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喂食α-亚麻酸(18:3n-3)或二十碳三烯酸(20:3n-3)后不同小鼠组织的磷脂脂肪酸组成。

Phospholipid fatty acid composition of various mouse tissues after feeding alpha-linolenate (18:3n-3) or eicosatrienoate (20:3n-3).

作者信息

Berger A, German J B

机构信息

Department of Food Science, University of California, Davis 95616.

出版信息

Lipids. 1990 Aug;25(8):473-80. doi: 10.1007/BF02538091.

Abstract

The selective incorporation of dietary alpha-linolenate (18:3n-3) and its elongation product, eicosatrienoate (20:3n-3), into various phospholipids (PL) of mouse liver, spleen, kidney, and heart, was examined in a two-week feeding trial by assessing mol % changes in associated fatty acids. Mice were fed fat-free AIN 76A diets modified with either 2 wt% safflower oil (control); 1% safflower and 1% linolenate; or 1% safflower and 1% eicosatrienoate. After linolenate or eicosatrienoate feeding, 20:4n-6 was reduced by 36-50% in liver phosphatidylcholine (PC) and in liver and spleen phosphatidylethanolamine (PE). Linolenate was minimally incorporated into PL, but was desaturated and elongated to 20:5n-3, 22:5n-3, and 22:6n-3, with notable differences in the quantity of these n-3 derivatives associated with different tissues and PL. Eicosatrienoate was uniquely incorporated into the cardiolipin (CL) pool of all organs. There was also considerable retroconversion of 20:3n-3 to 18:3n-3 (PC,PE). Dietary eicosatrienoate may therefore affect metabolism in diverse ways--20:3n-3, which is retroconverted to 18:3n-3, may provide substrate for 20:5n-3 and 22:6n-3 syntheses, whereas intact 20:3n-3 may be incorporated into the CL pool. Acyl modifications of CL are known to affect the activity of key innermitochondrial enzymes, such as cytochrome c oxidase.

摘要

在一项为期两周的喂养试验中,通过评估相关脂肪酸的摩尔百分比变化,研究了膳食中的α-亚麻酸(18:3n-3)及其延长产物二十碳三烯酸(20:3n-3)选择性掺入小鼠肝脏、脾脏、肾脏和心脏的各种磷脂(PL)中的情况。给小鼠喂食用2 wt%红花油(对照)、1%红花油和1%亚麻酸或1%红花油和1%二十碳三烯酸改良的无脂AIN 76A日粮。在喂食亚麻酸或二十碳三烯酸后,肝脏磷脂酰胆碱(PC)以及肝脏和脾脏磷脂酰乙醇胺(PE)中的20:4n-6减少了36 - 50%。亚麻酸极少掺入磷脂,但会去饱和并延长为20:5n-3、22:5n-3和22:6n-3,这些n-3衍生物在不同组织和磷脂中的含量存在显著差异。二十碳三烯酸独特地掺入所有器官的心磷脂(CL)库中。20:3n-3也有相当程度逆向转化为18:3n-3(PC、PE)。因此,膳食中的二十碳三烯酸可能以多种方式影响代谢——逆向转化为18:3n-3的20:3n-3可能为20:5n-3和22:6n-3的合成提供底物,而完整的20:3n-3可能掺入CL库中。已知CL的酰基修饰会影响线粒体内关键酶的活性,如细胞色素c氧化酶。

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