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Circulating CC16 and Asthma: A Population-based, Multicohort Study from Early Childhood through Adult Life
Nipasiri Voraphani1, Debra A Stern1, Julie G Ledford1
1Asthma and Airway Disease Research Center, University of Arizona, Tucson, Arizona.
Insights
Low levels of club cell secretory protein (CC16) are linked to an increased risk and persistence of asthma symptoms throughout life. This suggests CC16 may protect against asthma development and progression.
Area of Science:
- Respiratory Medicine
- Immunology
- Epidemiology
Background:
- Club cell secretory protein (CC16) is an anti-inflammatory protein found in airways.
- Previous studies suggest CC16 deficiency is linked to lung function deficits.
- The precise role of CC16 in asthma pathogenesis remains unclear.
Purpose of the Study:
- To investigate the longitudinal association between circulating CC16 levels and active asthma from childhood to adulthood.
- To determine if early childhood CC16 levels can predict the long-term clinical course of childhood asthma.
Main Methods:
- Analysis of three population-based birth cohorts (Tucson, Stockholm, Manchester) with extensive longitudinal data.
- Assessment of CC16 levels in relation to asthma diagnosis and symptom frequency across different age groups.
- Examination of CC16's association with asthma persistence in children diagnosed with asthma.
Main Results:
- CC16 deficits were consistently associated with an increased risk of asthma across all cohorts.
- The association was stronger for asthma with frequent symptoms and independent of lung function.
- Children with the lowest CC16 levels showed a significantly higher risk of persistent asthma symptoms into adulthood.
Conclusions:
- Lower circulating CC16 levels are linked to the presence and persistence of frequent asthma symptoms from childhood to mid-adulthood.
- CC16 may play a protective role in asthma.
- CC16 levels could potentially be used for asthma risk stratification.
Abstract:
Rationale: Club cell secretory protein (CC16) is an antiinflammatory protein highly expressed in the airways. CC16 deficiency has been associated with lung function deficits, but its role in asthma has not been established conclusively. Objectives: To determine 1) the longitudinal association of circulating CC16 with the presence of active asthma from early childhood through adult life and 2) whether CC16 in early childhood predicts the clinical course of childhood asthma into adult life. Methods: We assessed the association of circulating CC16 and asthma in three population-based birth cohorts: the Tucson Children's Respiratory Study (years 6-36; total participants, 814; total observations, 3,042), the Swedish Barn/Children, Allergy, Milieu, Stockholm, Epidemiological survey (years 8-24; total participants, 2,547; total observations, 3,438), and the UK Manchester Asthma and Allergy Study (years 5-18; total participants, 745; total observations, 1,626). Among 233 children who had asthma at the first survey in any of the cohorts, baseline CC16 was also tested for association with persistence of symptoms. Measurements and Main Results: After adjusting for covariates, CC16 deficits were associated with increased risk for the presence of asthma in all cohorts (meta-analyzed adjusted odds ratio per 1-SD CC16 decrease, 1.20; 95% confidence interval [CI], 1.12-1.28; P < 0.0001). The association was particularly strong for asthma with frequent symptoms (meta-analyzed adjusted relative risk ratio, 1.40; 95% CI, 1.24-1.57; P < 0.0001), was confirmed for both atopic and nonatopic asthma, and was independent of lung function impairment. After adjustment for known predictors of persistent asthma, children with asthma in the lowest CC16 tertile had a nearly fourfold increased risk for having frequent symptoms persisting into adult life compared with children with asthma in the other two CC16 tertiles (meta-analyzed adjusted odds ratio, 3.72; 95% CI, 1.78-7.76; P < 0.0001). Conclusions: Circulating CC16 deficits are associated with the presence of asthma with frequent symptoms from childhood through midadult life and predict the persistence of asthma symptoms into adulthood. These findings support a possible protective role of CC16 in asthma and its potential use for risk stratification.
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