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Dietary lipid level affects fatty acid composition and hydrolaseactivities of intestinal brush border membrane in seabass

机译:膳食脂质水平影响鲈鱼肠刷缘膜的脂肪酸组成和水解酶活性

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Triplicate groups of juvenile seabass (initial weight of 241 g) were fed during 13 weeks three isonitrogenous experimental diets containing different lipid levels, 12% (LL group), 21% (ML group) and 30% (HL group). At the end of the experiment, fish weight gain was similar among the 3 dietary groups. Intestinal brush border membranes were purified for each dietary group; one part of the brush border fraction was dedicated to enzyme assays, the remaining fraction being used for lipid extraction followed by fatty acid analysis. The fatty acid composition of the brush border membrane differed among the 3 groups, although the 3 experimental diets had the same fatty acid composition. The increase in dietary lipid level resulted in a lowering in (n-3) polyunsaturated fatty acid (PUFA) paralleled with an increase in monounsaturated fatty acid. A significant reduction in the brush border enzyme activities, namely alkaline phosphatase, aminopeptidase N, gamma -glutamyl transpeptidase and maltase, was also observed with the elevation of the dietary lipid level. The change in activity of intestinal digestive enzymes, which are membrane-bound proteins, could be attributed to the modification of fatty acid composition and fluidity of the brush border membranes (BBM). Such lowering in PUFA and increase in monounsaturated fatty acid in BBM, concomitant with a decline in membrane enzymatic activity, has been described as a malnutrition indicator in mammals. It raises the question of possible disorders of gut functions in fish fed increasing lipid levels.
机译:在13周内给三组幼体鲈鱼(初始重量241 g)喂食三种含不同脂质水平的等氮实验饮食,分别为12%(LL组),21%(ML组)和30%(HL组)。在实验结束时,三个饮食组的鱼增重相似。每个饮食组的肠刷缘膜均得到纯化。刷状边界部分的一部分专用于酶分析,其余部分用于脂质提取,然后进行脂肪酸分析。尽管3种实验饮食具有相同的脂肪酸组成,但3组之间刷状缘膜的脂肪酸组成却有所不同。饮食中脂质水平的增加导致(n-3)多不饱和脂肪酸(PUFA)降低​​,同时单不饱和脂肪酸增加。随着饮食脂质水平的升高,还观察到刷状缘酶活性的显着降低,即碱性磷酸酶,氨基肽酶N,γ-谷氨酰转肽酶和麦芽糖酶。肠内消化酶(膜结合蛋白)活性的变化可能归因于脂肪酸成分的修饰和刷状缘膜(BBM)的流动性。 PUFA的这种降低和BBM中单不饱和脂肪酸的增加,伴随着膜酶活性的降低,已被描述为哺乳动物的营养不良指标。这就提出了在喂食增加脂质水平的鱼类中肠道功能可能失调的问题。

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