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首页> 外文期刊>Antioxidants and redox signalling >Oxidized Derivatives of Linoleic Acid in Pediatric Metabolic Syndrome: Is Their Pathogenic Role Modulated by the Genetic Background and the Gut Microbiota?
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Oxidized Derivatives of Linoleic Acid in Pediatric Metabolic Syndrome: Is Their Pathogenic Role Modulated by the Genetic Background and the Gut Microbiota?

机译:小儿代谢综合征亚油酸的氧化衍生物:是遗传背景和肠道微生物调节的病原作用吗?

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摘要

fatty acid desaturase 1/2 ( FADS ) gene and by characterizing the gut microbiota. Subjects with MetS ( n = 50) showed higher concentrations of 9- and 13-oxo-octadecadienoic acid (9- and 13-oxo-ODE) than subjects without MetS ( n = 72). Both metabolites were associated with an adverse lipoprotein profile that was characterized by elevated very small-dense low-density lipoprotein ( p p = 0.01). Plasma 9- and 13-oxo-ODE were higher in subjects carrying the haplotype AA of the FADS gene cluster ( p = 0.030 and p = 0.048, respectively). Furthermore, the reduced gut bacterial load was associated with higher 9-oxo-ODE concentrations ( p = 0.035). This is the first study showing that high plasma OXLAM concentrations are associated with MetS and suggesting that the leading factors for high plasma concentrations of OXLAM might be the genetic background and the composition of the gut microbiota. In conclusion, high concentrations of 9- and 13-oxo-ODE, which may be the result of a genetic predisposition and a reduced gut bacterial load, are associated with MetS and with a proatherogenic lipoprotein profile in obese adolescents.
机译:脂肪酸去饱和酶1/2(FADS)基因以及表征肠道微生物。具有METS(n = 50)的受试者显示出比没有mets的受试者(n = 72)的受试者显示出较高浓度的9-和13-氧代 - 十八二烯酸(9-和13-氧代 - ode)。代谢物两种代谢物与不良脂蛋白曲线有关,其特征在于非常小密致的低密度脂蛋白(P P = 0.01)。血浆9-和13-氧代ode在承载FADS基因簇的单倍型Aa的受试者中较高(分别分别p = 0.030和p = 0.048)。此外,降低的肠道细菌载荷与较高的9-氧代焦浓度相关(P = 0.035)。这是第一研究表明,高血浆氧化物浓度与METS相关并表明高血浆浓度的奥克拉姆浓度的主要因素可能是遗传背景和肠道微生物的组成。总之,高浓度的9-和13-氧代颂,这可能是遗传易感性和降低的肠道细菌载荷的结果,与肥胖青少年中的受试者脂蛋白谱系相关。

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