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Roles of selenoprotein antioxidant protection in zebrafish, Danio rerio, subjected to dietary oxidative stress

机译:膳食氧化应激下硒蛋白抗氧化剂保护作用在斑马鱼斑马鱼中的作用

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摘要

In vertebrates, selenium (Se) is an essential micronutrient for vertebrates that is involved in antioxidant protection and thyroid hormone regulation among other roles and functions through its incorporation into proteins, the selenoproteins. Long-chain polyunsaturated fatty acids, such as docosahexaenoic acid (DHA), are essential nutrients for fish although high dietary levels may lead to increased oxidative stress due to the high degree of unsaturation. The present study investigated the effects of Se supplementation on zebrafish, Danio rerio, oxidative status together with selenoprotein expression profiles when subjected to a high-DHA diet. Fish were fed for 8 weeks with one of the four experimental diets, containing high or low DHA in combination with or without organic Se (7 mg/kg). Fish performance, Se content, fatty acid composition and TBARS of zebrafish were determined, as well as gene expression of selected selenoproteins in liver and muscle. The Se levels in whole fish reflected dietary content. High dietary DHA increased oxidative stress as indicated by reduced growth and high TBARS content, although Se supplementation reduced oxidation. The expression patterns of selenoproteins varied between liver and muscle with only deiodinase type II displaying a transcriptional response when high dietary Se was supplied. High dietary DHA decreased selenoprotein W expression in muscle and sps2 expression in liver regardless of the dietary Se content. These data suggest that oxidative stress protection associated with a high dietary intake of Se may not be solely mediated by transcriptional changes in teleost selenoprotein expression.
机译:在脊椎动物中,硒(Se)是脊椎动物必不可少的微量营养元素,它通过将其掺入蛋白质硒蛋白中而参与抗氧化保护和甲状腺激素调节等其他作用和功能。长链多不饱和脂肪酸,例如二十二碳六烯酸(DHA),是鱼类的必需营养素,尽管高饮食水平可能会由于高度不饱和而导致氧化应激增加。本研究调查了在高DHA饮食下添加硒对斑马鱼,斑马鱼,氧化态以及硒蛋白表达谱的影响。用四种含高DHA或低DHA以及有或没有有机硒(7 mg / kg)的四种实验饮食之一将鱼喂食8周。测定鱼的性能,硒含量,脂肪酸组成和斑马鱼的TBARS,以及肝脏和肌肉中所选硒蛋白的基因表达。整条鱼中的硒含量反映了饮食含量。高膳食DHA可以增加生长和降低TBARS含量,从而增加氧化应激,尽管补充硒可以降低氧化。当提供高饮食硒时,肝脏和肌肉中硒蛋白的表达方式各不相同,只有II型碘化酶显示出转录反应。无论饮食中硒含量如何,高饮食DHA都会降低肌肉中硒蛋白W表达和肝脏中sps2表达。这些数据表明,与饮食中大量摄入硒有关的氧化应激保护可能不仅仅由硬骨鱼硒蛋白表达的转录变化介导。

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