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膳食必需脂肪酸对子宫C20和C22脂肪酸组成的影响。

The influence of dietary essential fatty acids on uterine C20 and C22 fatty acid composition.

作者信息

Howie A, Leaver H A, Wilson N H, Yap P L, Aitken I D

机构信息

Department of Pharmacology, University of Edinburgh, UK.

出版信息

Prostaglandins Leukot Essent Fatty Acids. 1992 Jun;46(2):111-21. doi: 10.1016/0952-3278(92)90217-7.

Abstract

The effect of dietary fatty acids on uterine fatty acid composition was studied in rats fed control diet or semi-synthetic diet supplemented with 1.5 microliter/g/day evening primrose oil (EPO) or fish oil (FO). Diet-related changes in uterine lipid were detected within 21 days. Changes of 2- to 20-fold were detected in the uterine n-6 and n-3 essential fatty acids (EFA) and in certain saturated and monounsaturated fatty acids. The FO diet was associated with higher uterine C20 and C22 n-3, and the EPO diet, with higher uterine n-6 fatty acid. High uterine C18:2 n-6 was detected in neutral lipid (NL) of rats fed high concentrations of this fatty acid, but there was little evidence of selective incorporation or retention of C18:2 n-6 by uterine NL. The incorporation of EFA into uterine phospholipids (PL) was greater than NL EFA incorporation, and uterine PL n-3/n-6 ratios showed greater diet dependence. Tissue/diet fatty acid ratios in NL and PL also indicated preferential incorporation/synthesis of C16:1 n-9, and C16:0, and there was greater incorporation of C12:0 and C14:0 into uteri of rats fed EPO and FO. Replacement of 50-60% of arachidonate with n-3 EFA in uterine PL may inhibit n-6 EFA metabolism necessary for uterine function at parturition.

摘要

在喂食对照饮食或补充了1.5微升/克/天月见草油(EPO)或鱼油(FO)的半合成饮食的大鼠中,研究了膳食脂肪酸对子宫脂肪酸组成的影响。在21天内检测到了与饮食相关的子宫脂质变化。子宫中n-6和n-3必需脂肪酸(EFA)以及某些饱和和单不饱和脂肪酸的变化幅度为2至20倍。FO饮食与子宫中较高的C20和C22 n-3相关,而EPO饮食与子宫中较高的n-6脂肪酸相关。在喂食高浓度该脂肪酸的大鼠的中性脂质(NL)中检测到高含量的子宫C18:2 n-6,但几乎没有证据表明子宫NL选择性掺入或保留C18:2 n-6。EFA掺入子宫磷脂(PL)的量大于NL中EFA的掺入量,并且子宫PL的n-3/n-6比值显示出更大的饮食依赖性。NL和PL中的组织/饮食脂肪酸比值也表明优先掺入/合成C16:1 n-9和C16:0,并且在喂食EPO和FO的大鼠子宫中,C12:0和C14:0的掺入量更大。在子宫PL中用n-3 EFA替代50-60%的花生四烯酸可能会抑制分娩时子宫功能所需的n-6 EFA代谢。

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