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脂肪细胞的脂质储存和脂肪因子生成受18碳脂肪酸衍生的脂氧合酶氧化脂质的调节。

Adipocyte lipid storage and adipokine production are modulated by lipoxygenase-derived oxylipins generated from 18-carbon fatty acids.

作者信息

Zahradka Peter, Neumann Shannon, Aukema Harold M, Taylor Carla G

机构信息

Department of Physiology and Pathophysiology, University of Manitoba, Canada; Department of Human Nutritional Sciences, University of Manitoba, Canada; Canadian Centre for Agri-Food Research in Health and Medicine, St. Boniface Albrechtsen Research Centre, Winnipeg, Canada.

Department of Physiology and Pathophysiology, University of Manitoba, Canada; Canadian Centre for Agri-Food Research in Health and Medicine, St. Boniface Albrechtsen Research Centre, Winnipeg, Canada.

出版信息

Int J Biochem Cell Biol. 2017 Jul;88:23-30. doi: 10.1016/j.biocel.2017.04.009. Epub 2017 Apr 29.

Abstract

Generation of oxylipins (oxygenated metabolites of fatty acids) by lipoxygenases may be responsible for the beneficial effects of 20- and 22-carbon n-3 fatty acids on adipose tissue dysfunction in obesity, but the potential actions of oxylipins derived from 18-carbon fatty acids, which are generally at higher levels in the diet, are unknown. We therefore compared the effects of select lipoxygenase-derived oxylipins produced from α-linolenic acid (ALA, C18:3 n-3), linoleic acid (LA, C18:2 n-6), and arachidonic acid (AA, C20:4 n-6) on key adipocyte functions that are altered in obesity. Individual oxylipins were added to the culture medium of differentiating 3T3-L1 preadipocytes for 6days. Lipid accumulation was subsequently determined by Oil Red O staining, while Western blotting was used to measure levels of proteins associated with lipid metabolism and characteristics of adipocyte functionality. Addition of all oxylipins at 30nM was sufficient to significantly decrease triglyceride accumulation in lipid droplets, and higher levels completely blocked lipid production. Our results establish that lipoxygenase-derived oxylipins produced from 18-carbon PUFA differentially affect multiple adipocyte processes associated with lipid storage and adipokine production. However, these effects are not due to the oxylipins blocking adipocyte maturation and thus globally suppressing all adipocyte characteristics. Furthermore, these oxylipin species decrease the lipid content of adipocytes regardless from which precursor fatty acid or lipoxygenase they were derived. Consequently, adipocyte characteristics can be altered through the ability of oxylipins to selectively modulate levels of proteins involved in both lipid metabolism and adipokine production.

摘要

脂氧合酶生成的氧化脂质(脂肪酸的氧化代谢产物)可能是20碳和22碳n-3脂肪酸对肥胖症患者脂肪组织功能障碍产生有益作用的原因,但源自18碳脂肪酸(在饮食中含量通常较高)的氧化脂质的潜在作用尚不清楚。因此,我们比较了由α-亚麻酸(ALA,C18:3 n-3)、亚油酸(LA,C18:2 n-6)和花生四烯酸(AA,C20:4 n-6)产生的特定脂氧合酶衍生氧化脂质对肥胖症中发生改变的关键脂肪细胞功能的影响。将单个氧化脂质添加到分化中的3T3-L1前脂肪细胞的培养基中6天。随后通过油红O染色测定脂质积累,同时使用蛋白质印迹法测量与脂质代谢相关的蛋白质水平和脂肪细胞功能特性。添加30nM的所有氧化脂质足以显著降低脂滴中的甘油三酯积累,更高水平则完全阻断脂质生成。我们的结果表明,由18碳多不饱和脂肪酸产生的脂氧合酶衍生氧化脂质对与脂质储存和脂肪因子产生相关的多个脂肪细胞过程有不同影响。然而,这些影响并非由于氧化脂质阻断脂肪细胞成熟从而全面抑制所有脂肪细胞特性。此外,无论这些氧化脂质源自何种前体脂肪酸或脂氧合酶,它们都会降低脂肪细胞的脂质含量。因此,氧化脂质能够选择性调节参与脂质代谢和脂肪因子产生的蛋白质水平,从而改变脂肪细胞特性。

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