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Niacin Therapy, HDL Cholesterol, and Cardiovascular Disease: Is the HDL Hypothesis Defunct?
1Department of Internal Medicine, University of Texas Southwestern, Dallas, TX, USA.
Insights
High-density lipoprotein cholesterol (HDL-C) levels may not be a reliable target for reducing cardiovascular risk. Emerging evidence suggests HDL function, not just cholesterol content, is key for better cardiovascular event reduction.
Area of Science:
- Cardiovascular Medicine
- Lipid Metabolism
- Pharmacology
Background:
- High-density lipoprotein cholesterol (HDL-C) is epidemiologically linked to cardiovascular (CV) risk.
- Pharmaceuticals aim to increase HDL-C, with niacin being a common example.
- Niacin increases HDL-C but failed to reduce CV events in major trials.
Purpose of the Study:
- To evaluate the effectiveness of HDL-C modulation for cardiovascular risk reduction.
- To explore alternative HDL-related markers for CV risk assessment.
- To investigate the clinical relevance of HDL function versus HDL-C levels.
Main Methods:
- Review of epidemiologic studies and randomized controlled trials (RCTs) on HDL-C modulation.
- Analysis of data concerning niacin and cholesteryl ester transfer protein (CETP) inhibitors.
- Examination of HDL function markers like ApoA-I, HDL particle concentration (HDL-P), and cholesterol efflux.
Main Results:
- Niacin and CETP inhibitors significantly raise HDL-C but do not consistently reduce CV events.
- Increased ApoA-I, HDL-P, and cholesterol efflux capacity correlate with reduced CV risk.
- Niacin's effects on HDL function markers are conflicting.
Conclusions:
- The direct correlation between HDL-C levels and CV risk reduction is questionable.
- HDL function, rather than HDL-C concentration, may be a more promising therapeutic target.
- Further research is needed to confirm if modulating HDL function markers yields clinical benefits.
Abstract:
High-density lipoprotein cholesterol (HDL-C) has been shown in epidemiologic studies to be associated with cardiovascular (CV) risk and thus significant efforts have been focused on HDL-C modulation. Multiple pharmaceutical agents have been developed with the goal of increasing HDL-C. Niacin, the most widely used medication to raise HDL-C, increases HDL-C by up to 25 % and was shown in multiple surrogate end point studies to reduce CV risk. However, two large randomized controlled trials of niacin, AIM-HIGH and HPS2-THRIVE, have shown that despite its effects on HDL-C, niacin does not decrease the incidence of CV events and may have significant adverse effects. Studies of other classes of agents such as cholesteryl ester transfer protein (CETP) inhibitors have also shown that even dramatic increases in HDL-C do not necessarily translate to reduction in clinical events. While these findings have cast doubt upon the importance of HDL-C modulation on CV risk, it is becoming increasingly clear that HDL function-related measures may be better targets for CV risk reduction. Increasing ApoA-I, the primary apolipoprotein associated with HDL, correlates with reduced risk of events, and HDL particle concentration (HDL-P) inversely associates with incident CV events adjusted for HDL-C and LDL particle measures. Cholesterol efflux, the mechanism by which macrophages in vessel walls secrete cholesterol outside cells, correlates with both surrogate end points and clinical events. The effects of niacin on these alternate measures of HDL have been conflicting. Further studies should determine if modulation of these HDL function markers translates to clinical benefits. Although the HDL cholesterol hypothesis may be defunct, the HDL function hypothesis is now poised to be rigorously tested.
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