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首页> 外文期刊>British Journal of Medicine and Medical Research >Beta-Carotene: Positive Effect on Oxidative Stress, Lipid Peroxidation, Insulin and Leptin Resistance Induced by Dietary Fat Consumption
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Beta-Carotene: Positive Effect on Oxidative Stress, Lipid Peroxidation, Insulin and Leptin Resistance Induced by Dietary Fat Consumption

机译:β-胡萝卜素:对饮食脂肪摄入所致的氧化应激,脂质过氧化,胰岛素和瘦素抵抗的积极影响

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Beta-carotene (βC), an abundant natural antioxidant in fruits and vegetables may possess the Ability to modulate oxidative stress and leptin-insulin signaling. This study was designed to evaluate the biochemical effect (hormonal and oxidative enzyme markers) of βC on Wistar rats fed high dietary fat. Thirty (30) male Wistar rats were randomly divided into six (6) groups of five rats each. Group A was taken as the control and received distilled water, Group B received high-fat diet of (60% fat and 40% rat chow), Group C received 300 mg/kg body weight (bw) of βC, Group D received high-fat diet for 12 weeks and was treated with 300 mg/kg bw of βC for 2 weeks, Groups E received 300 mg/kg /bw of βC for 2 weeks and then received high-fat diet for 12 weeks while Group F received high-fat diet for 12 weeks and was treated with 150 mg/kg bw of βC for 2 weeks. At the end of the experimental period of 16 weeks. The animals were humanely sacrificed, and blood samples were collected by cardiac puncture, Leptin and insulin hormonal assay and oxidative enzyme markers were evaluated using the respective standard methods. The data were analyzed with SPSS version 20.0 at a value of P <0.05. The result showed the mean values of leptin, insulin and Malondialdehyde (MDA)were higher for group B when compared to the rest of the groups ( P <0.05) but this increase was reversed following βC administration. Superoxide dismutase (SOD), Catalase (CAT), has decreased values in group B, these values were increased upon administration of βC ( P <0.05). When compared to group A, group C showed increased value for the variables SOD, CAT and is equal to A in the variable insulin. Group F is greater than group D and E for the variable leptin, MDA and equal to group D ( P <0.05). The findings of this present study suggest that β carotene extract at high dose can be very effective in treating oxidative stress, lipid peroxidation, insulin and leptin resistance.
机译:β-胡萝卜素(βC)是水果和蔬菜中丰富的天然抗氧化剂,可能具有调节氧化应激和瘦素-胰岛素信号传导的能力。这项研究旨在评估βC对高膳食脂肪喂养的Wistar大鼠的生化作用(激素和氧化酶标记)。将三十(30)只雄性Wistar大鼠随机分为六(6)组,每组五只。 A组为对照组并接受蒸馏水,B组接受高脂饮食(60%脂肪和40%大鼠食物),C组接受300 mg / kg体重(bw)的βC,D组接受高脂饮食。高脂饮食12周,并接受300 mg / kg bw的βC治疗2周,E组接受300 mg / kg / bw的βC,持续2周,然后接受高脂饮食12周,而F组则接受高脂饮食高脂饮食12周,并用150 mg / kg bw的βC处理2周。实验期结束时为16周。处死动物,并通过心脏穿刺,瘦素和胰岛素激素测定收集血样,并使用相应的标准方法评估氧化酶标记。使用SPSS 20.0版分析数据,值P <0.05。结果表明,与其他组相比,B组的瘦素,胰岛素和丙二醛(MDA)平均值更高(P <0.05),但在服用βC后被逆转。 B组中的超氧化物歧化酶(SOD),过氧化氢酶(CAT)的值降低,施用βC后这些值增加(P <0.05)。与A组相比,C组的变量SOD,CAT值增加,并且在变量胰岛素中等于A。对于可变的瘦素,MDA,F组大于D和E组,等于D组(P <0.05)。本研究的结果表明,高剂量的β胡萝卜素提取物可以有效地治疗氧化应激,脂质过氧化,胰岛素和瘦素抵抗。

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