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高脂肪和高硒饮食通过组织和谷胱甘肽过氧化物酶 1 依赖性途径对青年期小鼠的脂代谢产生影响。

High Dietary Fat and Selenium Concentrations Exert Tissue- and Glutathione Peroxidase 1-Dependent Impacts on Lipid Metabolism of Young-Adult Mice.

机构信息

Department of Animal Science, Cornell University, Ithaca, NY, USA.

出版信息

J Nutr. 2020 Jul 1;150(7):1738-1748. doi: 10.1093/jn/nxaa130.

Abstract

BACKGROUND

Excessive dietary selenium (Se; 3 mg/kg) or fat (>25%) intakes and overproduction of glutathione peroxidase 1 (GPX1) adversely affect body lipid metabolism.

OBJECTIVE

The objective was to reveal impacts and mechanisms of a moderately high Se and a high fat intake on lipid metabolism in Gpx1 knockout (KO) and wild-type (WT) mice.

METHODS

The KO and WT mice (males, 12-wk-old, body weight = 24.8 ± 0.703 g) were allotted to 4 groups each (n = 5) and fed a sucrose-torula yeast basal diet (5% corn oil) supplemented with 0.3 or 1.0 mg (+Se) Se/kg (as sodium selenite) and 0% or 25% [high-fat (HF)] lard for 6 wk. Multiple physiological and molecular biomarkers (68) related to lipid metabolism and selenogenome expression in plasma, liver, and/or adipose tissue were analyzed by 2-way (+Se by HF) ANOVA.

RESULTS

Compared with the control diet, the +Se diet decreased (P < 0.05) body-weight gain and plasma and liver concentrations of lipids (22-66%) but elevated (≤1.5-fold, P < 0.05) adipose tissue concentrations of lipids in the WT mice. The +Se diet up- and downregulated (P < 0.05) mRNA and/or protein concentrations of factors related to lipogenesis, selenogenome, and transcription, stress, and cell cycle in the liver (26% to 176-fold) and adipose tissues (14% to 1-fold), respectively, compared with the control diet in the WT mice. Many of these +Se diet effects were different (P < 0.05) from those of the HF diet and were eliminated or altered (P < 0.05) by the KO.

CONCLUSIONS

The +Se and HF diets exerted tissue-specific and GPX1 expression-dependent impacts on lipid metabolism and related gene expression in the young-adult mice. Our findings will help reveal metabolic potential and underlying mechanisms of supplementing moderately high Se to subjects with HF intakes.

摘要

背景

过量的膳食硒(Se;3 毫克/千克)或脂肪(>25%)摄入以及谷胱甘肽过氧化物酶 1(GPX1)的过度产生会对身体脂质代谢产生不利影响。

目的

本研究旨在揭示适度高 Se 和高脂肪摄入对 Gpx1 敲除(KO)和野生型(WT)小鼠脂质代谢的影响及其机制。

方法

将 KO 和 WT 小鼠(雄性,12 周龄,体重=24.8±0.703 g)分为 4 组(每组 5 只),分别喂食蔗糖-酵母基础饲料(5%玉米油),并添加 0.3 或 1.0 毫克/千克(亚硒酸钠形式)Se 和 0%或 25% [高脂肪(HF)]猪油,为期 6 周。通过 2 因素(Se 与 HF)方差分析(ANOVA)分析血浆、肝脏和/或脂肪组织中与脂质代谢和硒基因组表达相关的 68 种生理和分子生物标志物。

结果

与对照饮食相比,Se 饮食降低(P<0.05)WT 小鼠的体重增加和血浆及肝脏中脂质的浓度(22-66%),但升高(≤1.5 倍,P<0.05)脂肪组织中脂质的浓度。与对照饮食相比,Se 饮食分别上调(P<0.05)和下调(P<0.05)WT 小鼠肝脏(26%至 176 倍)和脂肪组织(14%至 1 倍)中与脂肪生成、硒基因组和转录、应激和细胞周期相关的因子的 mRNA 和/或蛋白浓度。这些 Se 饮食的许多影响与 HF 饮食不同(P<0.05),并且在 KO 中被消除或改变(P<0.05)。

结论

高 Se 和 HF 饮食对年轻成年小鼠的脂质代谢和相关基因表达产生了组织特异性和 GPX1 表达依赖性影响。我们的研究结果将有助于揭示补充适度高 Se 对高脂肪摄入人群的代谢潜力和潜在机制。

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