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首页> 外文期刊>Antioxidants and redox signalling >Impacts of dietary selenium deficiency on metabolic phenotypes of diet-restricted GPX1-overexpressing mice.
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Impacts of dietary selenium deficiency on metabolic phenotypes of diet-restricted GPX1-overexpressing mice.

机译:饮食中硒缺乏对饮食限制型GPX1过表达小鼠代谢表型的影响。

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We previously reported a spontaneous development of type 2 diabetes-like phenotypes in glutathione peroxidase-1 (GPX1)-overexpressing (OE) mice. Diet restriction of these mice rescued all their phenotypes, except for hyperinsulinemia and hypersecretion of insulin. This study was to determine whether dietary Se deficiency eliminated these two primary effects of GPX1 overproduction. Forty-seven male OE and wild-type (WT) mice were fed an Se-adequate (0.4 mg Se/kg) or deficient (<0.02 mg Se/kg) diet at 2 to 3 g (full-fed = 5 g) per day from 4 to 12 weeks of age. Although dietary Se deficiency did not rescue the primary phenotypes of the diet-restricted OE mice, it exerted a strong effect (p < 0.05) on mRNA or protein levels (or both) of 14 molecules involved in islet insulin synthesis and secretion and hepatic lipogenesis. Dietary Se deficiency exhibited a hypoinsulinemic trend in OE mice and a strong hypolipidemic effect (p < 0.05) in the liver of WT mice. Hepatic lipogenesis was attenuated in OE compared with WT mice. In conclusion, diet restriction might be too overwhelming to allow a demonstration of a dietary Se-depletion effect on the OE phenotypes. Full-fed animals could offer a better chance to illustrate such effects and the underlying mechanisms.
机译:我们先前曾报道过谷胱甘肽过氧化物酶-1(GPX1)过表达(OE)小鼠中2型糖尿病样表型的自发发展。除高胰岛素血症和胰岛素分泌过多外,这些小鼠的饮食限制挽救了所有表型。这项研究是为了确定饮食中的硒缺乏是否消除了GPX1生产过剩的这两个主要影响。向47只雄性OE和野生型(WT)小鼠饲喂2至3 g的Se(0.4 mg Se / kg)或不足(<0.02 mg Se / kg)的硒饮食(全喂= 5 g)每天从4周到12周不等。尽管饮食中硒缺乏不能挽救饮食受限的OE小鼠的主要表型,但它对参与胰岛胰岛素合成,分泌和肝脂肪形成的14个分子的mRNA或蛋白质水平(或两者)产生了强烈的影响(p <0.05) 。饮食中硒缺乏症在OE小鼠中表现出低胰岛素趋势,在WT小鼠的肝脏中表现出强烈的降血脂作用(p <0.05)。与野生型小鼠相比,OE中的肝脂肪形成减弱。总之,饮食限制可能太压倒性的,以致无法证明饮食中的硒耗竭对OE表型的影响。全食动物可以提供更好的机会来说明这种影响及其潜在机制。

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