HDL: to treat or not to treat?
Angela Pirillo1, Gianpaolo Tibolla, Giuseppe Danilo Norata
1Center for the Study of Atherosclerosis, Ospedale Bassini, Cinisello Balsamo, Italy, angela.pirillo@guest.unimi.it.
Insights
Higher HDL cholesterol (high-density lipoprotein cholesterol) may not always reduce cardiovascular disease risk. HDL particle function, not just levels, appears crucial for cardiovascular benefits.
Area of Science:
- Cardiovascular Science
- Metabolic Health
- Lipid Metabolism
Background:
- Inverse relationship observed between HDL cholesterol (HDL-C) and cardiovascular disease (CVD) risk.
- Low HDL-C levels are common in diabetes, metabolic syndrome, and obesity.
- This suggested increasing HDL-C might reduce CVD risk.
Purpose of the Study:
- Investigate the hypothesis that increasing HDL-C levels reduce cardiovascular disease risk.
- Explore the role of HDL particle quality and function in CVD risk prediction.
- Evaluate the potential of therapies targeting HDL function.
Main Methods:
- Review of clinical trial data on HDL-raising therapies.
- Analysis of Mendelian randomization studies on HDL-C related polymorphisms.
- Examination of observational data on HDL subpopulations and CVD risk.
Main Results:
- Clinical trials with HDL-raising therapies failed to consistently confirm reduced CVD risk.
- Mendelian randomization showed polymorphisms for higher HDL-C did not lower myocardial infarction risk.
- HDL subpopulation levels may be superior predictors of CVD risk compared to total HDL-C.
Conclusions:
- The direct link between elevated HDL-C levels and reduced CVD risk is challenged.
- HDL particle quality and function are critical determinants of cardiovascular protection.
- Pharmacological strategies should focus on improving HDL function for clinical benefit.
Abstract:
Several studies have shown an inverse relationship between HDL cholesterol (HDL-C) levels and the risk of cardiovascular disease. Low HDL-C levels are commonly present in subjects with diabetes, metabolic syndrome, or obesity. These observations have suggested that increasing HDL concentrations might help in decreasing the cardiovascular disease risk. However, despite initial positive results, some recent data from clinical trials with HDL-raising therapies failed to confirm this hypothesis; in addition, data from Mendelian randomization analyses showed that nucleotide polymorphisms associated with increased HDL-C levels did not decrease the risk of myocardial infarction, further challenging the concept that higher HDL-C levels will automatically translate into lower cardiovascular disease risk. Differences in the quality and distribution of HDL particles might partly explain these findings, and in agreement with this hypothesis, some observations have suggested that HDL subpopulation levels may be better predictors of cardiovascular disease than simple HDL-C levels. Thus, it is expected that increased HDL-C levels may be beneficial when associated with an improvement in HDL function, suggesting that pharmacological approaches able to correct or increase HDL functions might produce more reliable clinical benefits.
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