Physiological aspects of cardiopulmonary dysanapsis on exercise in adults born preterm
Joseph W Duke1, Adam J Lewandowski2, Steven H Abman3,4
1Department of Biological Sciences, Northern Arizona University, Flagstaff, Arizona, USA.
Insights
Preterm birth survivors often have reduced exercise capacity due to discordant growth (dysanapsis) in respiratory and cardiovascular systems. This leads to airflow limitation and cardiac abnormalities, potentially accelerating age-related decline.
Area of Science:
- Neonatology
- Pulmonology
- Cardiology
- Exercise Physiology
Background:
- Improved perinatal care increases survival of extremely preterm infants.
- Bronchopulmonary dysplasia incidence remains unchanged, indicating persistent chronic lung disease.
- Long-term follow-up reveals lasting respiratory, cardiovascular, and cardiopulmonary dysfunction in preterm adults, impacting exercise capacity.
Purpose of the Study:
- To investigate the hypothesis that respiratory and cardiovascular system dysanapsis (discordant growth) is a key factor in reduced exercise capacity in preterm adults.
- To elucidate the structural and functional basis for cardiopulmonary limitations observed in individuals born preterm.
Main Methods:
- Review and synthesis of existing literature on the long-term respiratory, cardiovascular, and cardiopulmonary function in adults born preterm.
- Analysis of specific physiological abnormalities, including lung volumes, airway dimensions, cardiac chamber size, and pulmonary hypertension during exercise.
Main Results:
- Adults born preterm exhibit normal lung volumes but smaller airways, causing expiratory airflow limitation and altered respiratory mechanics without compromising gas exchange efficiency.
- These individuals have normal total cardiac size but smaller cardiac chambers.
- Pulmonary hypertension during exercise is observed in some cases, indicating reduced pulmonary vascular capacity relative to cardiac output.
Conclusions:
- Systemic dysanapsis is a plausible explanation for the observed respiratory, cardiovascular, and cardiopulmonary limitations in preterm adults.
- These developmental abnormalities may accelerate age-related decline in exercise capacity.
- Longitudinal and interventional studies are needed to understand the lifelong impact of preterm birth on exercise capacity.
Abstract:
Progressive improvements in perinatal care and respiratory management of preterm infants have resulted in increased survival of newborns of extremely low gestational age over the past few decades. However, the incidence of bronchopulmonary dysplasia, the chronic lung disease after preterm birth, has not changed. Studies of the long-term follow-up of adults born preterm have shown persistent abnormalities of respiratory, cardiovascular and cardiopulmonary function, possibly leading to a lower exercise capacity. The underlying causes of these abnormalities are incompletely known, but we hypothesize that dysanapsis, i.e. discordant growth and development, in the respiratory and cardiovascular systems is a central structural feature that leads to a lower exercise capacity in young adults born preterm than those born at term. We discuss how the hypothesized system dysanapsis underscores the observed respiratory, cardiovascular and cardiopulmonary limitations. Specifically, adults born preterm have: (1) normal lung volumes but smaller airways, which causes expiratory airflow limitation and abnormal respiratory mechanics but without impacts on pulmonary gas exchange efficiency; (2) normal total cardiac size but smaller cardiac chambers; and (3) in some cases, evidence of pulmonary hypertension, particularly during exercise, suggesting a reduced pulmonary vascular capacity despite reduced cardiac output. We speculate that these underlying developmental abnormalities may accelerate the normal age-associated decline in exercise capacity, via an accelerated decline in respiratory, cardiovascular and cardiopulmonary function. Finally, we suggest areas of future research, especially the need for longitudinal and interventional studies from infancy into adulthood to better understand how preterm birth alters exercise capacity across the lifespan.
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