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Published on: May 3, 2018
Blood pressure and vascular alterations with growth in childhood
Stefano Masi1, Alexander Jones, Marietta Charakida
1Department of Internal Medicine, University of Pisa, Italy.
Insights
Childhood growth patterns, including prenatal and postnatal development, significantly impact cardiovascular disease risk. Early detection of arterial changes in children is crucial for preventing adult heart disease.
Area of Science:
- Cardiovascular Science
- Developmental Biology
- Pediatric Health
Background:
- Atherosclerosis has a long preclinical phase influenced by genetics and environment.
- Childhood arterial alterations precede clinical cardiovascular (CV) disease symptoms.
- Understanding early CV disease development is key to lifelong health.
Purpose of the Study:
- To review evidence on fetal programming and growth acceleration hypotheses for adult CV disease.
- To examine obesity-related vascular changes and their impact on future CV risk.
- To summarize non-invasive methods for investigating early CV disease development in children.
Main Methods:
- Review of existing literature on fetal programming and growth acceleration.
- Analysis of studies linking prenatal and postnatal growth to CV risk.
- Summary of non-invasive techniques for assessing arterial health in children.
Main Results:
- Prenatal growth (e.g., low birth weight) and early postnatal growth acceleration are linked to future CV disease risk.
- Childhood obesity is associated with early vascular alterations and increased CV risk.
- Non-invasive tests can identify arterial changes in children, aiding risk assessment.
Conclusions:
- Prenatal and postnatal growth patterns significantly influence adult cardiovascular health.
- Childhood obesity presents a critical window for intervention to mitigate CV risk.
- Non-invasive methods offer valuable tools for early detection and prevention of CV disease in pediatric populations.
Abstract:
The long preclinical phase of atherosclerosis involves the interaction of genetic and environmental factors that modulate the progression of disease from early life. A variety of noninvasive tests have been used to study the arterial phenotype of childhood, allowing identification of arterial alterations long before clinical symptoms of cardiovascular (CV) disease become apparent. These techniques have improved our understanding of the evolution of atherosclerosis, indentifying three major developmental factors which influence the future risk of CV disease in childhood: prenatal growth, early postnatal growth and childhood obesity. Specific changes in arterial properties and increased values of blood pressure are detectable in children with low birth weight, suggesting that intrauterine growth retardation could programme the future risk of CV disease. However, an accelerated growth rate in infancy and early childhood is often associated with low birth weight and with specific vascular alterations, making it difficult to distinguish the contribution of prenatal and postnatal growth patterns to later cardiovascular disease risk. Relationships between growth patterns and CV disease risk are further complicated by the link between rapid postnatal growth and later development of childhood overweight and obesity, conditions associated with early changes in vascular physiology and that potentially affect future CV outcome. This article aims to provide an overview of evidence in support of fetal programming and growth acceleration hypotheses for adult CV disease. Specific attention is given to obesity-related vascular alterations and their effects on future CV disease risk. We also summarise current non-invasive approaches to investigate the precursors and early development of CV disease, emphasising their potential applications in childhood.
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