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野生食用海兔属物种中的微量元素:与脂肪酸去饱和-延伸指数的关系。

Trace elements in wild edible Aplysia species: Relationship with the desaturation-elongation indexes of fatty acids.

机构信息

REQUIMTE/LAQV, Laboratório de Farmacognosia, Departamento de Química, Faculdade de Farmácia, Universidade do Porto, R. Jorge Viterbo Ferreira, nº 228, 4050-313, Porto, Portugal.

REQUIMTE/LAQV, Departamento de Ciências Químicas, Laboratório de Química Aplicada, Faculdade de Farmácia, Universidade do Porto, Rua Jorge Viterbo Ferreira, 228, 4050-313, Porto, Portugal.

出版信息

Chemosphere. 2018 Oct;208:682-690. doi: 10.1016/j.chemosphere.2018.06.034. Epub 2018 Jun 5.

Abstract

The profile of essential and non-essential elements was traced in the edible sea hares Aplysia depilans Gmelin, Aplysia fasciata Poiret and Aplysia punctata Cuvier. Manganese (Mn), iron (Fe), zinc (Zn), copper (Cu) and selenium (Se) were identified as the major essential elements. Risk assessment evidenced that the levels of cadmium (Cd) and lead (Pb) did not exceed the maximum limit value established by the European Regulation, the contents of chromium (Cr), nickel (Ni) and arsenic (As) being also below the levels established by the FDA guide. A correlation between trace elements levels and desaturation-elongation indexes of fatty acids was found. While Cd, Se and molybdenum (Mo) seem to promote the desaturation-elongation process involved on the production of C20:4n-6c, Ni, Cr and Fe may potentiate the conversion of C18:3n-3c to C20:5n-3c. Furthermore, cobalt (Co), Ni and Cu appear to decrease Δ9 desaturation index. Besides the suggested biosynthetic switch modulated by trace elements, the nutritional value of the species is further strengthened.

摘要

对食用海参 Aplysia depilans Gmelin、Aplysia fasciata Poiret 和 Aplysia punctata Cuvier 中的必需和非必需元素进行了分析。锰(Mn)、铁(Fe)、锌(Zn)、铜(Cu)和硒(Se)被确定为主要的必需元素。风险评估表明,镉(Cd)和铅(Pb)的含量未超过欧洲法规规定的最大限量值,铬(Cr)、镍(Ni)和砷(As)的含量也低于 FDA 指南规定的水平。还发现微量元素水平与脂肪酸去饱和-延长指数之间存在相关性。尽管 Cd、Se 和钼(Mo)似乎促进了涉及 C20:4n-6c 生产的去饱和-延长过程,但 Ni、Cr 和 Fe 可能会促进 C18:3n-3c 向 C20:5n-3c 的转化。此外,钴(Co)、Ni 和 Cu 似乎降低了 Δ9 去饱和指数。除了微量元素调节的这种生物合成开关之外,该物种的营养价值也得到了进一步加强。

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