhaled nitric oxide (Feno), mannitol provocation testing, and (3)He gas magnetic resonance imaging were assessed by sex using multivariate models including age, asthma diagnosis, and wheezing histories.
Results:
Girls had higher prebronchodilator forced expiratory volume in 0.5 seconds/forced vital capacity values than did boys (mean difference, 0.017; 95% CI, 0.000-0.034; P = .05) of equivalent age. Postbronchodilator findings were more pronounced, with boys demonstrating reduced forced expiratory volume in 0.5 seconds/forced vital capacity values than did girls of equivalent age (mean difference, 0.032; 95% CI, 0.014-0.049; P = .0005). Conversely, girls were noted to have higher ventilation defects on (3)He magnetic resonance imaging than did boys (P = .01). No differences were noted in the rate of positive responses to mannitol provocation or Feno measurements.
Conclusions:
Lower airflow values are present by spirometry for prepubertal boys than for age-matched girls; however, greater (3)He ventilation defects were noted in girls. This could represent a greater degree of subclinical air trapping in prepubertal girls because residual volumes are not detected on standard spirometric readings. No differences were noted between the 2 sexes with airway hyperresponsiveness (mannitol provocation testing) or inflammation (Feno). Prospective peripubertal follow-up will determine whether these differences persist or change with the de novo expression and remission of asthma based on sex and age.
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