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Cardiomyocyte apoptotic cell death in arterial hypertension: mechanisms and potential management
M A Fortuño1, S Ravassa, A Fortuño
1Division of Cardiovascular Pathophysiology, School of Medicine, University of Navarra, Pamplona, Spain. fortuto@unav.es
Insights
Hypertensive heart disease involves cardiomyocyte apoptosis, worsening prognosis. Antihypertensive drugs and understanding apoptosis offer new heart failure prevention strategies.
Area of Science:
- Cardiology
- Molecular Biology
- Pathology
Background:
- Hypertensive heart disease causes left ventricular hypertrophy and myocardial remodeling.
- This remodeling involves fibrosis, reduced vascularization, and cardiomyocyte alterations, leading to heart failure.
- Cardiomyocyte apoptosis is a key factor in transitioning from hypertrophy to pump failure.
Purpose of the Study:
- To explore the role of cardiomyocyte apoptosis in hypertensive heart disease progression.
- To identify potential inducers and intracellular mechanisms of cardiomyocyte apoptosis.
- To investigate the impact of antihypertensive drugs and novel therapeutic strategies on cardiomyocyte apoptosis.
Main Methods:
- Review of experimental and human hypertension studies.
- Analysis of factors inducing cardiomyocyte apoptosis (mechanical stress, neurohormones, oxidative stress, hypoxia, cytokines).
- Investigation of intracellular signaling pathways involving survival and death proteins.
Main Results:
- Angiotensin II and cardiomyocyte overstretching are implicated in initiating apoptosis.
- Downregulation of survival proteins and activation of death proteins play significant roles.
- Existing antihypertensive medications demonstrate interference with cardiomyocyte apoptosis.
Conclusions:
- Cardiomyocyte apoptosis significantly worsens the prognosis of hypertensive heart disease.
- Targeting intracellular apoptotic pathways offers novel therapeutic strategies for heart failure prevention.
- Antihypertensive drugs may exert beneficial effects by modulating cardiomyocyte apoptosis.
Abstract:
Hypertensive heart disease is a progressive condition in which the compensatory left ventricular hypertrophy that maintains cardiac output leads to myocardial remodeling, characterized by fibrosis, insufficient vascularization, and alterations in cardiomyocytes, including contractile disturbances, changes in gene expression, and decrease in the number of cells. Structural abnormalities in the myocardial wall accelerate the development of diastolic and systolic dysfunction, resulting in heart failure. Many observations point to the apoptotic cell death of cardiomyocytes as a relevant factor in the transition from compensatory hypertrophy to pump failure in experimental and human hypertension. Potential inducers of cardiomyocyte apoptosis in overloaded hearts include extrinsic factors, such as mechanical forces, neurohormonal activation, oxidative stress, hypoxia, and cytokines. Some lines of evidence indicate that angiotensin II and the overstretching of cardiomyocytes are originally involved in the triggering of apoptosis in hypertension, whereas other factors are being investigated. Furthermore, intracellular changes, such as downregulation of survival proteins or activation of death proteins, seem to play an important role. The assumption that the apoptosis of cardiomyocytes worsens hypertensive heart disease prognosis brings forth new approaches to avoid or slow the transition to pump failure. In this respect, experimental data indicate that currently used antihypertensive drugs interfere with cardiomyocyte apoptosis. Moreover, the knowledge of intracellular apoptotic processes in cardiomyocytes provides novel therapeutic strategies to be added to the multimodal approach in the prevention of heart failure.