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Tracking of lung function from 10 to 35 years after being born extremely preterm or with extremely low birth weight
Tonje Bårdsen1,2, Ola Drange Røksund1,3,4, Merete Røineland Benestad1,5
1Department of Pediatrics, Haukeland University Hospital, Bergen, Norway.
Insights
Extremely preterm infants show reduced lung function compared to term-born individuals throughout adulthood. However, lung function trajectories improved for those born in later decades, suggesting better long-term outcomes.
Area of Science:
- Pulmonary medicine
- Neonatology
- Pediatric pulmonology
Background:
- Lifelong pulmonary outcomes for extremely preterm or low birth weight infants are not well understood.
- Major advancements in perinatal care may influence long-term lung health trajectories.
Purpose of the Study:
- To describe lung function trajectories from age 10 to 35 years in extremely preterm-born individuals.
- To investigate cohort effects on lung function over time, considering changes in perinatal care.
Main Methods:
- Repeated spirometry in three population-based cohorts of extremely preterm-born infants (born ≤28 weeks gestation or ≤1000g) and term-born controls.
- Longitudinal analysis using mixed-effects models from age 10 to 35 years.
- Stratification by bronchopulmonary dysplasia (BPD) and birth decade (1982-85, 1991-92, 1999-2000).
Main Results:
- Extremely preterm-born individuals had lower forced expiratory volume in 1 second (FEV1) z-scores than term-born controls, except in younger cohorts without BPD.
- FEV1 trajectories were parallel between groups, including during the 25-35 year period of age-related lung function decline.
- 30% of extremely preterm-born individuals met COPD criteria versus 5% of term-born controls.
- Lung function deficits improved with each successive birth decade.
Conclusions:
- Lung function in extremely preterm survivors remains below term-born trajectories into adulthood.
- Deficits in lung function are persistent but show improvement across birth cohorts from 1980-2000.
- Earlier improvements in perinatal care correlate with better long-term pulmonary outcomes.
Background:
Lifelong pulmonary consequences of being born extremely preterm or with extremely low birth weight remain unknown. We aimed to describe lung function trajectories from 10 to 35 years of age for individuals born extremely preterm, and address potential cohort effects over a period that encompassed major changes in perinatal care.
Methods:
We performed repeated spirometry in three population-based cohorts born at gestational age ≤28 weeks or with birth weight ≤1000 g during 1982-85, 1991-92 and 1999-2000, referred to as extremely preterm-born, and in term-born controls matched for age and gender. Examinations were performed at 10, 18, 25 and 35 years. Longitudinal data were analysed using mixed models regression, with the extremely preterm-born stratified by bronchopulmonary dysplasia (BPD).
Results:
We recruited 148/174 (85%) eligible extremely preterm-born and 138 term-born. Compared with term-born, the extremely preterm-born had lower z-scores for forced expiratory volume in 1 s (FEV1) at most assessments, the main exceptions were in the groups without BPD in the two youngest cohorts. FEV1 trajectories were largely parallel for the extremely preterm- and term-born, also during the period 25-35 years that includes the onset of the age-related decline in lung function. Extremely preterm-born had lower peak lung function than term-born, but z-FEV1 values improved for each consecutive decade of birth (p=0.009). More extremely preterm-than term-born fulfilled the spirometry criteria for chronic obstructive pulmonary disease, 44/148 (30%) vs 7/138 (5%), p<0.001.
Conclusions:
Lung function after extremely preterm birth tracked in parallel, but significantly below the trajectories of term-born from 10 to 35 years, including the incipient age-related decline from 25 to 35 years. The deficits versus term-born decreased with each decade of birth from 1980 to 2000.
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