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Assessment of Child Anthropometry in a Large Epidemiologic Study
Published on: February 2, 2017
Impact of childhood anthropometry trends on adult lung function
Sadasivam Suresh1, Michael O'Callaghan2, Peter D Sly3
1School of Population Health, University of Queensland, Brisbane, QLD, Australia; Mater Children's Hospital, Mater Research Institute, University of Queensland, Brisbane, QLD, Australia; Queensland Children's Medical Research Institute, University of Queensland, Brisbane, QLD, Australia.
Insights
Early life catch-up growth improves adult lung function. However, weight gain or obesity after age five negatively impacts respiratory health, highlighting critical developmental windows for lung development.
Area of Science:
- Pediatric Health
- Respiratory Medicine
- Growth and Development
Background:
- Poor fetal growth is linked to diminished respiratory function in adulthood.
- Limited understanding exists regarding childhood growth trends and Body Mass Index (BMI) effects on adult lung function.
Purpose of the Study:
- To investigate the impact of catch-up growth on adult lung function.
- To examine the relationship between childhood BMI trends and adult respiratory health.
Main Methods:
- Utilized prospective data from 1,740 participants in the Mater-University of Queensland Study of Pregnancy birth cohort.
- Assessed spirometry at 21 years, with available data on birth weight and BMI at ages 5, 14, and 21.
- Employed regression analyses to evaluate catch-up growth and BMI trends' effects on lung function.
Main Results:
- Catch-up growth from birth to 5 years correlated with higher forced vital capacity (FVC) and forced expiratory volume in 1 second (FEV1) at age 21.
- Individuals with intrauterine growth retardation showed improved lung function if they experienced catch-up growth within the first 5 years.
- Increasing BMI positively correlated with lung function at age 5, but obesity onset after age 5 was associated with decreased lung function.
Conclusions:
- Early-life catch-up growth positively influences adult lung function.
- Weight gain or obesity developing after age 5 has an adverse effect on adult respiratory health.
Background:
Poor fetal growth rate is associated with lower respiratory function; however, there is limited understanding of the impact of growth trends and BMI during childhood on adult respiratory function.
Methods:
The current study data are from the Mater-University of Queensland Study of Pregnancy birth cohort. Prospective data were available from 1,740 young adults who performed standard spirometry at 21 years of age and whose birth weight and weight, height, and BMI at 5, 14, and 21 years of age were available. Catch-up growth was defined as an increase of 0.67 Z score in weight between measurements. The impact of catch-up growth on adult lung function and the relationship between childhood BMI trends and adult lung function were assessed using regression analyses.
Results:
Lung function was higher at 21 years in those demonstrating catch-up growth from birth to 5 years (FVC, men: 5.33 L vs 5.54 L; women: 3.78 L vs 4.03 L; and FEV1, men: 4.52 L/s vs 4.64 L/s; women: 3.31 L/s vs 3.45 L/s). Subjects in the lowest quintile of birth (intrauterine growth retardation) also showed improved lung function if they had catch-up growth in the first 5 years of life. There was a positive correlation between increasing BMI and lung function at 5 years of age. However, in the later measurements when BMI increased into the obese category, a drop in lung function was observed.
Conclusions:
These data show evidence for a positive contribution of catch-up growth in early life to adult lung function. However, if weight gain or onset of obesity occurs after 5 years of age, an adverse impact on adult lung function is noted.
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