Mechanisms underlying developmental programming of elevated blood pressure and vascular dysfunction: evidence from

Anne Monique Nuyt1

  • 1Department of Pediatrics, CHU Sainte-Justine Research Center, Université de Montréal, 3175 Côte Sainte-Catherine, Montréal, Québec, Canada.

Insights

Early life conditions significantly impact adult cardiovascular health, influencing blood pressure and vascular function. Understanding these developmental origins is crucial for preventing adult heart disease.

Area of Science:

  • Cardiovascular Science
  • Developmental Biology
  • Public Health

Background:

  • Cardiovascular diseases are the leading global cause of mortality.
  • Early life conditions are increasingly recognized as critical determinants of adult health.
  • The developmental origins of adult disease (DODAD) concept links perinatal environment to later-life pathologies.

Purpose of the Study:

  • To review mechanisms linking perinatal environment to adult cardiovascular phenotype.
  • To identify key causal factors in developmental programming of cardiovascular disease.
  • To synthesize findings from epidemiological and experimental studies.

Main Methods:

  • Literature review of epidemiological studies.
  • Analysis of experimental models investigating perinatal influences.
  • Exploration of pathophysiological pathways.

Main Results:

  • Altered perinatal environment can lead to programmed elevated blood pressure and vascular dysfunction in adulthood.
  • Key mechanisms include glucocorticoid exposure, renal and renin-angiotensin system roles, brain and sympathetic nervous system activity, oxidative stress, and epigenetic changes.
  • Vascular dysfunction and microvascular rarefaction characterize programmed hypertension.

Conclusions:

  • The perinatal environment plays a significant role in adult cardiovascular health.
  • Multiple pathways contribute to the developmental origins of cardiovascular disease.
  • Further research into these mechanisms is essential for designing preventive strategies.

Related Concept Videos

Hypertension II: Pathophysiology01:29

Hypertension II: Pathophysiology

Hypertension is a chronic condition in which the blood's force against artery walls is excessively high, posing risks such as heart disease. The condition's underlying mechanisms involve complex interactions among the cardiovascular, kidney, and autonomic nervous systems.Renin-Angiotensin-Aldosterone System (RAAS): This system significantly influences blood pressure regulation. When blood pressure decreases, the kidneys secrete renin. This enzyme transforms angiotensinogen, a plasma protein,...
Hypertension and Regulation of Blood Pressure01:18

Hypertension and Regulation of Blood Pressure

Hypertension, the most common cardiovascular disease, is diagnosed through repeated measurements of elevated blood pressure. Its risks, including damage to the kidney, heart, and brain, are directly proportional to blood pressure levels. Starting from 115/75 mm Hg, the risk of cardiovascular disease doubles with each increment of 20/10 mm Hg. The diagnosis relies on blood pressure measurements, not on patient symptoms, as hypertension is often asymptomatic until end-organ damage is imminent or...
Neural Regulation of Blood Pressure01:18

Neural Regulation of Blood Pressure

The neural regulation of blood pressure involves intricate interactions between the autonomic nervous system (ANS) and cardiovascular system, ensuring adequate perfusion of tissues. This regulation primarily occurs through baroreceptor and chemoreceptor reflexes, involving both short-term and long-term mechanisms.
Baroreceptor Reflex
Baroreceptors, located in the carotid sinuses and aortic arch, detect changes in blood pressure. When blood pressure rises, these stretch-sensitive receptors...
Hormonal Regulation of Blood Pressure01:17

Hormonal Regulation of Blood Pressure

Endocrinal or hormonal intervention in the cardiovascular system is predominantly exerted by the catecholamines - epinephrine and norepinephrine, as well as a slew of hormones that interact with renal function to modulate blood volume.
Epinephrine and Norepinephrine
The adrenal medulla releases epinephrine and norepinephrine, catecholamines that enhance and extend the sympathetic or "fight or flight" physiological response. These hormones escalate heart rate and the force of contraction while...
Hypertension III: Clinical Manifestations and Diagnostic Studies01:30

Hypertension III: Clinical Manifestations and Diagnostic Studies

Hypertension is asymptomatic and also referred to as the "silent killer" until it progresses to a severe stage or causes target organ disease. Patients may experience symptoms stemming from the strain on blood vessels and tissues in various organs or the heart's increased workload.Physical exams might show no abnormalities other than high blood pressure. Signs of vascular damage, when present, correspond to the organs supplied by the affected vessels, leading to target organ damage. For...
Factors affecting Blood pressure01:28

Factors affecting Blood pressure

Several physiological and lifestyle factors influence blood pressure (BP). Understanding these factors is crucial as they are significant in patient education and blood pressure management.
Physiological Factors: