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Effect of Dietary Fatty Acids on Inflammatory Gene Expression in Healthy Humans

机译:膳食脂肪酸对健康人炎症基因表达的影响

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摘要

Over the past 100 years, changes in the food supply in Western nations have resulted in alterations in dietary fatty acid consumption, leading to a dramatic increase in the ratio of omega-6 (ω6) to ω3 polyunsaturated fatty acids (PUFA) in circulation and in tissues. Increased ω6/ω3 ratios are hypothesized to increase inflammatory mediator production, leading to higher incidence of inflammatory diseases, and may impact inflammatory gene expression. To determine the effect of reducing the ω6/ω3 ratio on expression of inflammatory pathway genes in mononuclear cells, healthy humans were placed on a controlled diet for 1 week, then given fish oil and borage oil for an additional 4 weeks. Serum and neutrophil fatty acid composition and ex vivo leukotriene B4 production from stimulated neutrophils were measured at the start and end of the supplementation period and after a 2-week washout. RNA was isolated from mononuclear cells and expression of PI3K, Akt, NFκB, and inflammatory cytokines was measured by real-time PCR. A marked increase was seen in serum and neutrophil levels of long-chain ω3 PUFA concomitant with a reduction in the ω6/ω3 PUFA ratio (40%). The ex vivo capacity of stimulated neutrophils to produce leukotriene B4 was decreased by 31%. Expression of PI3Kα and PI3Kγ and the quantity of PI3Kα protein in mononuclear cells was reduced after supplementation, as was the expression of several proinflammatory cytokines. These data reveal that PUFA may exert their clinical effects via their capacity to regulate the expression of signal transduction genes and genes for proinflammatory cytokines.
机译:在过去的100年中,西方国家食品供应的变化导致饮食中脂肪酸的消费量发生了变化,导致循环和循环中的omega-6(ω6)与ω3多不饱和脂肪酸(PUFA)的比例急剧增加。在组织中。假设增加的ω6/ω3比值会增加炎性介质的产生,从而导致炎性疾病的发生率更高,并可能影响炎性基因的表达。为了确定降低ω6/ω3比值对单核细胞中炎性途径基因表达的影响,将健康的人置于对照饮食中1周,然后再加鱼油和琉璃苣油4周。在补充期的开始和结束以及2周的洗脱后,测量血清和中性粒细胞脂肪酸组成以及受刺激的中性粒细胞的离体白三烯B4产生。从单核细胞中分离RNA,并通过实时PCR测量PI3K,Akt,NFκB和炎性细胞因子的表达。长链ω3PUFA的血清和中性粒细胞水平显着增加,同时ω6/ω3PUFA比值降低(40%)。受刺激的中性粒细胞产生白三烯B4的离体能力降低了31%。补充后,单核细胞中PI3Kα和PI3Kγ的表达以及PI3Kα蛋白的量减少,几种促炎细胞因子的表达也减少。这些数据表明,PUFA可能通过调节信号转导基因和促炎细胞因子基因的表达来发挥其临床作用。

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