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The role of HDL in plaque stabilization and regression: basic mechanisms and clinical implications
Jonathan E Feig1, Jessica L Feig, George D Dangas
1aDepartment of Medicine/Cardiology, Heart and Vascular Institute, Johns Hopkins Hospital, Baltimore, Maryland bDepartment of Medicine, Icahn School of Medicine at Mount Sinai, Mount Sinai Hospital cThe Zena and Michael A. Wiener Cardiovascular Institute, Icahn School of Medicine at Mount Sinai dCardiovascular Research Foundation, New York, New York, USA.
Insights
Atherosclerosis regression is achievable through improved lipoprotein profiles. Enhancing high-density lipoprotein (HDL) function, not just quantity, is key for future cardiovascular event prevention.
Area of Science:
- Cardiovascular Medicine
- Lipid Metabolism
- Atherosclerosis Research
Background:
- Atherosclerosis regression has evolved from a concept to an achievable clinical goal.
- Successful regression strategies focus on improving plasma lipoprotein profiles.
- Current therapies remain insufficient in preventing cardiovascular events.
Purpose of the Study:
- To review the mechanisms and current status of atherosclerosis regression.
- To evaluate the role of high-density lipoprotein (HDL) in atherosclerosis.
- To identify future therapeutic targets for enhancing HDL quality.
Main Methods:
- Review of historical and current studies on atherosclerosis regression.
- Analysis of mechanisms contributing to plaque shrinkage.
- Evaluation of clinical intervention studies involving HDL.
Main Results:
- Atherosclerosis regression is possible with robust lipoprotein management.
- Mechanisms include reduced atherogenic lipoprotein retention and enhanced lipid efflux.
- HDL's role is complex; function, not just levels, appears critical.
Conclusions:
- Focusing on enhancing HDL function, rather than solely increasing HDL-C levels, is a promising therapeutic strategy.
- Further research into HDL quality enhancement is crucial for preventing cardiovascular events.
- Targeting HDL functionality offers a novel approach to managing atherosclerosis.
Abstract:
On the basis of studies that extend back to the early 1900s, regression and stabilization of atherosclerosis in humans has progressed from being a concept to one that is achievable. Successful attempts at regression generally applied robust measures to improve plasma lipoprotein profiles. Possible mechanisms responsible for lesion shrinkage include decreased retention of atherogenic apolipoprotein B within the arterial wall, efflux of cholesterol and other toxic lipids from plaques, emigration of lesional foam cells out of the arterial wall, and influx of healthy phagocytes that remove necrotic debris as well as other components of the plaque. Currently available clinical agents, however, still fail to stop most cardiovascular events. For years, HDL has been considered the 'good cholesterol.' Clinical intervention studies to causally link plasma HDL-C levels to decreased progression or to the regression of atherosclerotic plaques are relatively few because of the lack of therapeutic agents that can selectively and potently increase HDL-C. The negative results of studies that were carried out have led to uncertainty as to the role that HDL plays in atherosclerosis. It is becoming clearer, however, that HDL function rather than quantity is most crucial and, therefore, discovery of agents that enhance the quality of HDL should be the goal.
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