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Real-time X-ray Imaging of Lung Fluid Volumes in Neonatal Mouse Lung
Published on: July 18, 2016
Breastfeeding, lung volumes and alveolar size at school-age
Cristian M Dogaru1, Manjith Narayanan2, Ben D Spycher3
1Institute of Social and Preventive Medicine, University of Bern , Switzerland ; Department of Children, Young People and Education , University Campus Suffolk , UK.
Insights
Breastfeeding did not significantly impact lung volumes in children overall. However, a trend suggested larger lung volumes and alveolar size in breastfed children whose mothers had asthma, warranting further study.
Area of Science:
- Pediatric Pulmonology
- Respiratory Physiology
- Environmental Health
Background:
- Previous research suggests breastfeeding may enhance lung development.
- Potential modification of breastfeeding effects by maternal asthma requires further investigation.
Purpose of the Study:
- To assess the association between breastfeeding and lung volumes and alveolar dimensions.
- To investigate if maternal asthma modifies the effects of breastfeeding on lung function.
Main Methods:
- Analysis of detailed lung function data (spirometry, plethysmography, 3He-MR ADC) in 111 children and young adults (11-21 years).
- Correlation of breastfeeding data (childhood questionnaires) with lung function parameters using linear regression.
- Control for potential confounding factors in statistical analysis.
Main Results:
- No significant association found between breastfeeding duration and lung volumes or alveolar dimensions in the overall cohort.
- A non-significant trend indicated larger lung volumes and alveolar size in breastfed children of mothers with asthma compared to non-breastfed children.
Conclusions:
- While this study did not confirm significant effects, the observed trend warrants further investigation.
- Larger sample sizes are needed to confirm potential public health implications of breastfeeding on lung development.
Background:
Previous studies found larger lung volumes at school-age in formerly breastfed children, with some studies suggesting an effect modification by maternal asthma. We wanted to explore this further in children who had undergone extensive lung function testing. The current study aimed to assess whether breastfeeding was associated with larger lung volumes and, if so, whether all compartments were affected. We also assessed association of breastfeeding with apparent diffusion coefficient (ADC), which measures freedom of gas diffusion in alveolar-acinar compartments and is a surrogate of alveolar dimensions. Additionally, we assessed whether these effects were modified by maternal asthma.
Methods:
We analysed data from 111 children and young adults aged 11-21 years, who had participated in detailed lung function testing, including spirometry, plethysmography and measurement of ADC of (3)Helium ((3)He) by MR. Information on breastfeeding came from questionnaires applied in early childhood (age 1-4 years). We determined the association between breastfeeding and these measurements using linear regression, controlling for potential confounders.
Results:
We did not find significant evidence for an association between duration of breastfeeding and lung volumes or alveolar dimensions in the entire sample. In breastfed children of mothers with asthma, we observed larger lung volumes and larger average alveolar size than in non-breastfed children, but the differences did not reach significance levels.
Conclusions:
Confirmation of effects of breastfeeding on lung volumes would have important implications for public health. Further investigations with larger sample sizes are warranted.
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