CCMAR, Universidade do Algarve, Campus de Gambelas, 8005-139 Faro, Portugal.
IPMA, Rua Alfredo Magalhães Ramalho, 6, 1495-006 Lisboa, Portugal; CIIMAR/CIMAR, Universidade do Porto, Rua do Bragas, 4050-123 Porto, Portugal.
Food Res Int. 2017 Sep;99(Pt 3):1103-1109. doi: 10.1016/j.foodres.2016.10.030. Epub 2016 Oct 23.
Fish and seafood consumption are increasing worldwide and the contribution of aquaculture products to consumers' diets is significant. External feeding in aquaculture unlocks the possibility of tailoring fish products with health beneficial compounds. A study was undertaken to evaluate the feed fortification with an iodine-rich macroalgae (Laminaria digitata) and selenised yeast, at its maximum permitted levels, on minerals and vitamins content in rainbow trout edible part. Dietary supplementation resulted in a six-fold increase for iodine and a 2.9-fold increase for selenium contents in trout fillets without altering sensorial traits. The fortified fish presented a nutritional contribution of 12.5% DRI for iodine and 78% DRI for selenium, but all produced fish could supply 80% DRI for vitamin D. Overall, fish from this trial could be labelled as "high in selenium and high in vitamin D" under the EFSA definition for a functional food.
全球范围内鱼类和海鲜的消费正在增加,水产养殖产品对消费者饮食的贡献也非常显著。水产养殖中的外部喂养为具有健康益处的化合物定制鱼类产品提供了可能。本研究旨在评估在最高允许水平下,用富含碘的大型藻类(海带)和硒化酵母对虹鳟鱼可食用部分的矿物质和维生素含量进行饲料强化。膳食补充使鱼片的碘含量增加了六倍,硒含量增加了两倍九倍,而感官特性没有改变。强化后的鱼类为碘提供了 12.5%的 DRIs(每日推荐摄入量)贡献,为硒提供了 78%的 DRIs 贡献,但所有生产的鱼类都可以为维生素 D 提供 80%的 DRIs 贡献。总的来说,根据 EFSA(欧洲食品安全局)对功能性食品的定义,本试验中的鱼类可以被标记为“高硒和高维生素 D”。