首页> 外文期刊>Environmental health perspectives. >Metabolic Phenotype of Wild-Type and As3mt-Knockout C57BL/6J Mice Exposed to Inorganic Arsenic: The Role of Dietary Fat and Folate Intake
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Metabolic Phenotype of Wild-Type and As3mt-Knockout C57BL/6J Mice Exposed to Inorganic Arsenic: The Role of Dietary Fat and Folate Intake

机译:野生型和As3mt基因敲除C57BL / 6J小鼠暴露于无机砷的代谢表型:膳食脂肪和叶酸摄入的作用。

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Background: Inorganic arsenic (iAs) is a diabetogen. Interindividual differences in iAs metabolism have been linked to susceptibility to diabetes in iAs-exposed populations. Dietary folate intake has been shown to influence iAs metabolism, but to our knowledge its role in iAs-associated diabetes has not been studied. Objective: The goal of this study was to assess how folate intake, combined with low-fat (LFD) and high-fat diets (HFD), affects the metabolism and diabetogenic effects of iAs in wild-type (WT) mice and in As3mt -knockout (KO) mice that have limited capacity for iAs detoxification. Methods: Male and female WT and KO mice were exposed to 0 or 100 ppb iAs in drinking water. Mice were fed the LFD containing 0.2 mg / kg or 10 mg / kg folate for 24 weeks, followed by the HFD with the same folate levels for 13 weeks. Metabolic phenotype and iAs metabolism were examined before and after switching to the HFD. Results: iAs exposure had little effect on the phenotype of mice fed LFD regardless of folate intake. High folate intake stimulated iAs metabolism, but only in WT females. KO mice accumulated more fat than WT mice and were insulin resistant, with males more insulin resistant than females despite similar %fat mass. Feeding the HFD increased adiposity and insulin resistance in all mice. However, iAs-exposed male and female WT mice with low folate intake were more insulin resistant than unexposed controls. High folate intake alleviated insulin resistance in both sexes, but stimulated iAs metabolism only in female mice. Conclusions: Exposure to 100 ppb iAs in drinking water resulted in insulin resistance in WT mice only when combined with a HFD and low folate intake. The protective effect of high folate intake may be independent of iAs metabolism, at least in male mice. KO mice were more prone to developing insulin resistance, possibly due to the accumulation of iAs in tissues.
机译:背景:无机砷(iAs)是一种糖尿病原。 iAs代谢的个体差异与iAs暴露人群的糖尿病易感性有关。膳食中叶酸的摄入已显示会影响iAs代谢,但据我们所知,其在iAs相关糖尿病中的作用尚未得到研究。目的:本研究的目的是评估叶酸摄入量与低脂(LFD)和高脂饮食(HFD)结合如何影响iAs在野生型(WT)小鼠和As3mt中的代谢和糖尿病的产生iAs排毒能力有限的Knockout(KO)小鼠。方法:将雄性和雌性WT和KO小鼠的饮用水暴露于0或100 ppb iAs。给小鼠喂食含有0.2 mg / kg或10 mg / kg叶酸的LFD,持续24周,然后喂食相同叶酸水平的HFD,持续13周。切换到HFD之前和之后,检查代谢表型和iAs代谢。结果:无论叶酸摄入量如何,iAs暴露对饲喂LFD的小鼠的表型影响很小。叶酸摄入量高会刺激iAs代谢,但仅在野生型女性中。 KO小鼠比WT小鼠积累更多的脂肪,并且具有胰岛素抵抗性,尽管%脂肪质量相似,但雄性比雌性胰岛素抵抗性更高。喂养HFD可以增加所有小鼠的肥胖和胰岛素抵抗。但是,低叶酸摄入量的iAs暴露的雄性和雌性WT小鼠比未暴露的对照更具胰岛素抵抗性。高叶酸摄入减轻了男女的胰岛素抵抗,但仅在雌性小鼠中刺激了iAs代谢。结论:饮用水中暴露于100 ppb iAs仅在与HFD和低叶酸摄入结合时才导致WT小鼠的胰岛素抵抗。至少在雄性小鼠中,高叶酸摄入量的保护作用可能与iAs代谢无关。 KO小鼠更容易出现胰岛素抵抗,这可能是由于iAs在组织中的积累。

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