首页> 外文期刊>The British Journal of Nutrition >Effects of decontaminated fish oil or a fish and vegetable oil blend on persistent organic pollutant and fatty acid compositions in diet and flesh of Atlantic salmon (Salmo salar)
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Effects of decontaminated fish oil or a fish and vegetable oil blend on persistent organic pollutant and fatty acid compositions in diet and flesh of Atlantic salmon (Salmo salar)

机译:去污鱼油或鱼油和植物油混合物对大西洋鲑(Salmo salar)饮食和果肉中持久性有机污染物和脂肪酸成分的影响

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摘要

The health benefits of seafood are well documented and based on the unique supply of n-3 highly unsaturated fatty acids (HUFA). Aquaculture now contributes about 50% of food-grade seafood globally and Atlantic salmon (Salmo salar) is a rich source of n-3 HUFA. However, salmon and other oily fish can accumulate lipophilic persistent organic pollutants (POP), including dioxins (PCDD/F), polychlorinated biphenyls (PCB) and polybrominated diphenyl ethers (PBDE), derived largely from feed. In the present study, triplicate groups of salmon, of initial weight 0.78kg, were fed one of three experimental diets for 11 weeks. The diets were coated with either a northern fish oil (FO) with a high POP content (cNFO), the same oil that had been decontaminated (deNFO) or a blend of southern fish oil, rapeseed and soyabean oils (SFO/RO/SO). Dietary PCDD/F+dioxin-like PCB (DL-PCB) concentrations were 17.36, 0.45 and 0.53ng toxic equivalents (TEQ)/kg, respectively. After 11 weeks, the flesh concentrations in fish fed the cNFO, deNFO and SFO/RO/SO diets were 6.42, 0.34 and 0.41ng TEQ/kg, respectively. There were no differences in flesh EPA and DHA between fish fed the cNFO or deNFO diets although EPA and DHA were reduced by 50 and 30%, respectively, in fish fed the SFO/RO/SO diet. Thus, decontaminated FO can be used to produce salmon high in n-3 HUFA and low in POP. Salmon produced using deNFO would be of high nutritional value and very low in POP and would utilise valuable fish oils that would otherwise be destroyed due to their high pollutant concentrations.
机译:海鲜对健康的好处已得到充分证明,并基于n-3高度不饱和脂肪酸(HUFA)的独特供应。水产养殖目前占全球食品级海鲜的约50%,大西洋鲑(Salmo salar)是n-3 HUFA的丰富来源。但是,鲑鱼和其他油性鱼类会积累主要来自饲料的亲脂性持久性有机污染物,包括二恶英(PCDD / F),多氯联苯(PCB)和多溴联苯醚(PBDE)。在本研究中,将三重初始重量为0.78kg的鲑鱼组喂食三种实验饮食之一,持续11周。日粮上涂有高POP含量(cNFO)的北部鱼油(FO),已去污的相同油(deNFO)或南部鱼油,菜籽油和大豆油的混合物(SFO / RO / SO )。日粮PCDD / F +二恶英样PCB(DL-PCB)浓度分别为17.36、0.45和0.53ng毒性当量(TEQ)/ kg。 11周后,饲喂cNFO,deNFO和SFO / RO / SO日粮的鱼的鱼肉浓度分别为6.42、0.34和0.41ng TEQ / kg。饲喂cNFO或deNFO日粮的鱼的肉中EPA和DHA没有差异,尽管饲喂SFO / RO / SO日粮的鱼的EPA和DHA分别降低了50%和30%。因此,去污染的FO可用于生产高n-3 HUFA而低POP的鲑鱼。使用deNFO生产的鲑鱼具有很高的营养价值,POP含量也很低,并且会利用有价值的鱼油,否则这些鱼油会因其高污染物浓度而被破坏。

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