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Author Spotlight: Enhancing Diagnostic Strategies and Biomarker Development for Comprehensive Lung Function Analysis
Published on: August 9, 2024
Pulmonary function tests in extremely low gestational age infants at one year of age
Judith A Voynow1, Rui Feng2, Clement L Ren3,4,5
1Division of Pediatric Pulmonology, Children's Hospital of Richmond at VCU, Richmond, Virginia, USA.
Insights
Extremely low gestational age newborns with certain neonatal factors and post-NICU respiratory issues show poorer lung function at one year. Male sex, African American race, and NICU respiratory support are linked to reduced lung function in infants.
Area of Science:
- Neonatology
- Pediatric Pulmonology
- Respiratory Medicine
Background:
- Identifying factors affecting pulmonary outcomes in extremely low gestational age newborns (ELGANs) is crucial for improving long-term respiratory health.
- Pulmonary morbidity and abnormal lung function at one year of age are significant challenges for ELGAN survivors.
Purpose of the Study:
- To determine demographic and clinical factors associated with abnormal infant pulmonary function tests (iPFTs) at one year corrected age in ELGANs.
- To investigate the impact of neonatal and post-discharge exposures on lung function in ELGANs.
Main Methods:
- Infant pulmonary function tests (iPFTs) were conducted on 135 participants in the Prematurity and Respiratory Outcomes Program (PROP) subcohort.
- Demographic data, Neonatal Intensive Care Unit (NICU) clinical care, and post-NICU exposures were analyzed for associations with iPFT results.
Main Results:
- Male sex, African American race, longer ventilatory support, systemic steroid exposure, and low weight (<10th percentile) at 36 weeks postmenstrual age were associated with decreased FEV0.5 and FEF75.
- Supplemental oxygen and bronchopulmonary dysplasia were not significantly associated with abnormal lung function.
- Post-NICU respiratory medication use, technology dependence, or hospitalizations were the only post-NICU factors linked to reduced lung function.
Conclusions:
- Neonatal demographic factors, NICU respiratory support, and post-NICU medical utilization for respiratory issues are strongly associated with diminished lung function at one year in ELGANs.
- Early identification and intervention for these factors may improve long-term pulmonary outcomes in ELGANs.
Rationale:
Identifying neonatal and post-discharge exposures among extremely low gestational age newborns (ELGANs) that drive increased pulmonary morbidity and abnormal lung function at 1 year of age proves challenging.
Objective:
The NIH-sponsored Prematurity and Respiratory Outcomes Program (PROP), evaluated infant pulmonary function tests (iPFTs) at 1 year corrected age to determine which demographic and clinical factors are associated with abnormal lung function.
Methods:
iPFTs were performed on a PROP subcohort of 135 participants following Institutional Review Board (IRB)-approved written consent. Demographic data, Neonatal Intensive Care Unit (NICU) clinical care, and post-NICU exposures were analyzed for association with iPFTs.
Main Results:
A significant decrease in forced expiratory volume at 0.5 s (FEV0.5 ) and/or forced expiratory flows at 75% of forced vital capacity (FEF75 ), were associated with male sex and African American race. Clinical factors including longer duration of ventilatory support, exposure to systemic steroids, and weight less than the 10th percentile at 36 weeks postmenstrual age were also associated with airflow obstruction, whereas supplemental oxygen requirement and bronchopulmonary dysplasia were not. Additionally, the need for respiratory medications, technology, or hospitalizations during the first year, ascertained by a quarterly survey, were the only post-NICU factors associated with decreased FEV0.5 and FEF75 . Only 7% of infants had reversible airflow obstruction.
Conclusions:
Neonatal demographic factors, respiratory support in the NICU, and a history of greater post-NICU medical utilization for respiratory disease had the strongest association with lower lung function at 1 year in ELGANs.
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