首页> 美国卫生研究院文献>Journal of Lipid Research >Dietary omega-3 fatty acids modulate the eicosanoid profile in man primarily via the CYP-epoxygenase pathway
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Dietary omega-3 fatty acids modulate the eicosanoid profile in man primarily via the CYP-epoxygenase pathway

机译:膳食中的omega-3脂肪酸主要通过CYP-环氧酶途径调节人的类花生酸分布

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摘要

Cytochrome P450 (CYP)-dependent metabolites of arachidonic acid (AA) contribute to the regulation of cardiovascular function. CYP enzymes also accept EPA and DHA to yield more potent vasodilatory and potentially anti-arrhythmic metabolites, suggesting that the endogenous CYP-eicosanoid profile can be favorably shifted by dietary omega-3 fatty acids. To test this hypothesis, 20 healthy volunteers were treated with an EPA/DHA supplement and analyzed for concomitant changes in the circulatory and urinary levels of AA-, EPA-, and DHA-derived metabolites produced by the cyclooxygenase-, lipoxygenase (LOX)-, and CYP-dependent pathways. Raising the Omega-3 Index from about four to eight primarily resulted in a large increase of EPA-derived CYP-dependent epoxy-metabolites followed by increases of EPA- and DHA-derived LOX-dependent monohydroxy-metabolites including the precursors of the resolvin E and D families; resolvins themselves were not detected. The metabolite/precursor fatty acid ratios indicated that CYP epoxygenases metabolized EPA with an 8.6-fold higher efficiency and DHA with a 2.2-fold higher efficiency than AA. Effects on leukotriene, prostaglandin E, prostacyclin, and thromboxane formation remained rather weak. We propose that CYP-dependent epoxy-metabolites of EPA and DHA may function as mediators of the vasodilatory and cardioprotective effects of omega-3 fatty acids and could serve as biomarkers in clinical studies investigating the cardiovascular effects of EPA/DHA supplementation.
机译:花生四烯酸(AA)的细胞色素P450(CYP)依赖性代谢产物有助于调节心血管功能。 CYP酶也接受EPA和DHA产生更有效的血管舒张性和潜在的抗心律不齐的代谢物,表明内源性CYP-类花生酸的分布可以通过饮食中的omega-3脂肪酸来改变。为了验证这一假设,我们对20名健康志愿者进行了EPA / DHA补充治疗,并分析了由环氧合酶,脂氧合酶(LOX)和CYP依赖性途径。将Omega-3指数从大约4提高到8,主要是导致EPA衍生的CYP依赖型环氧代谢物大量增加,随后EPA和DHA衍生的LOX依赖的单羟基代谢物(包括resolvin E的前体)增加和D家庭;未检测到resolvins本身。代谢物/前体脂肪酸的比率表明,CYP环氧酶的EPA代谢EPA的效率是AA的8.6倍,DHA代谢的效率是AA的2.2倍。对白三烯,前列腺素E,前列腺素和血栓烷形成的影响仍然很弱。我们建议EPA和DHA的CYP依赖型环氧代谢物可能充当omega-3脂肪酸的血管舒张和心脏保护作用的介体,并可以在临床研究EPA / DHA补充心血管效应的研究中用作生物标志物。

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