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首页> 外文期刊>Molecules >RP-HPLC Characterization of Lupenone and β-Sitosterol in Rhizoma Musae and Evaluation of the Anti-Diabetic Activity of Lupenone in Diabetic Sprague-Dawley Rats
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RP-HPLC Characterization of Lupenone and β-Sitosterol in Rhizoma Musae and Evaluation of the Anti-Diabetic Activity of Lupenone in Diabetic Sprague-Dawley Rats

机译:RP-HPLC表征鼠根草中卢潘酮和β-谷甾醇的含量及卢潘酮在糖尿病大鼠中的抗糖尿病活性

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With the aim of characterizing the active ingredients lupenone and β-sitosterol in Rhizoma Musae samples a reversed-phase HPLC method for the separation of these two compounds in Rhizoma Musae samples was developed (regression coefficient 0.9996). The method was further applied to quantify lupenone and β-sitosterol content in Rhizoma Musae samples cultured in different growth environments. Different variables such as geographical location, growth stage, and harvest time, demonstrated differential effects on lupenone and β-sitosterol levels. Moreover, we determined the optimum conditions for cultivation and harvesting of Rhizoma Musae herbs. Lupenone administration caused a significant reduction in fasting blood glucose (FBG) levels in diabetic rats at doses of 1.78, 5.33, and 16.00 mg·kg−1·day−1 for 14 days, the glycated hemoglobin (HbA1c) levels of diabetic rats also significantly reduced at doses of 5.33, and 16.00 mg·kg−1·day−1, indicating a robust antidiabetic activity. To our knowledge, this is the first report of an optimized HPLC method successfully applied to quantify lupenone and β-sitosterol, and its applicability in optimizing Rhizoma Musae growth. Animal experiments also showed for the first time that lupenone from Rhizoma Musae has anti-diabetic activity.
机译:为了表征根茎样品中的活性成分卢潘酮和β-谷甾醇,开发了一种反相HPLC方法,用于分离根茎样品中的这两种化合物(回归系数> 0.9996)。该方法还适用于定量在不同生长环境中培养的根茎样品中的萜烯酮和β-谷甾醇含量。不同的变量,例如地理位置,生长阶段和收获时间,显示出对羽扇豆酮和β-谷固醇水平的不同影响。此外,我们确定了栽培和收获毛根草药的最佳条件。给予Lupenone可使1.78、5.33和16.00 mg·kg −1 ·day −1 剂量的糖尿病大鼠的空腹血糖(FBG)水平显着降低。 14天时,糖尿病大鼠的糖化血红蛋白(HbA1c)水平在5.33和16.00 mg·kg -1 ·day -1 剂量下也显着降低抗糖尿病活性。就我们所知,这是首次成功地将优化的HPLC方法成功用于定量羽扇豆酮和β-谷固醇及其在优化根瘤菌生长中的适用性的报道。动物实验还首次表明,来自Musae的藤黄酮具有抗糖尿病活性。

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