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鱼油和炎症状态会改变小鼠血浆和组织中内源性大麻素和氧化脂质代谢组的n-3与n-6平衡。

Fish oil and inflammatory status alter the n-3 to n-6 balance of the endocannabinoid and oxylipin metabolomes in mouse plasma and tissues.

作者信息

Balvers Michiel G J, Verhoeckx Kitty C M, Bijlsma Sabina, Rubingh Carina M, Meijerink Jocelijn, Wortelboer Heleen M, Witkamp Renger F

机构信息

Division of Human Nutrition, Wageningen University, PO Box 8129, 6700 EV Wageningen, The Netherlands ; TNO, PO Box 370, 3700 AJ Zeist, The Netherlands.

出版信息

Metabolomics. 2012 Dec;8(6):1130-1147. doi: 10.1007/s11306-012-0421-9. Epub 2012 Apr 11.

Abstract

It is well established that dietary intake of n-3 fatty acids is associated with anti-inflammatory effects, and this has been linked to modulation of the oxylipin and endocannabinoid metabolomes. However, the amount of data on specific tissue effects is limited, and it is not known how inflammation affects this relation. In the present study we systematically explored the combined effects of n-3 fatty acid diets and inflammation on the in vivo endocannabinoid and oxylipin metabolomes using a multicompartment, detailed targeted lipidomics approach. Male C57BL/6 mice received diets containing 0, 1, or 3 % w/w fish oil (FO) for 6 weeks, after which 2 mg/kg LPS or saline was administered i.p. Levels of endocannabinoids/N-acylethanolamines (NAEs) and oxylipins, covering n-3 and n-6 fatty acid derived compounds, were determined in plasma, liver, ileum and adipose tissue using LC-MS/MS. FO generally increased 'n-3' NAEs and oxylipins at the expense of compounds derived from other fatty acids, affecting all branches of the oxylipin metabolome. LPS generally increased levels of endocannabinoids/NAEs and oxylipins, with opposing effects across plasma and tissues. Multivariate data analysis revealed that separation between diet groups in the saline treated groups was primarily explained by decreases in other than n-3 derived compounds. In the LPS treated groups, the separation was primarily explained by increases in n-3 derived compounds. In conclusion, FO caused marked changes in the n-3 to n-6 balance of the endocannabinoid and oxylipin metabolomes, with specific effects depending on inflammatory status. ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (doi:10.1007/s11306-012-0421-9) contains supplementary material, which is available to authorized users.

摘要

众所周知,饮食中摄入n-3脂肪酸具有抗炎作用,这与氧化脂质和内源性大麻素代谢组的调节有关。然而,关于特定组织效应的数据量有限,且尚不清楚炎症如何影响这种关系。在本研究中,我们使用多隔室、详细的靶向脂质组学方法,系统地探究了n-3脂肪酸饮食和炎症对体内内源性大麻素和氧化脂质代谢组的联合作用。雄性C57BL/6小鼠接受含0%、1%或3%(w/w)鱼油(FO)的饮食6周,之后腹腔注射2mg/kg脂多糖(LPS)或生理盐水。使用液相色谱-串联质谱法(LC-MS/MS)测定血浆、肝脏、回肠和脂肪组织中内源性大麻素/N-酰基乙醇胺(NAEs)和氧化脂质的水平,这些氧化脂质涵盖了源自n-3和n-6脂肪酸的化合物。FO通常会增加“n-3”NAEs和氧化脂质,同时减少源自其他脂肪酸的化合物,影响氧化脂质代谢组的所有分支。LPS通常会增加内源性大麻素/NAEs和氧化脂质的水平,在血浆和组织中产生相反的效应。多变量数据分析显示,生理盐水处理组中饮食组之间的分离主要是由n-3衍生化合物以外的化合物减少所解释。在LPS处理组中,分离主要是由n-3衍生化合物的增加所解释。总之,FO导致内源性大麻素和氧化脂质代谢组的n-3与n-6平衡发生显著变化,具体效应取决于炎症状态。电子补充材料:本文的在线版本(doi:10.1007/s11306-012-0421-9)包含补充材料,授权用户可获取。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4f72/3483099/97637b2104b7/11306_2012_421_Fig1_HTML.jpg

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