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首页> 外文期刊>Comparative biochemistry and physiology, Part B. Biochemistry & molecular biology >Effects of dietary supplementation of coriander oil, in canola oil diets, on the metabolism of [1-~(14)C] 18:3n-3 and [1-~(14)C] 18:2n-6 in rainbow trout hepatocytes
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Effects of dietary supplementation of coriander oil, in canola oil diets, on the metabolism of [1-~(14)C] 18:3n-3 and [1-~(14)C] 18:2n-6 in rainbow trout hepatocytes

机译:香菜的膳食补充剂的影响油,菜籽油饮食、代谢[1 - ~ (14) C] 18:3n-3和[1 - ~ (14)C] 18:2n-6虹鳟鱼肝细胞

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摘要

The aim of this study was to investigate the effects of petroselinic acid, found in coriander oil, on the ability of rainbow trout hepatocytes to increase the production of eicosapentaenoic acid (20:5n-3; EPA) and docosahexaenoic acid (22:6n-3; DHA) from [1-~(14)C] α-linolenic acid (18:3n-3; ALA) and to reduce the production of arachidonic acid (20:4n-6; ARA) from [1-~(14)C] 18:2n-6. Addition of coriander oil increased the production of 22:6n-3, from [1-~(14)C] 18:3n-3, at the 0.5 and 1.0% inclusion levels and reduced the conversion of [1-~(14)C] 18:2n-6 to 20:4n-6. β-Oxidation was significantly increased at the 1.5% inclusion level for [1-~(14)C] 18:2n-6, however β-oxidation for [1-~(14)C] 18:3n-3 only showed an increasing trend. Acetate, a main breakdown product of fatty acids (FA) via peroxisomal β-oxidation, decreased three-fold for [1-14C] 18:2n-6 and nearly doubled for [1-14C] 18:3n-3 when coriander was added at a 1.5% inclusion level. Acyl coenzyme A oxidase (ACO) enzyme activity showed no significant differences between treatments. Relative gene expression of {increment}6 desaturase decreased with addition of coriander oil compared to the control. The addition of petroselinic acid via coriander oil to vegetable oil (VO) based diets containing no fishmeal (FM) or fish oil (FO), significantly increased the production of anti-inflammatory precursor 22:6n-3 (P=0.011) and decreased pro-inflammatory precursor 20:4n-6 (P=0.023) in radiolabelled hepatocytes of rainbow trout.
机译:本研究的目的是调查petroselinic酸的影响,香菜石油,虹鳟鱼肝细胞的能力增加二十碳五烯的生产酸(20:5n-3;(22:6n-3;(18:3n-3;花生四烯酸(20:4n-6;18:2n-6。22:6n-3的生产,从[1 - ~ (14)C] 18:3n-3,在1.0%和0.5包含水平和降低的转换(1 - ~ (14)C) 18:2n-6 20:4n-6。β氧化是显著增加1.5%的夹杂物级别(1 - ~ (14)C) 18:2n-6,然而β氧化为[1 - ~ (14)C] 18:3n-3均呈增长趋势。脂肪酸的分解产物(FA)通过过氧化物酶病β氧化,减少了3倍[1-14C] 18:2n-6和几乎翻了一番(1-14C)18:3n-3香菜时增加了1.5%夹杂物的水平。酶活性没有显著差异之间的治疗。{}增量6 desaturase减少增加芫荽油比控制。通过芫荽油添加petroselinic酸基于植物油(VO)饮食不含鱼粉鱼油(FM)或(FO)增加抗炎的生产前体22:6n-3 (P = 0.011),减少促炎前体20:4n-6 (P = 0.023)放射性标记虹鳟鱼的肝细胞。

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