Role of Omega-3 Fatty Acids in Cardiovascular Disease: the Debate Continues
Роль омега-3 жирных кислот при сердечно-сосудистых заболеваниях: дискуссия продолжается
2022-12-29
SCID: 54.1/p4e67ahh
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atherosclerosiscardiovascular diseaseeicosapentaenoic acidicosapent ethylomega-3 fatty acids
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Abstract (AI)
PURPOSE OF REVIEW: The omega-3 fatty acids (n3-FAs), eicosapentaenoic acid (EPA) and docosahexaenoic acid (DHA), have recently undergone testing for their ability to reduce residual cardiovascular (CV) risk among statin-treated subjects. The outcome trials have yielded highly inconsistent results, perhaps attributable to variations in dosage, formulation, and composition. In particular, CV trials using icosapent ethyl (IPE), a highly purified ethyl ester of EPA, reproducibly reduced CV events and progression of atherosclerosis compared with mixed EPA/DHA treatments. This review summarizes the mechanistic evidence for differences among n3-FAs on the development and manifestations of atherothrombotic disease. RECENT FINDINGS: Large randomized clinical trials with n3-FAs have produced discordant outcomes despite similar patient profiles, doses, and triglyceride (TG)-lowering effects. A large, randomized trial with IPE, a prescription EPA only formulation, showed robust reduction in CV events in statin treated patients in a manner proportional to achieved blood EPA concentrations. Multiple trials using mixed EPA/DHA formulations have not shown such benefits, despite similar TG lowering. These inconsistencies have inspired investigations into mechanistic differences among n3-FAs, as EPA and DHA have distinct membrane interactions, metabolic products, effects on cholesterol efflux, antioxidant properties, and tissue distribution. EPA maintains normal membrane cholesterol distribution, enhances endothelial function, and in combination with statins improves features implicated in plaque stability and reduces lipid content of plaques. Insights into reductions in residual CV risk have emerged from clinical trials using different formulations of n3-FAs. Among high-risk patients on contemporary care, mixed n3-FA formulations showed no reduction in CV events. The distinct benefits of IPE in multiple trials may arise from pleiotropic actions that correlate with on-treatment EPA levels beyond TG-lowering. These effects include altered platelet function, inflammation, cholesterol distribution, and endothelial dysfunction. Elucidating such mechanisms of vascular protection for EPA may lead to new interventions for atherosclerosis, a disease that continues to expand worldwide.
Key Findings
1
A large randomized trial found robust cardiovascular-event reduction with icosapent ethyl proportional to achieved blood EPA concentrations.
2
EPA may reduce residual cardiovascular risk through pleiotropic effects, including improved endothelial function and plaque stabilization with reduced plaque lipid content.
3
Icosapent ethyl, a highly purified EPA-only formulation, reproducibly reduced cardiovascular events and atherosclerosis progression in statin-treated patients.
4
Mechanistic differences between EPA and DHA—including membrane interactions, metabolic products, cholesterol efflux, antioxidant effects, and tissue distribution—may explain their divergent clinical outcomes.
5
Multiple trials of mixed EPA/DHA formulations showed no cardiovascular benefit despite triglyceride lowering comparable to EPA-only treatment.
6
Omega-3 cardiovascular outcome trials produced highly inconsistent results, potentially because of differences in dosage, formulation, and EPA/DHA composition.
Research Object
Omega-3 fatty acids (EPA, DHA, and icosapent ethyl) in statin-treated patients at cardiovascular risk
Research Subject
The formulation-dependent effects and mechanisms of omega-3 fatty acids on residual cardiovascular risk, atherothrombotic disease, cardiovascular events, and atherosclerotic plaque features
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2022-12-29
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