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Published on: October 12, 2017
Dysfunctional High-Density Lipoprotein Cholesterol and Coronary Artery Disease: A Narrative Review
Cristina Madaudo1, Giada Bono1, Antonella Ortello1
1Division of Cardiology, Department of Health Promotion, Mother and Child Care, Internal Medicine and Medical Specialties (ProMISE), University Hospital Paolo Giaccone, University of Palermo, 90127 Palermo, Italy.
Insights
Dysfunctional high-density lipoprotein (HDL) impairs cholesterol removal and promotes cardiovascular disease. Strategies targeting HDL function, not just levels, are crucial for preventing heart disease.
Area of Science:
- Cardiovascular Science
- Lipid Metabolism
- Molecular Biology
Background:
- High-density lipoprotein (HDL) cholesterol is traditionally linked to cardiovascular protection.
- Emerging evidence highlights dysfunctional HDL's role in coronary artery disease (CAD) pathogenesis.
- Dysfunctional HDL exhibits impaired reverse cholesterol transport (RCT), reduced antioxidant/anti-inflammatory capacity, and promotes endothelial dysfunction.
Purpose of the Study:
- To review the mechanisms and implications of dysfunctional HDL in cardiovascular disease.
- To explore novel therapeutic strategies aimed at restoring HDL functionality.
- To emphasize the shift from HDL quantity to HDL quality in risk assessment.
Main Methods:
- Literature review of studies on HDL function, dysfunction, and cardiovascular risk.
- Analysis of pathophysiological mechanisms including oxidative stress, inflammation, and genetic factors.
- Evaluation of emerging diagnostic assays (e.g., cholesterol efflux capacity) and therapeutic interventions.
Main Results:
- Dysfunctional HDL, caused by Apo A-1 modifications and enzyme inactivation, contributes to atherosclerosis.
- Conventional therapies raising HDL-C levels do not always reduce cardiovascular events.
- New functional assays offer better cardiovascular risk prediction than traditional lipid measurements.
Conclusions:
- Restoring HDL functionality, rather than solely increasing HDL-C levels, is a promising therapeutic target for CAD.
- Addressing the root causes of HDL dysfunction is key to effective cardiovascular disease prevention.
- Future research should focus on enhancing HDL's cardioprotective properties through targeted interventions.
Abstract:
High-density lipoprotein (HDL) cholesterol is traditionally viewed as protective against cardiovascular disease (CVD). However, emerging evidence reveals that dysfunctional HDL, characterized by impaired reverse cholesterol transport (RCT), reduced anti-inflammatory and antioxidant activities and increased endothelial dysfunction, which can contribute to coronary artery disease (CAD). Dysfunctional HDL, resulting from oxidative modifications of Apolipoprotein A-1 (Apo A-1) and enzyme inactivation, fails to effectively remove cholesterol from peripheral tissues and may promote inflammation and atherosclerosis. Genetic mutations affecting HDL metabolism further complicate its role in cardiovascular health. Studies have shown that conventional therapies aimed at raising HDL-C levels do not necessarily reduce cardiovascular events, highlighting the need for new approaches that improve HDL functionality. Therapeutic strategies such as Apo A-1 mimetic peptides, reconstituted HDL infusions, and drugs targeting specific HDL metabolic pathways are being explored. Additionally, weight loss, statin therapy, and niacin have shown potential in enhancing HDL function. The pathophysiology of dysfunctional HDL involves complex mechanisms, including oxidative stress, inflammation, and genetic mutations, which alter its structure and function, diminishing its cardioprotective effects. New functional assays, such as the cholesterol efflux capacity (CEC) and HDL inflammatory index, provide more accurate predictions of cardiovascular risk by assessing HDL quality rather than quantity. As research progresses, the focus is shifting towards therapeutic strategies that enhance HDL function and address the root causes of its dysfunction, offering a more effective approach to reducing cardiovascular risk and preventing CAD.
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