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Differential Effects of Lipid-lowering Drugs in Modulating Morphology of Cholesterol Particles
Published on: November 10, 2017
Optimal therapy of low levels of high density lipoprotein-cholesterol
Moti L Kashyap1, S Tavintharan, Vaijinath S Kamanna
1Department of Veterans Affairs Healthcare System, Long Beach, California, USA. moti.kashyap@med.va.gov
Insights
Low high-density lipoprotein-cholesterol (HDL-C) is a significant cardiovascular risk. Increasing HDL-C levels, particularly with nicotinic acid, can reduce cardiovascular events in high-risk patients.
Area of Science:
- Cardiology
- Metabolic Disorders
- Pharmacology
Background:
- Low high-density lipoprotein-cholesterol (HDL-C) is an independent risk factor for atherosclerotic cardiovascular disease.
- HDL-C plays a crucial role in preventing atherosclerosis by increasing fibrinolysis, acting as an antioxidant to LDL-C, and reducing platelet aggregability.
- A significant portion of patients with cardiovascular disease present with desirable total cholesterol but low HDL-C levels.
Purpose of the Study:
- To highlight the significance of low HDL-C as a cardiovascular risk factor.
- To discuss therapeutic strategies for increasing HDL-C levels, focusing on pharmacotherapy.
- To propose a classification for dyslipidemia characterized by low HDL-C.
Main Methods:
- Review of clinical trial data, including the Veterans Affairs HDL Intervention Trial (VA-HIT).
- Analysis of the impact of gemfibrozil on HDL-C, triglycerides, and cardiovascular events.
- Evaluation of various pharmacologic agents known to increase HDL-C levels, such as nicotinic acid, fibric acid derivatives, and HMG-CoA reductase inhibitors.
Main Results:
- Gemfibrozil treatment increased HDL-C by 6% and reduced cardiovascular events by 22%, with HDL-C rise predicting outcomes.
- Nicotinic acid is identified as a potent agent for increasing HDL-C, selectively raising antiatherogenic HDL subfractions.
- Combination therapy, particularly with HMG-CoA reductase inhibitors and nicotinic acid, shows promise for patients with atherosclerotic cardiovascular disease and low HDL-C.
Conclusions:
- Low HDL-C levels (<1.04 mmol/L) represent a critical target for cardiovascular risk reduction.
- Pharmacotherapy, especially nicotinic acid and combination regimens, is recommended for high-risk patients with low HDL-C.
- A new classification, Type VI phenotype, is proposed for dyslipidemia with low HDL-C, low LDL-C, and normal triglycerides.
Abstract:
Plasma levels of high-density lipoprotein-cholesterol (HDL-C) are a powerful independent cardiovascular risk factor, bearing an inverse relationship with atherosclerotic cardiovascular disease (with risk rising sharply when levels are <1.04 mmol/L). Apart from its protective role in atherosclerosis, HDL-C increases fibrinolysis, is an antioxidant to low density lipoprotein-cholesterol (LDL-C), and decreases platelet aggregability. Up to a third of patients with atherosclerotic cardiovascular disease have 'desirable' plasma levels of total cholesterol but low HDL-C levels. Benefits of treating low plasma HDL-C levels were clearly demonstrated in the Veterans Affairs HDL Intervention Trial (VA-HIT) where gemfibrozil reduced nonfatal infarcts and coronary deaths by 22%. This was achieved by a 6% increase in plasma HDL-C levels, and a 24.5% decrease in plasma levels of triglycerides, without any significant decrease in LDL-C levels. Multivariate analyses revealed the rise in plasma HDL-C levels after treatment, but not decreases in plasma levels of triglycerides or LDL-C, predicted coronary artery disease events. The typical patient under consideration in this article is one with plasma levels of HDL-C <1 mmol/L, LDL-C <3.37 mmol/L [either receiving therapeutic lifestyle changes or or LDL-C-lowering therapy comprising a hydroxymethylglutaryl coenzyme-A (HMG-CoA) reductase inhibitor or bile acid sequestrant] and fasting triglycerides <2.26 mmol/L. We propose this dyslipidemia be classified as Type VI phenotype following the Frederickson and Lees classification. High-risk patients (with >/=2 risk factors for atherosclerotic cardiovascular disease, or 10-year cardiovascular risk >20%), patients with established atherosclerotic cardiovascular disease, or type 2 diabetes mellitus, or metabolic syndrome should receive pharmacotherapy. Plasma HDL-C levels >1.16 mmol/L may be considered optimal and between 1 and 1.16 mmol/L as desirable. Fibric acid derivatives, nicotinic acid, HMG-CoA reductase inhibitors, estrogens, and ethanol (not recommended as therapy) increase plasma HDL-C levels. Nicotinic acid is the most potent agent and recent reports indicate that, in contrast to gemfibrozil, it selectively increases antiatherogenic HDL subfraction, lipoprotein (Lp) AI (without apolipoprotein AII), in patients with low plasma HDL-C levels. An extended-release formulation, administered once daily, has improved the tolerability of nicotinic acid. Recent evidence also indicates that nicotinic acid may effectively correct dyslipidemia in patients with diabetes mellitus without significantly compromising glycemic control. Fibric acid derivatives and estrogen raise plasma HDL-C levels by different mechanisms of action, and these agents may be used with nicotinic acid. Combination therapy (especially HMG-CoA reductase inhibitor and nicotinic acid) should be considered in patients with atherosclerotic cardiovascular disease and low plasma HDL-C levels.
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