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Updated: Sep 8, 2025

Reduction in Left Ventricular Wall Stress and Improvement in Function in Failing Hearts using Algisyl-LVR
Published on: April 8, 2013
Vascular (dys)function in the failing heart
Luca Liberale1,2, Dirk Jan Duncker3,4, Derek John Hausenloy5,6,7,8
1Department of Internal Medicine, University of Genoa, Genoa, Italy. luca.liberale@unige.it.
Insights
Heart failure involves more than just the heart muscle; vascular dysfunction significantly contributes to its development and worsening. Addressing vascular issues offers new therapeutic strategies for heart failure (HF) patients.
Area of Science:
- Cardiovascular Medicine
- Vascular Biology
- Heart Failure Pathophysiology
Background:
- Heart failure (HF) encompasses more than cardiomyocyte dysfunction; vascular abnormalities are critical.
- Systemic and coronary vascular dysfunction initiate and perpetuate HF, impacting cardiac function and metabolism.
- HF exacerbates vascular dysfunction, creating a detrimental cycle affecting coronary blood flow and cardiac afterload.
Purpose of the Study:
- To provide a mechanistic framework of vascular dysfunction in HF pathogenesis.
- To explore the role of vascular alterations in HF with and without reduced ejection fraction.
- To highlight integrated therapeutic approaches targeting vascular dysfunction in HF.
Main Methods:
- Review of current literature on vascular function in HF.
- Analysis of mechanisms linking vascular changes to HF progression.
- Examination of therapeutic interventions targeting vascular aspects of HF.
Main Results:
- Systemic arterial dysfunction increases cardiac afterload, impairing contractile function.
- Reduced coronary blood flow compromises myocardial oxygen delivery and cardiomyocyte metabolism.
- Coronary microvascular dysfunction presents heterogeneous pathogenesis, complicating HF management.
Conclusions:
- Vascular dysfunction is a key driver and consequence of HF across ejection fraction spectrums.
- Understanding vascular alterations provides mechanistic insights for HF.
- Integrated therapies addressing vascular health are crucial for improving HF outcomes.
Abstract:
Heart failure (HF) is not confined to contractile failure of cardiomyocytes or myocardial fibrosis. Coronary and systemic vascular dysfunction contributes to the initiation and progression of HF with or without reduced ejection fraction. Furthermore, HF compromises vascular function, creating and sustaining a vicious cycle with deranging effects on coronary blood flow, cardiac metabolism and cardiac function. In HF, systemic arterial dysfunction, characterized by increased arterial stiffness and resistance, raises cardiac afterload and impedes myocardial contractile function. Reduced coronary blood flow impairs myocardial oxygen delivery and consequently cardiomyocyte metabolism and function. Coronary microvascular dysfunction is heterogeneous in its pathogenesis and manifestations, complicating the diagnosis and management across different HF phenotypes. Understanding the alterations in function in different segments of the vasculature, from the aorta to the capillary level, offers mechanistic insights into disease drivers and therapeutic interventions. Interventional approaches can improve vascular haemodynamics, whereas established and emerging pharmacotherapies target the neurohumoral axis and reduce extravascular compression, inflammation, and oxidative stress, thereby improving vascular function and HF-related outcomes. In this Review, we provide a mechanistic framework of vascular dysfunction in the pathogenesis of HF with or without reduced ejection fraction, pointing towards integrated therapies that consider the vascular implications of contemporary HF management across HF phenotypes.
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