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The Mediterranean Diet and Cardiovascular Protection: Biochemical Mechanisms with Emphasis on Platelet-Activating
Paraskevi Detopoulou1, Smaragdi Antonopoulou2, Pinelopi Douvogianni1
1Department of Nutritional Science and Dietetics, University of Peloponnese, Antikalamos, 24100 Kalamata, Greece.
Insights
The Mediterranean diet (MD) reduces cardiovascular events by inhibiting Platelet-Activating Factor (PAF). Rich in natural PAF inhibitors, MD foods combat atherosclerosis and promote longevity.
Area of Science:
- Cardiovascular Epidemiology
- Nutritional Science
- Molecular Biology
Background:
- Landmark studies show the Mediterranean diet (MD) significantly reduces cardiovascular events.
- The Mediterranean diet (MD) offers a functional model for human longevity through synergistic effects.
Purpose of the Study:
- To summarize evidence on the Mediterranean diet's (MD) protective cardiovascular effects.
- To elucidate the biological pathways, emphasizing Platelet-Activating Factor (PAF) inhibitors.
Main Methods:
- Review of epidemiological studies and clinical trials (e.g., Seven Countries Study, PREDIMED).
- Analysis of mechanistic pathways involving antioxidant, anti-inflammatory, and antithrombotic effects.
- Focus on the role of Platelet-Activating Factor (PAF) in atherosclerosis and its inhibition by dietary components.
Main Results:
- MD improves lipid profiles, endothelial function, and postprandial metabolism.
- Platelet-Activating Factor (PAF) is implicated in atherosclerosis initiation and progression.
- Mediterranean foods (olive oil, fish, vegetables) contain natural PAF inhibitors that reduce PAF activity and improve thrombosis biomarkers.
Conclusions:
- The Mediterranean diet (MD) exerts cardio-protective effects by targeting Platelet-Activating Factor (PAF).
- Dietary PAF inhibitors offer a promising strategy for preventing and managing atherosclerosis.
- Utilizing food by-products for PAF inhibitor extraction presents ecological and economic benefits.
Abstract:
Landmark epidemiological studies and clinical trials, such as the Seven Countries Study, the Lyon Diet Heart Study, the PREDIMED Study and the CORDIOPREV Study, have shown significant reductions in cardiovascular events in those following the Mediterranean diet (MD). The aim of the present work is to summarize the most robust available evidence and the major biological pathways underlying the protective effects of the MD, with particular emphasis on the role of PAF inhibitors. Mechanistically, MD functions through a complex synergy of antioxidant, anti-inflammatory, and antithrombotic effects that collectively improve lipid profiles, enhance endothelial function, optimize postprandial metabolism and cell membrane signaling, making it a functional model for human longevity. The PAF-Implicated Atherosclerosis Theory has emerged as a key unifying framework, proposing that Platelet-Activating Factor (PAF)-a highly potent lipid inflammatory mediator-plays a central role in the initiation and progression of atherosclerosis. Oxidized LDL promotes the production of PAF and PAF-like lipids, leading to endothelial dysfunction, vascular inflammation, and atherosclerotic plaque formation. Traditional Mediterranean foods are rich in natural PAF inhibitors, particularly the polar lipid fractions of extra virgin olive oil, as well as wine, fish, vegetables, onions, and garlic. Animal studies demonstrate that these compounds can reduce or even regress atherosclerotic lesions, independently of serum cholesterol levels. Human dietary interventions have further shown that MD-based meals and functional foods enriched with PAF inhibitors reduce PAF activity and improve thrombosis-related biomarkers. This mechanistic framework helps explain phenomena such as the "French Paradox" and the cardio-protective effects associated with fish consumption. Moreover, the extraction of PAF inhibitors from Mediterranean food by-products, such as olive pomace, offers promising ecological and economic advantages. Collectively, targeting PAF and increasing dietary intake of PAF inhibitors represent promising strategies for the prevention and management of atherosclerosis and other inflammatory diseases, supporting the view that PAF may function as a major, modifiable risk factor in these conditions.
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