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Published on: July 27, 2022
Benefit-Risk Assessment of Fish Oil in Preventing Cardiovascular Disease
Bill Lands1,2,3
1American Society for Nutrition, Rockville, MD, USA. wemlands@att.net.
Insights
Cardiovascular disease (CVD) involves inflammation and thrombosis, influenced by omega-6 and omega-3 fatty acids. Fish oil benefits are complex, and current primary prevention strategies for CVD remain uncertain.
Area of Science:
- Biomedical Science
- Cardiovascular Health
- Nutritional Science
Background:
- Cardiovascular disease (CVD) involves chronic vascular inflammation and acute thrombosis.
- These processes are amplified by n-6 eicosanoids from n-6 highly unsaturated fatty acids (HUFA), counteracted by n-3 HUFA.
- Current CVD prevalence remains high despite some successful secondary prevention interventions.
Purpose of the Study:
- To review the evidence on fish oil supplements for cardiovascular disease (CVD).
- To provide a balanced perspective on the use of fish oil for CVD prevention and management.
- To address complexities in fish oil interventions, including pharmacokinetics and positive feedback loops.
Main Methods:
- Literature review and evidence synthesis.
- Analysis of the roles of n-6 and n-3 highly unsaturated fatty acids (HUFA) in CVD.
- Examination of feedback mechanisms in inflammation and thrombosis.
Main Results:
- Fish oil benefits in CVD are complicated by pharmacokinetic and pharmacodynamic factors.
- Overlooked aspects include saturable enzyme responses supplying n-6 HUFA and uncontrolled n-6 HUFA-derived mediators.
- Reducing a single mediator may not resolve complex CVD pathophysiology.
Conclusions:
- Successful primary prevention of CVD remains a challenge.
- A balanced perspective on fish oil supplementation is needed for clinicians and the public.
- Further understanding of fatty acid dynamics and feedback loops is crucial for effective CVD management.
Abstract:
Cardiovascular disease (CVD) is a preventable disease, which combines two general processes: chronic vascular inflammation and acute thrombosis. Both are amplified with positive feedback signals by n-6 eicosanoids derived from food-based n-6 highly unsaturated fatty acids (n-6 HUFA). This amplification is lessened by competing actions of n-3 HUFA. Death results from fatal interactions of the vascular wall with platelets and clotting proteins. The benefits of fish oil interventions are confounded by complex details in pharmacokinetics, pharmacodynamics, adverse events, timescale factors, topology, financial incentives and people's sense of cause and effect. Two basic aspects of n-3 HUFA that are overlooked in CVD dynamics are saturable, hyperbolic responses of the enzymes continually supplying n-6 HUFA and hard-to-control positive feedback receptor signals by excessive n-6 HUFA-based mediators. Multiple feedback loops in inflammation and thrombosis have diverse mediators, and reducing one mediator that occurs above its rate-limiting levels may not reduce the pathophysiology. Clinicians have developed some successful interventions that decrease CVD deaths in the form of secondary prevention. However, the current high CVD prevalence in the USA remains unchanged, and successful primary prevention of CVD remains uncertain. This review weighs the available evidence to help clinicians, the biomedical community and the public put the use of fish oil supplements into a balanced perspective.
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