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Tartary buckwheat flavonoids ameliorate high fructose-induced insulin resistance and oxidative stress associated with the insulin signaling and Nrf2/HO-1 pathways in mice

机译:苦荞麦 黄酮 改善 高果糖 诱导的胰岛素抵抗 ,并与 在小鼠中 胰岛素 信号传导和 Nrf2的 / HO-1 途径 相关的氧化应激

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摘要

The present study was conducted to explore the effects of a purified tartary buckwheat flavonoid fraction (TBF) on insulin resistance and hepatic oxidative stress in mice fed high fructose in drinking water (20%) for 8 weeks. The results indicated that continuous administration of TBF dose-dependently improved the insulin sensitivity and glucose intolerance in high fructose-fed mice. TBF treatment also reversed the reduced level of insulin action on the phosphorylation of insulin receptor substrate-1 (IRS-1), protein kinase B (Akt) and phosphatidylinositol 3-kinase (PI3K), as well as the translocation of glucose transporter type 4 (GLUT4) in the insulin-resistant liver. Furthermore, TBF was found to exert high antioxidant capacity as it acts as a shield against oxidative stress induced by high fructose by restoring the antioxidant status, and modulating nuclear factor E2 related factor 2 (Nrf2) translocation to the nucleus with subsequently up-regulated antioxidative enzyme protein expression. Histopathological examinations revealed that impaired pancreatic/hepatic tissues were effectively restored in high fructose-fed mice following TBF treatment. Our results show that TBF intake is effective in preventing the conversion of high fructoseinduced insulin resistance and hepatic oxidative stress in mice by improving the insulin signaling molecules and the Nrf2 signal pathway in the liver.
机译:进行了本研究以探讨纯化的Tartary荞麦类黄酮级分(TBF)对饮用水中含有高果糖(20%)的小鼠胰岛素抵抗和肝氧化应激的影响。结果表明,连续施用TBF剂量依赖性地改善了高果糖喂养小鼠中的胰岛素敏感性和葡萄糖不耐受。 TBF处理还逆转了胰岛素受体基质-1(IRS-1),蛋白激酶B(AKT)和磷脂酰肌醇3-激酶(PI3K)的磷酸化对胰岛素作用的降低水平,以及葡萄糖转运蛋白类型4的易位(Glut4)在胰岛素抗性肝脏中。此外,发现TBF施加高抗氧化能力,因为它通过恢复抗氧化状态和调节核因子E2相关因子2(NRF2)易氧化,调节核因子E2相关因子2(NRF2)易氧化,调节核因子E2相关因子2(NRF2)易渗透酶蛋白表达。组织病理学检查显示,在TBF处理后的高果糖喂食小鼠中有效地恢复胰腺/肝组织受损。我们的结果表明,通过改善胰岛素信号分子和肝脏中的NRF2信号通路,TBF摄入量有效地防止小鼠高果糖诱导胰岛素抗性和肝氧化应激。

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    《Food & Function》 |2017年第8期|共14页
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  • 正文语种 eng
  • 中图分类 食品工业;
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