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首页> 外文期刊>The Journal of Nutritional Biochemistry >Regulation of cellular glutathione peroxidase by different forms and concentrations of selenium in primary cultured bovine hepatocytes.
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Regulation of cellular glutathione peroxidase by different forms and concentrations of selenium in primary cultured bovine hepatocytes.

机译:初级培养的牛肝细胞中硒的不同形式和浓度对细胞谷胱甘肽过氧化物酶的调节。

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The expression and activity of cellular glutathione peroxidase (GPx1) are regulated by selenium (Se). Generally speaking, organic forms of Se have less toxicity and greater bioavailability compared with inorganic forms. In this study, the effects of different forms and concentrations of Se on the regulation of mRNA level and activity of GPx1 in bovine hepatocytes were evaluated, and the optimal doses of different forms of Se that supported the full expression of GPx1 were determined. Primary cultured bovine hepatocyte monolayers derived from neonatal male Holstein calves (aged 1-2 days) were incubated for 24 h with 0 (control), 0.5, 1, 1.5, 2, 3, 4 or 5 mumol/L of Se from dl-selenomethionine (Se-Met), sodium selenite (Na2SeO3) or Kappa-selenocarrageenan (Se-Car). Compared with controls, a significantly lower level of release of lactic dehydrogenase (LDH) was observed at 0.5-5 mumol/L of Se-Met, 0.5-1 mumol/L of Na2SeO3 and 0.5 mumol/L of Se-Car, but significantly higher LDH release was observed at 2-5 mumol/L of Na2SeO3 and 3-5 mumol/L of Se-Car, and the response occurred in a dose-dependent manner. The intracellular content of reduced glutathione in all hepatocytes treated with Se was significantly lower than that of controls. Significant increases in GPx1 mRNA were obtained in all hepatocytes treated with Se, with maximal effects at 3 mumol/L of Se-Met, 1.5 mumol/L of Na2SeO3 and 2 mumol/L of Se-Car, respectively. Furthermore, 3 mumol/L of Se from Se-Met resulted in peak levels of GPx1 mRNA. After reaching a maximal level, higher Se supplementation led to a reduction of GPx1 mRNA. The activity of GPx1 showed similar patterns but of lower magnitude. We conclude that (a) the regulation of mRNA level and activity of GPx1 in primary cultured bovine hepatocytes by different forms of Se varies and (b) the optimal doses of Se to support the full expression of GPx1 in bovine hepatocytes when supplied as Se-Met, Na2SeO3 and Se-Car are 3, 1.5 and 2 mumol/L, respectively
机译:细胞谷胱甘肽过氧化物酶(GPx1)的表达和活性受硒(Se)的调节。一般而言,与无机形式相比,有机形式的硒毒性较小,生物利用度较高。在这项研究中,评估了不同形式和浓度的硒对调节牛肝细胞mRNA水平和GPx1活性的影响,并确定了支持GPx1完整表达的不同形式硒的最佳剂量。将来自新生雄性荷斯坦牛犊(1-2天龄)的原代培养的牛肝细胞单层与dl-Se的0(对照),0.5、1、1.5、2、3、4或5 mumol / L Se孵育24小时。硒代蛋氨酸(Se-Met),亚硒酸钠(Na2SeO3)或Kappa-硒代角叉菜胶(Se-Car)。与对照组相比,在0.5-5μmol/ L的Se-Met,0.5-1μmol/ L的Na2SeO3和0.5μmol/ L的Se-Car上,乳酸脱氢酶(LDH)的释放水平明显降低,但显着Na2SeO3为2-5μmol/ L和Se-Car为3-5μmol/ L时,LDH释放量较高,且反应呈剂量依赖性。硒处理的所有肝细胞中还原型谷胱甘肽的细胞内含量均显着低于对照。在所有用硒处理的肝细胞中,GPx1 mRNA均显着增加,分别在Se-Met 3μmol/ L,Na2SeO3 1.5μmol/ L和Se-Car 2 mumol / L时效果最大。此外,来自Se-Met的Se的3μmol/ L导致GPx1 mRNA的峰值水平。达到最高水平后,较高的硒补充导致GPx1 mRNA减少。 GPx1的活动显示相似的模式,但幅度较小。我们得出的结论是:(a)不同形式的Se对原代培养的牛肝细胞中mRNA水平和GPx1活性的调节各不相同;(b)当以Se-提供时,支持牛肝细胞中GPx1完整表达的最佳硒剂量。 Met,Na2SeO3和Se-Car分别为3、1.5和2 mumol / L

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