首页> 外文期刊>The British Journal of Nutrition >Regulation of expression and activity of selenoenzymes by different forms and concentrations of selenium in primary cultured chicken hepatocytes.
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Regulation of expression and activity of selenoenzymes by different forms and concentrations of selenium in primary cultured chicken hepatocytes.

机译:初级培养鸡肝细胞中硒的不同形式和浓度对硒酶表达和活性的调节。

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The expression and activity of selenoenzymes are regulated by Se. In the present study, the effects of different forms and concentrations of Se on the regulation of glutathione peroxidase (GPx) activity and phospholipid hydroperoxide GPx (GPx4) and type I deiodinase (D1) mRNA levels in chicken hepatocytes were evaluated. Primary cultured chicken hepatocyte monolayers derived from male White Leghorn chickens (aged 30-40 d) were incubated for 24 h with 0 (control), 0.5, 1, 1.5, 2, 3, 4 or 5 mumol/l of Se supplied as DL-selenomethionine (Se-Met), kappa-selenocarrageenan (Se-Car) or sodium selenite (Na2SeO3). Compared with the control, Se significantly increased GPx activity in all the hepatocytes, but the activity was not increased in the hepatocytes treated with 5 mumol/l of Na2SeO3, with maximal effects being observed at 2 mumol/l of Se-Met or Se-Car and at 1.5 mumol/l of Na2SeO3, respectively. Significant decreases in GPx4 mRNA levels were observed in all the hepatocytes treated with Se (v. control). The D1 mRNA levels were significantly increased in all the groups treated with Se (v. control), with maximal effects being observed at 1.5 mumol/l of Se-Met and at 0.5 mumol/l of Se-Car or Na2SeO3, respectively. Se-Met at doses of 1.5-5 mumol/l had a greater effect on D1 mRNA than Se-Car and Na2SeO3 at equivalent doses. After resulting in a maximal effect, higher Se supplementation led to a dose-dependent reduction in GPx activity and D1 mRNA levels in all the hepatocytes treated with Se. These results suggest that in chicken hepatocytes, the regulations of GPx and D1 by different forms and concentrations of Se vary.
机译:硒调节硒酶的表达和活性。在本研究中,评估了不同形式和浓度的硒对鸡肝细胞中谷胱甘肽过氧化物酶(GPx)活性和磷脂氢过氧化物GPx(GPx4)和I型脱碘酶(D1)mRNA水平调节的影响。将源自雄性白来亨鸡(30-40天龄)的原代培养的鸡肝细胞单层与0(对照),0.5、1、1.5、2、3、4或5摩尔/升的硒(DL)一起孵育24小时-硒代蛋氨酸(Se-Met),κ-硒代角叉菜胶(Se-Car)或亚硒酸钠(Na 2 SeO 3 )。与对照组相比,硒显着增加了所有肝细胞的GPx活性,但在5μmol/ l Na 2 SeO 3 处理的肝细胞中,其活性并未增加, Se-Met或Se-Car的浓度为2摩尔/升,Na 2 SeO 3 的浓度为1.5摩尔/升时,效果最佳。在用Se处理的所有肝细胞中(GP)的GPx4 mRNA水平均显着下降(对照组)。在所有Se处理组( v。对照)中,D1 mRNA水平均显着升高,在1.5μmol/ l Se-Met和0.5μmol/ l Se-Met中观察到最大的作用。汽车或Na 2 SeO 3 。 1.5-5μmol/ l的Se-Met对D1 mRNA的影响大于等剂量的Se-Car和Na 2 SeO 3 。在产生最大效果后,较高的硒补充量导致所有用硒处理的肝细胞中GPx活性和D1 mRNA水平呈剂量依赖性降低。这些结果表明,在鸡肝细胞中,Se的不同形式和浓度对GPx和D1的调节不同。

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