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Reduced Exercise Capacity in Adults Born at Very Low Birth Weight: A Population-based Cohort Study
Jun Yang1, Michael J Epton2, Sarah L Harris3
1Respiratory Physiology Laboratory.
Insights
Adults who experienced very low birth weight (VLBW) have reduced exercise capacity due to impaired lung function, altered heart structure, and lower physical activity. Bronchopulmonary dysplasia (BPD) did not impact adult exercise capacity in this study.
Area of Science:
- Cardiology
- Pulmonology
- Pediatrics
- Exercise Physiology
Background:
- Limited population-based data exist on long-term exercise capacity in very low birth weight (VLBW) survivors.
- Bronchopulmonary dysplasia (BPD) is a common complication of prematurity, but its impact on adult exercise capacity is not well-defined.
Purpose of the Study:
- To compare exercise capacity in a national cohort of VLBW adults with term-born controls.
- To identify factors contributing to differences in exercise capacity between VLBW survivors and controls.
Main Methods:
- A national cohort of 228 VLBW survivors and 100 term-born controls aged 26-30 years underwent cardiopulmonary exercise testing.
- Lung function tests and echocardiography assessed cardiac structure and function.
- Self-reported physical activity levels were collected.
Main Results:
- VLBW adults exhibited significantly reduced peak oxygen uptake, work rate, and oxygen pulse, along with an earlier anaerobic threshold compared to controls.
- VLBW survivors demonstrated reduced physical activity, impaired lung function (reduced FEV1, FEV1/FVC, Dlco), and altered cardiac structure and function.
- Reduced lung function and cardiac structure/function, along with lower physical activity, explained most of the exercise capacity differences.
Conclusions:
- Adults with a history of VLBW have significantly reduced exercise capacity.
- Impaired lung function, altered cardiac structure and function, and reduced physical activity collectively contribute to decreased exercise capacity in VLBW survivors.
- Perinatal factors, including BPD, were not independently associated with reduced adult exercise capacity.
Abstract:
Rationale: Population-based data regarding the consequences of very low birth weight (VLBW) and bronchopulmonary dysplasia (BPD) on adult exercise capacity are limited. Objectives: To compare exercise capacity in a national VLBW cohort with term-born controls and explore factors contributing to the differences. Methods: At 26-30 years of age, 228 VLBW survivors and 100 controls underwent lung function tests, cardiopulmonary exercise testing, and assessment of resting cardiac structure and function using echocardiography. Data on self-reported physical activity were collected. Measurements and Main Results: Compared with controls, adults with VLBW demonstrated reduced oxygen uptake, work rate, and oxygen pulse at peak exercise (9.3%, 10.7%, and 10.8% lower, respectively) and earlier anaerobic threshold (all P < 0.0001), with all mean values within normal range. VLBW survivors showed reduced physical activity, impaired lung function (reduced FEV1, FEV1/FVC, and DlCO), altered left ventricular structure and function (reduced mass, size, stroke volume, and cardiac output), and reduced right atrial and ventricular size. Adjustment for the combination of three sets of covariates (physical activity with body mass index, lung function, and cardiac structure and function) explained most of the exercise group differences. Beyond the effects of physical activity and body mass index, lung function and cardiac structure and function contributed approximately equally. BPD with other prematurity-related perinatal factors (ventilation, antenatal steroids, extremely low birth weight, and extreme preterm) were not associated with a reduced exercise capacity. Conclusions: Exercise capacity was significantly reduced in adults with VLBW, which we speculate is from combined effects of impaired lung function, altered heart structure and function, and reduced physical activity. Perinatal factors including BPD were not associated with a reduced exercise capacity.
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