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Differential Effects of Lipid-lowering Drugs in Modulating Morphology of Cholesterol Particles
Published on: November 10, 2017
Effect of atorvastatin on plasma apoE metabolism in patients with combined hyperlipidemia
Jeffrey S Cohn1, Michel Tremblay, Rami Batal
1Hyperlipidemia and Atherosclerosis Research Group, Montréal, Québec, Canada. cohnj@ircm.qc.ca
Insights
Atorvastatin significantly reduces plasma apoE levels and production rates in patients with hyperlipidemia. This cholesterol-lowering drug impacts very-low-density lipoprotein (VLDL) apoE, correlating with reduced VLDL triglycerides.
Area of Science:
- Lipid Metabolism
- Cardiovascular Pharmacology
Background:
- Hyperlipidemia and atherosclerosis are linked to apolipoprotein E (apoE) dysregulation.
- Atorvastatin is a widely used statin for managing hyperlipidemia and preventing cardiovascular disease.
Purpose of the Study:
- To investigate the in vivo effects of atorvastatin on apolipoprotein E (apoE) production and catabolism.
- To determine how atorvastatin influences apoE kinetics in patients with combined hyperlipidemia.
Main Methods:
- Utilized a primed constant infusion of deuterated leucine in six hyperlipidemic patients.
- Administered atorvastatin 40 mg/day and measured plasma apoE production and catabolism rates.
Main Results:
- Atorvastatin significantly decreased total plasma apoE (-38%) and very-low-density lipoprotein (VLDL) apoE (-42%).
- Plasma apoE production rates were significantly reduced by atorvastatin (-34%), particularly VLDL apoE transport (-36%).
- Reductions in VLDL apoE concentration and production correlated strongly with decreased VLDL triglyceride levels.
Conclusions:
- Atorvastatin treatment markedly reduces plasma and VLDL apoE concentrations in hyperlipidemic patients.
- The drug significantly decreases the rates of apoE production, especially within VLDL particles.
- These findings highlight atorvastatin's role in modulating apoE metabolism, contributing to its atheroprotective effects.
Abstract:
Atorvastatin, a synthetic HMG-CoA reductase inhibitor used for the treatment of hyperlipidemia and the prevention of coronary artery disease, significantly lowers plasma cholesterol and low-density lipoprotein cholesterol (LDL-C) levels. It also reduces total plasma triglyceride and apoE concentrations. In view of the direct involvement of apoE in the pathogenesis of atherosclerosis, we have investigated the effect of atorvastatin treatment (40 mg/day) on in vivo rates of plasma apoE production and catabolism in six patients with combined hyperlipidemia using a primed constant infusion of deuterated leucine. Atorvastatin treatment resulted in a significant decrease (i.e., 30-37%) in levels of total triglyceride, cholesterol, LDL-C, and apoB in all six patients. Total plasma apoE concentration was reduced from 7.4 +/- 0.9 to 4.3 +/- 0.2 mg/dl (-38 +/- 8%, P < 0.05), predominantly due to a decrease in VLDL apoE (3.4 +/- 0.8 vs. 1.7 +/- 0.2 mg/dl; -42 +/- 11%) and IDL/LDL apoE (1.9 +/- 0.3 vs. 0.8 +/- 0.1 mg/dl; -57 +/- 6%). Total plasma lipoprotein apoE transport (i.e., production) was significantly reduced from 4.67 +/- 0.39 to 3.04 +/- 0.51 mg/kg/day (-34 +/- 10%, P < 0.05) and VLDL apoE transport was reduced from 3.82 +/- 0.67 to 2.26 +/- 0.42 mg/kg/day (-36 +/- 10%, P = 0.057). Plasma and VLDL apoE residence times and HDL apoE kinetic parameters were not significantly affected by drug treatment. Percentage decreases in VLDL apoE concentration and VLDL apoE production were significantly correlated with drug-induced reductions in VLDL triglyceride concentration (r = 0.99, P < 0.001; r = 0.88, P < 0.05, respectively, n = 6). Our results demonstrate that atorvastatin causes a pronounced decrease in total plasma and VLDL apoE concentrations and a significant decrease in plasma and VLDL apoE rates of production in patients with combined hyperlipidemia.
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