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Published on: February 9, 2022
Lung function deficits and bronchodilator responsiveness at 12 years of age in children born very preterm compared
Cecilia Hagman1, Lars J Björklund1, Leif Bjermer2
1Department of Clinical Sciences, Lund, Pediatrics, Lund University and Skåne University Hospital, Lund, Sweden.
Insights
Children born very preterm show significant lung function deficits at school age, with airway obstruction largely reversible by bronchodilators. Bronchopulmonary dysplasia had minimal impact on lung function compared to preterm birth itself.
Area of Science:
- Pediatric Pulmonology
- Neonatology
- Respiratory Medicine
Background:
- Very preterm birth is linked to long-term lung function impairment.
- Comprehensive lung function assessment in very preterm infants at school age is limited.
Purpose of the Study:
- To assess school-age lung function in very preterm infants compared to term controls.
- To investigate the impact of bronchopulmonary dysplasia (BPD), sex, and bronchodilator response on lung function.
Main Methods:
- 136 very preterm children (85 with BPD, 51 without) and 56 term controls underwent spirometry, body plethysmography, impulse oscillometry, diffusion capacity, and multiple breath washout at age 12.
- Tests were performed before and after bronchodilator inhalation.
Main Results:
- Very preterm children exhibited more airway symptoms, asthma, airflow limitation (lower FEV1, FEV1/FVC), and higher airway resistance than term controls.
- Air trapping and lung clearance index were elevated in very preterm children; diffusion capacity was reduced, particularly in those with BPD.
- Preterm boys showed greater lung function deficits than preterm girls; airway obstruction was largely reversible with bronchodilators.
Conclusions:
- Children born very preterm have widespread lung function deficits at age 12 compared to term-born children.
- Bronchopulmonary dysplasia had a minor effect on lung function compared to the impact of preterm birth.
- Airway obstruction in very preterm children significantly improves after bronchodilator use.
Introduction:
Very preterm birth is associated with lung function impairment later in life, but several aspects have not been studied. We aimed to comprehensively assess lung function at school age in very preterm infants and term controls, with special emphasis on bronchopulmonary dysplasia (BPD), sex, and bronchodilator response.
Methods:
At 12 years of age, 136 children born very preterm (85 with and 51 without BPD) and 56 children born at term performed spirometry, body plethysmography, impulse oscillometry, measurement of diffusion capacity, and multiple breath washout, before and after bronchodilator inhalation.
Results:
Airway symptoms and a diagnosis of asthma were more common in children born very preterm. These children had more airflow limitation, seen as lower forced expiratory volume in 1 s (FEV1 ) (p < .001), FEV1 /forced vital capacity (FVC) (p = .011), and mean forced expiratory flow between 25% and 75% of FVC (p < .001), and a higher total and peripheral airway resistance compared with term-born controls. There was no difference in total lung capacity but air trapping and lung clearance index were higher in children born very preterm. Diffusion capacity was lower in children born very preterm, especially in those with a diagnosis of BPD. In most other tests, the differences between preterm-born children with or without BPD were smaller than between children born preterm versus at term. Boys born preterm had more lung function deficits than preterm-born girls. In children born very preterm, airway obstruction was to a large extent reversible.
Conclusion:
At 12 years of age, children born very preterm had lower lung function than children born at term in most aspects and there was only little difference between children with or without BPD. Airway obstruction improved markedly after bronchodilator inhalation.
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