首页> 美国卫生研究院文献>Journal of Lipid Research >Metabolomics reveals increased isoleukotoxin diol (1213-DHOME) in human plasma after acute Intralipid infusion
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Metabolomics reveals increased isoleukotoxin diol (1213-DHOME) in human plasma after acute Intralipid infusion

机译:代谢组学揭示了急性脂质体内输注后人血浆中异白细胞毒素二醇(1213-DHOME)的增加

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摘要

Intralipid is a fat emulsion that is regularly infused into humans and animals. Despite its routine use, Intralipid infusion can cause serious adverse reactions, including immunosuppression. Intralipid is a complex mix of proteins, lipids, and other small molecules, and the effect of its infusion on the human plasma metabolome is unknown. We hypothesized that untargeted metabolomics of human plasma after an Intralipid infusion would reveal novel insights into its effects. We infused Intralipid and saline into 10 healthy men in a double-blind, placebo-controlled experiment and used GC/MS, LC/MS, and NMR to profile the small-molecule composition of their plasma before and after infusion. Multivariate statistical analysis of the 40 resulting plasma samples revealed that after Intralipid infusion, a less-well-characterized pathway of linoleic acid metabolism had resulted in the appearance of (9Z)-12,13-dihydroxyoctadec-9-enoic acid (12,13-DHOME, P < 10−3), a leukotoxin that has powerful physiological effects and is known to inhibit the neutrophil respiratory burst. Intralipid infusion caused increased plasma 12,13-DHOME. Given that 12,13-DHOME is known to directly affect neutrophil function, we conclude that untargeted metabolomics may have revealed a hitherto-unknown mechanism of intralipid-induced immunosuppression.
机译:脂质内是一种脂肪乳剂,经常注入人体和动物体内。尽管常规使用,但脂质内输注会引起严重的不良反应,包括免疫抑制。脂质内是蛋白质,脂质和其他小分子的复杂混合物,其输注对人体血浆代谢组的影响尚不清楚。我们假设脂质体内输注后人血浆的非靶向代谢组学将揭示对其作用的新颖见解。在一项双盲,安慰剂对照的实验中,我们向10名健康男性注入了Intralipid和生理盐水,并使用GC / MS,LC / MS和NMR分析了输注前后血浆中的小分子成分。对40个所得血浆样品进行的多变量统计分析显示,在脂质内输注后,表征较少的亚油酸代谢途径导致出现了(9Z)-12,13-dihydroxyoctadec-9-enoic acid(12,13 -DHOME,P <10 −3 ),一种白细胞毒素,具有强大的生理作用,并已知可抑制中性粒细胞呼吸爆发。脂质内输注导致血浆12,13-DHOME增加。鉴于已知12,13-DHOME直接影响嗜中性粒细胞的功能,我们得出的结论是,未靶向的代谢组学可能已经揭示了脂质内诱导的免疫抑制的迄今未知的机制。

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