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首页> 外文期刊>Molecular and Cellular Endocrinology >Tangeretin stimulates glucose uptake via regulation of AMPK signaling pathways in C2C12 myotubes and improves glucose tolerance in high-fat diet-induced obese mice
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Tangeretin stimulates glucose uptake via regulation of AMPK signaling pathways in C2C12 myotubes and improves glucose tolerance in high-fat diet-induced obese mice

机译:橘皮素通过调节C2C12肌管中AMPK信号通路刺激葡萄糖摄取,并改善高脂饮食诱导的肥胖小鼠的葡萄糖耐量

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Although the flavonoid tangeretin (5, 6, 7, 8, 4'-pentamethoxyflavone) is known to possess beneficial health effects, the anti-diabetic effects and the mechanism of action have not been elucidated. Treatment with 100. μM tangeretin significantly increased the uptake of 2-NBDG in C2C12 myotubes. We also found that AMPK and AS160 were markedly phosphorylated by tangeretin treatment. In addition, pretreatment with an AMPK inhibitor significantly abrogated tangeretin-stimulated AS160 phosphorylation, glucose uptake, and Glut4 translocation from the cytosol to the plasma membrane. Furthermore, disruption of AMPK using siRNA transfection prevented the glucose uptake stimulated by tangeretin. We also examined the anti-diabetic properties of tangeretin in mice on HFD. Administration of HFD plus 200. mg/kg of tangeretin significantly altered weight gain, glucose tolerance, total cholesterol levels, and the secretion of adipocytokines, such as adiponectin, leptin, resistin, IL-6, and MCP-1. Moreover, AMPK was activated by 200. mg/kg of tangeretin in mouse muscle tissue, as expected from the cell system. These results suggest that tangeretin exerts anti-diabetic effects in both cell culture and mouse models, and these effects are necessary for activating AMPK.
机译:尽管已知类黄酮橘红素(5、6、7、8、4'-五甲氧基黄酮)具有有益的健康作用,但尚未阐明其抗糖尿病作用和作用机理。用100.μM的橘皮素处理可显着增加C2C12肌管中2-NBDG的摄取。我们还发现,橘皮苷处理可显着使AMPK和AS160磷酸化。此外,用AMPK抑制剂进行的预处理可大大消除橘皮苷刺激的AS160磷酸化,葡萄糖摄取和Glut4从胞质溶胶到质膜的转运。此外,使用siRNA转染破坏AMPK阻止了桔皮素刺激的葡萄糖摄取。我们还检查了橘红素对HFD小鼠的抗糖尿病特性。施用HFD加200. mg / kg的桔皮素会显着改变体重增加,葡萄糖耐量,总胆固醇水平以及脂联细胞因子(如脂联素,瘦素,抵抗素,IL-6和MCP-1)的分泌。此外,如细胞系统所预期的,AMPK被小鼠肌肉组织中的200. mg / kg的橘皮苷激活。这些结果表明,橘皮苷在细胞培养和小鼠模型中均具有抗糖尿病作用,而这些作用对于激活AMPK是必需的。

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