生脂饮食对大鼠组织微量元素含量的影响。

A A Tinkov, E R Gatiatulina, E V Popova, V S Polyakova, A A Skalvaya, E F Agletdinov, A A Nikonorov, I V Radysh, M Yu Kkarganov, A V Skalny
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引用次数: 0

摘要

目的:研究高脂日粮对断奶Wistar大鼠微量元素水平、脂肪因子水平及碳水化合物和脂质代谢指标的影响。方法:选用1月龄雄性Wistar大鼠20只,随机分为2组。第一组动物给予标准饮食(STD),而第二组动物(NAFLD)在1个月的时间内保持高脂肪饮食,脂肪分别占总热量的10%和31.6%。脂肪饮食(HFD)。评估微量元素状态(采用电感耦合血浆质谱法)、血清胰岛素、脂联素和瘦素水平(采用酶联免疫吸附法)、总胆固醇(TC)、甘油三酯(TG)、低密度脂蛋白胆固醇(LDL-C)、高密度脂蛋白胆固醇(HDL-C)、葡萄糖(分光光度法)、载脂蛋白A1 (ApoA1)和B (ApoB)(采用免疫比浊法)。结果:1个月的高脂肪喂养导致大鼠EDAT、RPAT、总脂肪组织质量和脂肪细胞面积显著增加。与对照组相比,hfd喂养的动物的循环瘦素水平和瘦素与脂联素的比值也显著增加。血清脂质谱、脂联素、载脂蛋白、葡萄糖、胰岛素和HOMA-IR无显著差异。肝脏Cu, I, Mn, Se, Zn;与对照组相比,hfd喂养大鼠的EDAT Cr、V、Co、Cu、Fe、I和RPAT Co、Cu、I、Cr、V、Fe、Zn水平显著降低。毛发Co、Mn、Si和V含量均显著高于对照组,Se和I含量则有所降低。与此同时,hfd喂养的大鼠只有血清Cu显著降低。结论:hfd喂养断奶Wistar大鼠微量元素代谢受损与脂肪因子平衡紊乱之间存在相互作用。据推测,微量元素状态的改变是主要的,先于其他代谢性肥胖相关的紊乱。
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The impact of adipogenic diet on rats' tissue trace elements content.

The purpose: The influence of high-fat diet (HFD) on trace elements status, adipokine level, and markers of carbohydrate and lipid metabolism in weanling Wistar rats was investigated.

Methods: A total of 20 male 1-months-old Wistar rats divided into two equal groups were used in the present study. The first group of animals obtained a standard diet (STD), whereas animals from the second group (NAFLD) were maintained on high-fat diet containing 10 and 31.6% of total calories from fat, respectively, during 1 month. Fat diet (HFD). Trace element status (using inductively coupled plasma mass spectrometry), serum levels of insulin, adiponectin, and leptin (using enzyme-linked immunosorbent assay), total cholesterol (TC), triglycerides (TG), low density lipoprotein cholesterol (LDL-C), high-density lipoprotein cholesterol (HDL-C), glucose (spectrophotometrically), apolipoprotein A1 (ApoA1) and B (ApoB) (using immunoturbidimetric method) were assessed.

Results: It was shown that 1-month HFD feeding resulted in significant increase of EDAT, RPAT, total adipose tissue mass, and adipocyte area. HFD-fed animals were also characterized by a significant increase in circulating leptin levels and leptin-to-adiponectin ratio as compared to the control ones. No significant HFD-related difference in serum lipid spectrum, adiponectin, apolipoproteins, glucose, insulin, and HOMA-IR were revealed. Liver Cu, I, Mn, Se, Zn; EDAT Cr, V, Co, Cu, Fe,I, and RPAT Co, Cu, I, Cr, V, Fe, and Zn were significantly decreased in HFD-fed rats in comparison with the control group levels. Hair Co, Mn, Si, and V levels significantly exceeded the respective control values, whereas Se and I content were decreased in studied animals. At the same time, only serum Cu was significantly decreased in HFD-fed rats.

Conclusion: The interplay between the impaired trace elements metabolism of HFD-fed weanling Wistar rats and disorder of adipokine balance was demonstrated. It is supposed that the altered trace elements status is primary and precedes other metabolic obesity-related disturbances.

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