Omega-3 fatty acids and inflammatory processes: from molecules to man
Омега-3 жирные кислоты и воспалительные процессы: от молекул до человека
2017-09-12
SCID: 54.1/kdjhn2e7
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Docosahexaenoic acid (DHA)Eicosapentaenoic acid (EPA)Inflammation-resolving mediatorsNuclear factor κBOmega-3 fatty acids
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Abstract (AI)
Inappropriate, excessive or uncontrolled inflammation contributes to a range of human diseases. Inflammation involves a multitude of cell types, chemical mediators and interactions. The present article will describe nutritional and metabolic aspects of omega-6 (n-6) and omega-3 (n-3) fatty acids and explain the roles of bioactive members of those fatty acid families in inflammatory processes. Eicosapentaenoic acid (EPA) and docosahexaenoic acid (DHA) are n-3 fatty acids found in oily fish and fish oil supplements. These fatty acids are capable of partly inhibiting many aspects of inflammation including leucocyte chemotaxis, adhesion molecule expression and leucocyte-endothelial adhesive interactions, production of eicosanoids like prostaglandins and leukotrienes from the n-6 fatty acid arachidonic acid and production of pro-inflammatory cytokines. In addition, EPA gives rise to eicosanoids that often have lower biological potency than those produced from arachidonic acid, and EPA and DHA give rise to anti-inflammatory and inflammation resolving mediators called resolvins, protectins and maresins. Mechanisms underlying the anti-inflammatory actions of EPA and DHA include altered cell membrane phospholipid fatty acid composition, disruption of lipid rafts, inhibition of activation of the pro-inflammatory transcription factor nuclear factor κB so reducing expression of inflammatory genes and activation of the anti-inflammatory transcription factor peroxisome proliferator-activated receptor γ. Animal experiments demonstrate benefit from EPA and DHA in a range of models of inflammatory conditions. Human trials demonstrate benefit of oral n-3 fatty acids in rheumatoid arthritis and in stabilizing advanced atherosclerotic plaques. Intravenous n-3 fatty acids may have benefits in critically ill patients through reduced inflammation. The anti-inflammatory and inflammation resolving actions of EPA, DHA and their derivatives are of clinical relevance.
Key Findings
1
Animal studies show benefits of EPA and DHA across diverse inflammatory disease models, while human trials report benefits in rheumatoid arthritis and stabilization of advanced atherosclerotic plaques.
2
EPA and DHA exert anti-inflammatory effects by remodeling membrane phospholipids, disrupting lipid rafts, inhibiting NF-κB activation, and activating the anti-inflammatory transcription factor PPARγ.
3
EPA and DHA from oily fish and fish oil can partially inhibit multiple inflammatory processes, including leukocyte recruitment, endothelial adhesion, eicosanoid production, and pro-inflammatory cytokine release.
4
EPA produces eicosanoids that are generally less biologically potent than arachidonic-acid-derived counterparts, while EPA and DHA generate inflammation-resolving mediators including resolvins, protectins, and maresins.
5
Intravenous omega-3 fatty acids may reduce inflammation in critically ill patients, supporting clinical relevance of omega-3-derived anti-inflammatory and pro-resolving mediators.
Research Object
Omega-3 fatty acids EPA and DHA and their bioactive derivatives in inflammatory processes
Research Subject
The anti-inflammatory and inflammation-resolving effects and underlying mechanisms of EPA, DHA, and their derivatives
Publication Details
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2017-09-12
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