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Cardiovascular disease risk reduction by raising HDL cholesterol--current therapies and future opportunities
K Mahdy Ali1, A Wonnerth, K Huber
1Department of Internal Medicine II, Medical University of Vienna, Vienna, Austria.
Insights
High-density lipoprotein-cholesterol (HDL-C) is linked to reduced coronary heart disease risk. New strategies are needed as HDL-C therapies show controversial results, emphasizing particle function over levels.
Area of Science:
- Cardiovascular Medicine
- Biochemistry
- Pharmacology
Background:
- High-density lipoprotein-cholesterol (HDL-C) inversely correlates with coronary heart disease (CHD) risk.
- HDL-C is an independent cardiovascular risk factor, with increased levels reducing CHD risk.
- Despite statin therapy, significant cardiovascular events persist, necessitating novel risk reduction strategies.
Purpose of the Study:
- To review HDL particle biology and its role in atherosclerosis.
- To examine established and emerging therapeutic options for increasing HDL-C.
- To discuss recent study findings and future directions in HDL-C research for cardiovascular disease.
Main Methods:
- Literature review of studies on HDL biology, atherosclerosis, and therapeutic interventions.
- Analysis of clinical trial data concerning HDL-C-raising therapies.
- Synthesis of current research on HDL particle functionality and its clinical implications.
Main Results:
- HDL-C levels are associated with cardiovascular risk reduction.
- Therapeutic strategies to significantly increase HDL-C are limited and their efficacy is debated.
- HDL particle functionality, beyond cholesterol content, is crucial for cardiovascular health.
Conclusions:
- Raising HDL-C remains a therapeutic target, but its effectiveness is complex.
- HDL particle function, including reverse cholesterol transport and pleiotropic effects, is critical.
- Future research should focus on functional HDL assays and therapies targeting particle activity for cardiovascular disease management.
Abstract:
Since the first discovery of an inverse correlation between high-density lipoprotein-cholesterol (HDL-C) levels and coronary heart disease in the 1950s the life cycle of HDL, its role in atherosclerosis and the therapeutic modification of HDL-C levels have been major research topics. The Framingham study and others that followed could show that HDL-C is an independent cardiovascular risk factor and that the increase of HDL-C of only 10 mg·L(-1) leads to a risk reduction of 2-3%. While statin therapy and therefore low-density lipoprotein-cholesterol (LDL-C) reduction could lower coronary heart disease considerably; cardiovascular morbidity and mortality still occur in a significant portion of subjects already receiving therapy. Therefore, new strategies and therapies are needed to further reduce the risk. Raising HDL-C was thought to achieve this goal. However, established drug therapies resulting in substantial HDL-C increase are scarce and their effect is controversial. Furthermore, it is becoming increasingly evident that HDL particle functionality is at least as important as HDL-C levels since HDL particles not only promote reverse cholesterol transport from the periphery (mainly macrophages) to the liver but also exert pleiotropic effects on inflammation, haemostasis and apoptosis. This review deals with the biology of HDL particles, the established and future therapeutic options to increase HDL-C and discusses the results and conclusions of the most important studies published in the last years. Finally, an outlook on future diagnostic tools and therapeutic opportunities regarding coronary artery disease is given.
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