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Published on: February 23, 2012
Is blood pressure in later life affected by events in infancy?
1Department of Pediatrics, University of California San Francisco, USA.
Insights
Early life factors like salt intake and genetics influence adult hypertension (HTN). While simple measures may reduce risk in susceptible children, identifying and targeting high-risk individuals remains challenging.
Area of Science:
- Cardiovascular Science
- Pediatric Health
- Genetics
Background:
- Primary hypertension (HTN) risk is influenced by early life events.
- Understanding these influences can inform preventative strategies.
Purpose of the Study:
- To review experimental and clinical evidence linking early life factors to adult hypertension.
- To explore the impact of genetics, nutrition, and stress on blood pressure (BP).
Main Methods:
- Review of experimental studies in hypertensive rats.
- Analysis of clinical data from children and adults on BP determinants.
- Examination of genetic, nutritional, and stress-related factors.
Main Results:
- Early life salt intake, genetics, and maternal interactions affect adult BP in rats.
- Children's BP tracks with parental BP; primary HTN families show insulin resistance and altered cation flux.
- Low birth weight and childhood salt intake correlate with adult HTN prevalence and stress response.
Conclusions:
- Early life experiences significantly shape adult hypertension risk.
- While general preventative measures are suggested, specific identification and risk reduction strategies for children are currently lacking.
Abstract:
This article reviews experimental and clinical evidence of whether primary hypertension (HTN) later in life is influenced by events early in life. The experimental evidence is drawn from studies in inbred strains of HTN-prone rats; the clinical evidence is drawn from studies in children and adults of the influence of genetics, nutrition, and stress on adult blood pressure (BP). Adult BP in HTN-prone rats is significantly influenced in the preweaning period by salt intake and genetic factors regulating extra-cellular fluid volume, and by maternal-infant interactions. BPs of children track with BPs of their parents. Children of parents with primary HTN are insulin resistant and have lower average cation flux values across cell membranes as do their parents; children and their parents with secondary HTN do not. Children with low birth weight have a higher prevalence of HTN as adults than better-nourished peers. Salt intake in children affects BP response to stress. Average salt consumption among different cultures correlates with the prevalence of HTN in those cultures. Varying salt intake of infants and children has little influence on BP later in childhood. The evidence suggests simple measures that might lower the risk for HTN in HTN-prone children in general. However, at present we lack reliable means for identifying children at risk for HTN specific means to lower that risk.
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