Mercury, selenium and fish oils in marine food webs and implications for human health
URI (for links/citations):
https://elib.sfu-kras.ru/handle/2311/28028Author:
Gribble, M. O.
Karimi, R.
Feingold, B. J.
Nyland, J. F.
O’Hara, T. M.
Gladyshev, M. I.
Chen, C. Y.
Corporate Contributor:
Институт фундаментальной биологии и биотехнологии
Кафедра водных и наземных экосистем
Date:
2016-02Journal Name:
Journal of the Marine Biological Association of the United KingdomJournal Quartile in Scopus:
Q3Journal Quartile in Web of Science:
Q3Bibliographic Citation:
Gribble, M. O. Mercury, selenium and fish oils in marine food webs and implications for human health [Текст] / M. O. Gribble, R. Karimi, B. J. Feingold, J. F. Nyland, T. M. O’Hara, M. I. Gladyshev, C. Y. Chen // Journal of the Marine Biological Association of the United Kingdom. — 2016. — Т. 96 (№ 1). — С. 43-59Abstract:
Humans who eat fish are exposed to mixtures of healthful nutrients and harmful contaminants that are influenced by environmental and ecological factors. Marine fisheries are composed of a multitude of species with varying life histories, and harvested in oceans, coastal waters and estuaries where environmental and ecological conditions determine fish exposure to both nutrients and contaminants. Many of these nutrients and contaminants are thought to influence similar health outcomes (i.e., neurological, cardiovascular, immunological systems). Therefore, our understanding of the risks and benefits of consuming seafood require balanced assessments of contaminants and nutrients found in fish and shellfish. In this paper, we review some of the reported benefits of fish consumption with a focus on the potential hazards of mercury exposure, and compare the environmental variability of fish oils, selenium and mercury in fish. A major scientific gap identified is that fish tissue concentrations are rarely measured for both contaminants and nutrients across a range of species and geographic regions. Interpreting the implications of seafood for human health will require a better understanding of these multiple exposures, particularly as environmental conditions in the oceans change.
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