首页> 外文期刊>The British Journal of Nutrition >Treatment with oligonol, a low-molecular polyphenol derived from lychee fruit, attenuates diabetes-induced hepatic damage through regulation of oxidative stress and lipid metabolism.
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Treatment with oligonol, a low-molecular polyphenol derived from lychee fruit, attenuates diabetes-induced hepatic damage through regulation of oxidative stress and lipid metabolism.

机译:用荔枝果实衍生的低分子多酚寡酚进行治疗,可通过调节氧化应激和脂质代谢来减轻糖尿病引起的肝损伤。

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摘要

We have identified the effects of oligonol, a low-molecular polyphenol derived from lychee fruit, on oxidative stress and lipid metabolism in a type 2 diabetic model. Oligonol was orally administered at 10 or 20 mg per kg body weight per d for 8 weeks to db/db mice, and its effects were compared with those of the vehicle in db/db and m/m mice. Serum and hepatic biochemical factors, and protein and mRNA expression related to lipid metabolism were measured. In the oligonol-administered group, there were significant reductions of reactive oxygen species (ROS), lipid peroxidation, and the TAG and total cholesterol concentrations in both the serum and liver. Additionally, oligonol attenuated oxidative stress through the inhibition of advanced glycation endproduct formation and its receptor expression. Furthermore, augmented expressions of NF- kappaBp65 and inducible NO synthase were down-regulated to the levels of m/m mice in the group treated with oligonol at 20 mg/kg. Regarding lipid metabolism, lower hepatic lipid resulted from the down-regulation of sterol regulatory element-binding protein-1 and its target gene of lipogenic enzymes in the liver of db/db mice. The present results suggest that oligonol has protective effects against ROS-related inflammation and excess lipid deposition in the type 2 diabetic liver
机译:我们已经确定了从荔枝果实中衍生的低分子多酚寡酚对2型糖尿病模型中的氧化应激和脂质代谢的影响。对 db / db 小鼠以每公斤体重10或20 mg / kg d的剂量口服寡酚8周,并将其作用与在 db / db 中的赋形剂进行比较i>和 m / m 小鼠。测量血清和肝脏生化因子,以及与脂质代谢有关的蛋白质和mRNA表达。在寡酚组中,血清和肝脏中的活性氧(ROS),脂质过氧化以及TAG和总胆固醇浓度均显着降低。此外,寡酚通过抑制晚期糖基化终产物形成及其受体表达来减轻氧化应激。此外,在以20mg / kg的寡酚处理的组中,NF-κBp65和诱导型NO合酶的增强表达被下调至 m / m 小鼠的水平。关于脂质代谢, db / db 小鼠肝脏中固醇调节因子结合蛋白-1及其脂肪生成酶靶基因的下调导致肝脏脂质降低。目前的结果表明,寡酚对2型糖尿病肝脏中与ROS有关的炎症和脂质过多沉积具有保护作用

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