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Journal Article

Nutritional Supplementation and Enhanced Antioxidant Function by Dietary Intake of Selenoneine and Other Selenium Compounds in Red Seabream Pagrus major

Yutaro Shimokawa; Kanako Abe; Mami Ohura; Manae Yamamoto; Hitoshi Ando; Takuma Tohfuku; Michiaki Yamashita; Masakazu Kondo
Marine Biotechnology · Vol. 25, Issue 5 · pp. 683-690 · 2023

Abstract

Selenoneine, 2-selenyl- N α , N α , N α -trimethyl- L -histidine, is the major organic selenium compound in marine fish. To characterize biological antioxidant function of selenoneine in fish, the accumulation of selenoneine and other selenium compounds, i. e., sodium selenite and selenomethionine, in the muscle and other tissues of red seabream. We reared red seabream by feeding of 1% dry pellet containing of sodium selenite, selenomethionine, or selenoneine of body weight twice a day for 4 weeks. After that, we replaced to 1% of normal commercial dry pellet of body weight twice a day for 1 week from the selenium supplementation, and tissue distribution of total selenium was determined. Selenium supplementation with selenoneine, selenomethionine, and sodium selenite enhanced selenium accumulation in the white muscle, kidney, and hepatopancreas in comparison with the control group. By the dietary intake of selenoneine, total selenium concentrations were increased in the white muscle, heart, kidney, spleen, hepatopancreas, brain, and blood cells in a dose-dependent manner during the trials after 2 weeks. Dietary intake of selenoneine as well as sodium selenite and selenomethionine reduced oxidation–reduction potential (ORP). Selenoneine concentrations in the white muscle and blood cells were accumulated for 4 weeks by the selenoneine intake, whereas selenoneine concentration was not elevated by the intake of selenomethionine and sodium selenite, suggesting that tissue selenoneine levels might be derived from only selenoneine-containing diet. The uptake factor of selenoneine from the artificial feed containing selenoneine was calculated to be 0.0062 in the white muscle and 4.0 in the blood. The half-life of total selenium in the blood cells and white muscle were estimated to be 60 days in the white muscle and 30 days in the blood.

Bibliographic Information

JournalMarine Biotechnology
PublisherSpringer
Publication Date2023-10-01
Publication Year2023
Volume25
Issue5
Pages683-690
Document TypeJournal Article
Print ISSN1436-2228
eISSN1436-2236
DOI10.1007/s10126-023-10215-6

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NARA Access Coverage1999-01-01~Current
Journal Homepagehttps://www.springer.com/journal/10126
Publisher PageOpen Publisher Page
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