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Lung function in young adulthood in relation to moderate-to-late preterm birth
Björn Lundberg1,2, Simon Kebede Merid1, Petra Um-Bergström1,2
1Department of Clinical Science and Education, Södersjukhuset, Karolinska Institutet, Stockholm, Sweden.
Insights
Moderate-to-late preterm birth is linked to lower lung function (FEV1) in males by age 24. Females show lung function catch-up by young adulthood, with distinct preterm lung function phenotypes identified.
Area of Science:
- Pulmonary Medicine
- Pediatric Pulmonology
- Developmental Biology
Background:
- Moderate-to-late preterm birth (32 to <37 weeks gestation) is associated with adolescent lung function deficits.
- Limited data exists on adult lung function and detailed physiological phenotyping in this population.
- Investigating long-term lung function trajectories is crucial for understanding health outcomes.
Purpose of the Study:
- To examine lung function development from adolescence to young adulthood in moderate-to-late preterm individuals.
- To provide comprehensive physiological phenotyping beyond spirometry.
- To identify distinct lung function patterns in young adults born moderate-to-late preterm.
Main Methods:
- Analysis of lung function data (spirometry, FENO, MBNW) from the BAMSE cohort at 16 and 24 years.
- Inclusion of individuals born moderate-to-late preterm (n=110) and term (n=1895).
- Regression models adjusted for sex and smoking; latent class analysis for phenotyping.
Main Results:
- Males born moderate-to-late preterm exhibited lower forced expiratory volume in 1 second (FEV1) at age 24.
- Females demonstrated significant FEV1 catch-up between ages 16 and 24.
- Identified lung function phenotypes: "asthma-like", "dysanapsis-like", and "preterm reference"; maternal overweight linked to "asthma-like" phenotype.
Conclusions:
- Males born moderate-to-late preterm show impaired peak lung function (FEV1).
- Females born moderate-to-late preterm experience lung function catch-up by young adulthood.
- Diverse lung function impairment phenotypes exist in individuals born moderate-to-late preterm.
Background:
Moderate-to-late preterm birth (32 to <37 weeks of gestation) has been associated with impaired lung function in adolescence, but data in adulthood and physiological phenotyping beyond spirometry are scarce. We aimed to investigate lung function development from adolescence into young adulthood and to provide physiological phenotyping in individuals born moderate-to-late preterm.
Methods:
Lung function data from individuals born moderate-to-late preterm (n=110) and term (37 to <42 weeks of gestation, n=1895) in the Swedish birth cohort BAMSE were used for analysis and included dynamic spirometry, fractional exhaled nitric oxide and multiple breath nitrogen wash-out. Data from 16- and 24-year follow-ups were analysed using regression models stratified on sex and adjusted for smoking. Data-driven latent class analysis was used to phenotype moderate-to-late preterm individuals at 24 years, and groups were related to background factors.
Results:
Males born moderate-to-late preterm had lower forced expiratory volume in 1 s (FEV1) at 24 years of age (-0.28 z-score, p=0.045), compared to males born term. In females, no difference was seen at 24 years, partly explained by a significant catch up in FEV1 between 16 and 24 years (0.18 z-score, p=0.01). Lung function phenotypes described as "asthma-like", "dysanapsis-like" and "preterm reference" were identified within the preterm group. Maternal overweight in early pregnancy was associated with "asthma-like" group membership (OR 3.59, p=0.02).
Conclusion:
Our results show impaired FEV1 at peak lung function in males born moderate-to-late preterm, while females born moderate-to-late preterm had significant catch up between the ages of 16 and 24 years. Several phenotypes of lung function impairment exist in individuals born moderate-to-late preterm.
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