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Published on: February 9, 2022
Key spirometric determinants of future airflow obstruction in children with asthma
Francine M Ducharme1,2,3, Anna Smyrnova3, Melissa Yu3
1Department of Pediatrics, Faculty of Medicine, University of Montreal, Montreal, QC, Canada.
Insights
Children with asthma can predict future airflow obstruction (AO) using spirometry. Low forced expiratory volume in 1 second/forced vital capacity ratios and high FEV1 variation indicate increased AO risk.
Area of Science:
- Pediatric Pulmonology
- Respiratory Medicine
- Clinical Pediatrics
Background:
- Asthma in children can lead to progressive lung function impairment.
- Identifying early indicators of airflow obstruction (AO) is crucial for timely intervention.
Purpose of the Study:
- To determine the best spirometric predictors of subsequent airflow obstruction (AO) in pediatric asthma patients.
- To identify early signs of lung function decline in children with asthma.
Main Methods:
- Retrospective cohort studies of 509 children (aged 6-17) with asthma managed in tertiary clinics.
- Spirometry data analyzed to identify predictors of AO (FEV1/FVC ratio below lower limit of normal).
- Multivariable logistic regression and meta-analysis used to assess lung function parameters as predictors.
Main Results:
- 17% of children developed AO.
- Lower FEV1/FVC ratio independently increased AO likelihood by nearly 4-fold per z-score decrease (≥1 prior visit).
- Lower FEV1/FVC ratio and higher between-visit FEV1 variation independently increased AO likelihood (≥2 prior visits).
Conclusions:
- FEV1/FVC ratio within the low-normal range and high between-visit FEV1 variability are key spirometric indicators.
- These parameters can predict future lung function impairment in children with asthma before AO onset.
- Early identification of these spirometric markers can guide proactive asthma management.
Background:
There is increasing concern about children with asthma developing progressive lung function impairment. The objective of the present study was to identify the best spirometric determinants of subsequent development of airflow obstruction (AO) in children with asthma in the clinic setting.
Methods:
We assembled two retrospective cohort studies of children aged 6-17 years, managed in tertiary-care asthma clinics, with medical and drug coverage, and repeated spirometry testing. The primary outcome was AO, defined as pre-bronchodilation (pre-BD) forced expiratory volume in 1 s (FEV1)/forced vital capacity (FVC) ratio below the lower limit of normal (LLN). Multiple lung function parameters, prior to index visit, were adjusted for potential covariates/confounders in multivariable logistic regression models, by cohort and clinical scenario (≥1 versus ≥2 prior visits with spirometry); cohort estimates were meta-analysed using inverse-variance-weighted average.
Results:
Of 509 eligible children (mean age: 10 years), 17% subsequently developed AO. In patients with ≥1 prior visit, the likelihood of future AO independently increased by almost 4-fold (adjusted OR 3.91 (95% CI 2.54-6.01)) for every 1 z-score lower FEV1/FVC ratio. In patients with ≥2 prior visits, the likelihood of future AO increased by 3.31 (1.98-5.54) for every 1 z-score lower FEV1/FVC ratio at the last visit and by 1.50 (1.10-2.12) for every 1 z-score maximum between-visit variation in FEV1.
Interpretation:
Two spirometric parameters independently increased the likelihood of subsequently developing AO, namely FEV1/FVC in the low range of normal and high between-visit FEV1 variation, appearing as practical determinants of future impairment, before reaching the LLN.
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