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Published on: March 25, 2011
Lung function in adults born preterm
Pieta Näsänen-Gilmore1, Marika Sipola-Leppänen1,2,3, Marjaana Tikanmäki1,2
1National Institute for Health and Welfare, Helsinki and Oulu, Finland.
Insights
Preterm birth, especially extreme preterm birth, is linked to reduced adult lung function. This association persists regardless of maternal or early-life factors, highlighting the long-term impact of premature birth on respiratory health.
Area of Science:
- Pulmonology
- Neonatology
- Public Health
Background:
- Very preterm birth (before 32 weeks gestational age) is a known risk factor for adult obstructed airflow.
- The long-term respiratory consequences of all preterm births (before 37 weeks gestational age) require further investigation.
Purpose of the Study:
- To determine if all preterm births are associated with poorer adult lung function.
- To assess if maternal, neonatal, or current life factors explain these associations.
Main Methods:
- Longitudinal study of individuals born between 1985-1989 (pre-surfactant era).
- Adult lung function assessed via spirometry at age 23.
- Detailed medical history including gestational age, maternal, and early-life factors collected.
Main Results:
- Preterm birth was associated with significantly poorer adult lung function (zFEV1, zFVC, zFEV1/FVC).
- The most severe impact was observed in extremely preterm infants (GA<28 weeks).
- Associations remained after adjusting for maternal and early-life factors.
Conclusions:
- Preterm birth is a significant risk factor for adult airflow limitation.
- The severity of lung function impairment is inversely related to gestational age at birth.
- Interventions to improve lung development in preterm infants are crucial.
Abstract:
Very preterm birth, before the gestational age (GA) of 32 weeks, increases the risk of obstructed airflow in adulthood. We examined whether all preterm births (GA<37 weeks) are associated with poorer adult lung function and whether any associations are explained by maternal, early life/neonatal, or current life factors. Participants of the ESTER Preterm Birth Study, born between 1985 and 1989 (during the pre-surfactant era), at the age of 23 years participated in a clinical study in which they performed spirometry and provided detailed medical history. Of the participants, 139 were born early preterm (GA<34 weeks), 239 late preterm (GA: 34-<37 weeks), and 341 full-term (GA≥37 weeks). Preterm birth was associated with poorer lung function. Mean differences between individuals born early preterm versus full-term were -0.23 standard deviation (SD) (95% confidence interval (CI): -0.40, -0.05)) for forced vital capacity z-score (zFVC), -0.44 SD (95% CI -0.64, -0.25) for forced expiratory volume z-score (zFEV1), and -0.29 SD (95% CI -0.47, -0.10) for zFEV1/FVC. For late preterm, mean differences with full-term controls were -0.02 SD (95% CI -0.17, 0.13), -0.12 SD (95% CI -0.29, 0.04) and -0.13 SD (95% CI -0.29, 0.02) for zFVC, zFEV1, and zFEV1/FVC, respectively. Examination of finer GA subgroups suggested an inverse non-linear association between lung function and GA, with the greatest impact on zFEV1 for those born extremely preterm. The subgroup means were GA<28 weeks: -0.98 SD; 28-<32 weeks: -0.29 SD; 32-<34 weeks: -0.44 SD; 34-<36 weeks: -0.10 SD; 36-<37weeks: -0.11 SD; term-born controls (≥37weeks): 0.02 SD. Corresponding means for zFEV1/FVC were -1.79, -0.44, -0.47, -0.48, -0.29, and -0.02. Adjustment for maternal pregnancy conditions and socioeconomic and lifestyle factors had no major impact on the relationship. Preterm birth is associated with airflow limitation in adult life. The association appears to be attributable predominantly to those born most immature, with only a modest decrease among those born preterm at later gestational ages.
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