Moderate preterm birth affects right ventricular structure and function and pulmonary artery blood flow in adult
Marshall M Mrocki1, Vivian B Nguyen1, Paul Lombardo2
1Biomedicine Discovery Institute and the Department of Anatomy and Developmental Biology, Monash University, Clayton, Victoria, Australia.
Insights
Preterm birth can lead to a thinner right ventricle wall and reduced heart muscle cells in adulthood. This cellular change impairs blood flow to the lungs, impacting cardiovascular health long-term.
Area of Science:
- Cardiovascular Physiology
- Developmental Biology
- Neonatal Medicine
Background:
- Preterm birth exposes the immature heart to circulatory changes, potentially causing abnormal cardiac remodeling.
- Previous MRI studies show ventricular abnormalities in preterm-born adults, but cellular mechanisms remain unclear.
Purpose of the Study:
- To investigate the impact of moderate preterm birth on right ventricular (RV) cellular structure and function in adult sheep.
Main Methods:
- Sheep were delivered moderately preterm or at term.
- Adult sheep underwent measurements of blood pressure, heart rate, pulmonary artery flow, and RV function.
- RV cardiomyocyte number, size, nuclearity, and fibrosis were assessed using stereological methods.
Main Results:
- No significant differences in blood pressure, heart rate, or RV stroke volume/output were observed.
- Preterm sheep exhibited reduced RV wall thickness and significantly lower peak systolic blood flow in the pulmonary artery.
- A significant reduction in RV cardiomyocyte number was found in preterm-born sheep.
Conclusions:
- Moderate preterm birth adversely affects RV cellular structure and pulmonary artery blood flow into adulthood.
- Reduced cardiomyocyte number and impaired blood flow may negatively impact cardiac and respiratory function, particularly under stress.
Key Points:
Preterm birth occurs when the heart muscle is immature and ill-prepared for the changes in heart and lung function at birth. MRI imaging studies show differences in the growth and function of the heart of young adults born preterm, with the effects more pronounced in the right ventricle. The findings of this study, conducted in sheep, showed that following moderate preterm birth the right ventricular wall was thinner in adulthood, with a reduction in the number and size of the heart muscle cells; in addition, there was impaired blood flow in the main artery leading from the right ventricle to the lungs. The findings indicate that being born only a few weeks early adversely affects the cellular structure of the right ventricle and blood flow to the lungs in adulthood. The reduced number of heart muscle cells has the potential to deleteriously affect right ventricular growth potential and function.
Abstract:
Preterm birth prematurely exposes the immature heart to the haemodynamic transition at birth, which has the potential to induce abnormal cardiac remodelling. Magnetic resonance imaging studies in young adults born preterm have shown abnormalities in the gross structure of the ventricles (particularly the right ventricle; RV), but the cellular basis of these alterations is unknown. The aim of this study, conducted in sheep, was to determine the effect of moderate preterm birth on RV cellular structure and function in early adulthood. Male singleton lambs were delivered moderately preterm (132 ± 1 days; n = 7) or at term (147 ± 1 days; n = 7). At 14.5 months of age, intra-arterial blood pressure and heart rate were measured. Pulmonary artery diameter and peak systolic blood flow were determined using ultrasound imaging, and RV stroke volume and output calculated. Cardiomyocyte number, size, nuclearity and levels of cardiac fibrosis were subsequently assessed in perfusion-fixed hearts using image analysis and stereological methods. Blood pressure (systolic, diastolic and mean), heart rate, levels of myocardial fibrosis and RV stroke volume and output were not different between groups. There was, however, a significant reduction in RV wall thickness in preterm sheep, and this was accompanied by a significant reduction in peak systolic blood flow in the pulmonary artery and in RV cardiomyocyte number. Cellular changes in the RV wall and reduced pulmonary artery blood flow following preterm birth have the potential to adversely affect cardiac and respiratory haemodynamics, especially when the cardiovascular system is physiologically or pathologically challenged.
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