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首页> 外文期刊>The Journal of Nutritional Biochemistry >Marginal selenium deficiency down-regulates inflammation-related genes in splenic leukocytes of the mouse.
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Marginal selenium deficiency down-regulates inflammation-related genes in splenic leukocytes of the mouse.

机译:边际硒缺乏下调小鼠脾白细胞中与炎症相关的基因。

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Moderate selenium deficiency may lead to an impaired capacity to cope with health challenges. Functional effects of suboptimal selenium intake are not fully known, and biomarkers for an insufficient selenium supply are inadequate. We therefore fed mice diets of moderately deficient or adequate selenium intake for 6 weeks. Changes in global gene expression were monitored by microarray analysis in splenic leukocytes. Genes for four selenoproteins, Sepw1, Gpx1, Selh and Sep15, were the most significantly down-regulated in moderate selenium deficiency, and this was confirmed by quantitative polymerase chain reaction (qPCR). Classification of significantly affected genes revealed that processes related to inflammation, heme biosynthesis, DNA replication and transcription, cell cycle and transport were affected by selenium restriction. Down-regulation by moderate selenium deficiency of specific genes involved in inflammation and heme biosynthesis was confirmed by qPCR. Myeloperoxidase and lysozyme activities were decreased in selenium-restricted leukocytes, providing evidence for functional consequences. Genes for 31 nuclear factor (NF)- kappaB targets were down-regulated in moderate selenium deficiency, indicating an impaired NF- kappaB signaling. Together, the observed changes point to a disturbance in inflammatory response. The selenoproteins found here to be sensitive to selenium intake in murine leukocytes might also be useful as biomarkers for a moderate selenium deficiency in humans
机译:中等程度的硒缺乏会导致应对健康挑战的能力受损。硒摄入不足的功能作用尚不完全清楚,硒供应不足的生物标志物不足。因此,我们给小鼠饮食中度摄入不足或足够的硒达6周。通过微阵列分析在脾白细胞中监测整体基因表达的变化。中度硒缺乏时,四种硒蛋白的基因Sepw1,Gpx1,Selh和Sep15最明显下调,这已通过定量聚合酶链反应(qPCR)得以证实。重大受影响基因的分类显示,与炎症,血红素生物合成,DNA复制和转录,细胞周期和运输有关的过程受硒限制的影响。 qPCR证实了中度硒缺乏导致炎症和血红素生物合成相关特定基因的下调。硒限制白细胞中的髓过氧化物酶和溶菌酶活性降低,为功能性后果提供了证据。在中度硒缺乏时,下调了31个核因子(NF)-kappaB靶标的基因,表明NF-kappaB信号传导受损。总之,观察到的变化表明炎症反应受到干扰。此处发现对鼠白细胞中硒摄入敏感的硒蛋白也可能用作人类中度硒缺乏症的生物标志物

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