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母体饮食中的反式脂肪酸可能会损害泌乳大鼠乳腺中的脂质生物合成。

Trans fatty acids in maternal diet may impair lipid biosynthesis in mammary gland of lactating rats.

作者信息

Assumpção R P, Santos F D, Setta C L, Barreto G F, Matta I E A, Estadella D, Azeredo V B, Tavares do Carmo M G

机构信息

Instituto de Nutrição, Universidade Federal do Rio de Janeiro, Rio de Janeiro, Brasil.

出版信息

Ann Nutr Metab. 2002;46(5):169-75. doi: 10.1159/000065403.

Abstract

Although trans fatty acids are known to influence essential fatty acid (EFA) metabolism and serum levels of lipids and lipoproteins, little is known about their effects on the metabolism of mammary glands (MGs) during lactation. In this study, 5 groups of lactating Wistar rats were fed semisynthetic diets containing 7% soy oil (control); 7% partially hydrogenated vegetable oil (7% PHVO); 13% PHVO +7% soy oil (13% PHVO); 5% PHVO +2% soy oil (5% PHVO), and 3.5% PHVO +3.5% soy oil (3.5% PHVO). Dams were killed on the 12th day of lactation. Weight, lipid content (LC), in vivo lipogenesis rate (LR) and activity of the lipogenic (ATP-citrate lyase and malic) enzymes were evaluated in the MGs. Maternal food intake, weight gain, and total MG weight were not found to be significantly different between the groups. The groups with 13, 7 and 5% PHVO presented a lower (p < 0.05) LR in MGs when compared to controls, whereas MG LC was higher in the 7 and 13% groups than in controls. The observed decrease in MG lipogenesis was accompanied by a diminution (p < 0.05) in the activities of ATP-citrate lyase and malic enzymes. These data indicate a potential impairment of lipid metabolism in the MG by trans isomers in lactating rats.

摘要

虽然已知反式脂肪酸会影响必需脂肪酸(EFA)代谢以及脂质和脂蛋白的血清水平,但关于它们在哺乳期对乳腺(MG)代谢的影响却知之甚少。在本研究中,将5组哺乳期Wistar大鼠喂食含7%大豆油的半合成日粮(对照组);7%部分氢化植物油(7% PHVO);13% PHVO + 7%大豆油(13% PHVO);5% PHVO + 2%大豆油(5% PHVO),以及3.5% PHVO + 3.5%大豆油(3.5% PHVO)。在哺乳期第12天处死母鼠。评估了乳腺中的重量、脂质含量(LC)、体内脂肪生成率(LR)以及脂肪生成酶(ATP - 柠檬酸裂解酶和苹果酸酶)的活性。各实验组间母鼠的食物摄入量、体重增加和乳腺总重量未发现有显著差异。与对照组相比,含13%、7%和5% PHVO的实验组乳腺中的脂肪生成率较低(p < 0.05),而7%和13%组的乳腺脂质含量高于对照组。观察到的乳腺脂肪生成减少伴随着ATP - 柠檬酸裂解酶和苹果酸酶活性的降低(p < 0.05)。这些数据表明,反式异构体可能损害哺乳期大鼠乳腺中的脂质代谢。

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