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Published on: April 28, 2016
Airway function in infancy is linked to airflow measurements and respiratory symptoms from childhood into adulthood
Louisa Owens1,2, Ingrid A Laing3,4, Guicheng Zhang5,6
1School of Medicine University of Western Australia, Perth, Australia.
Insights
Infant lung function measured at 1 month (V'maxFRC) predicts adult lung function and respiratory health up to age 24. Early life exposures like maternal asthma and smoking impact lung development, highlighting the need for interventions to improve lifelong respiratory outcomes.
Area of Science:
- Pulmonary Medicine
- Pediatric Respiratory Research
- Longitudinal Health Studies
Background:
- Poor adult lung function is increasingly linked to early life determinants.
- Understanding early predictors is crucial for lifelong respiratory health.
- Infant lung function may establish a stable airway framework.
Purpose of the Study:
- Identify factors associated with early infant lung function.
- Quantify the link between infant and adult lung function.
- Determine environmental and inherited predictors of lung function post-natally.
Main Methods:
- Longitudinal study of 253 individuals recruited antenatally.
- Lung function and allergy testing from 1 month to 24 years.
- Linear mixed models assessed early life predictors of spirometry.
Main Results:
- Infant V'maxFRC correlated with adult FEF25-75%, FEV1/FVC, and airway responsiveness.
- Maternal asthma and smoking in pregnancy associated with lower adult FEV1.
- Low infant V'maxFRC predicted asthma and wheeze persisting to age 24.
Conclusions:
- Lung airflow measurements track from birth into early adulthood.
- Lower infant airway function is clinically important for adult respiratory symptoms.
- Antenatal and early life exposures require management to reduce lifelong respiratory compromise.
Introduction:
Increasing evidence suggests that poor lung function in adulthood is determined very early in life. Our study aims were: (1) identify factors associated with early infant lung function; (2) quantify the link between early infant lung function and early adult lung function; and (3) identify environmental and inherited factors which predict lung function throughout the post-natal growth period.
Methods:
In this longitudinal study, 253 individuals were recruited antenatally. Lung function and allergy testing occurred at 1, 6, 12 months, 6, 11, 18, and 24 years of age. The relationship between lung function at 1 month (V'maxFRC) and spirometry variables at each follow-up was evaluated. Early life predictors of spirometry were assessed longitudinally using linear mixed models.
Results:
V'maxFRC correlated positively with FEF25-75% at every assessment from 6 to 24 years and FEV1 /FVC at 11 and 24 years and inversely with airway responsiveness at 6 and 18 years. Maternal asthma and smoking in pregnancy were associated with lower FEV1 from 6 to 24 years (-99 mL, P = 0.03; -77 mL, P = 0.045 respectively). Lower V'maxFRC at 1 month was associated with asthma and wheeze through to 24 years.
Conclusion:
Lung airflow measurements track from birth into early adulthood, suggesting a permanent and stable airway framework is laid down in the antenatal period. Lower infant airway function is associated with respiratory symptoms into adulthood, indicating the link is clinically important. Antenatal and early life exposures must be addressed in order to maximize airway growth and reduce lifelong respiratory compromise.
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