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首页> 外文期刊>Acta Pharmaceutica Sinica B >Simultaneous determination of eight bioactive bakkenolides of Petasites tatewakianus Kitam by HPLC-UV
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Simultaneous determination of eight bioactive bakkenolides of Petasites tatewakianus Kitam by HPLC-UV

机译:高效液相色谱-紫外光谱法同时测定八角蓬菜石中的八种生物活性巴克内酯

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A high-performance liquid chromatography coupled with variable wavelength detection (HPLC-UV) was developed to evaluate the quality of Petasites tatewakianus Kitam through a simultaneous determination of eight bakkenolides: bakkenolide-L, bakkenolide-D, bakkenolide-B, bakkenolide-Ia, bakkenolide-VIIa, bakkenolide-IVa, bakkenolide-IIIa and homofukinolide. With a C18 analytical column, the eight analytes were efficiently separated using tetrahydrofuran-acetonitrile-water as the mobile phase in a constant program. The limits of detection and limits of quantitation of the method ranged 0.42-2.56@mg/mL and 1.22-8.40@mg/mL, respectively. The intra- and inter-day precisions of the method were all less than 1.83%. All the recoveries for the spiked analytes ranged 97.8%-102.4%. There were statistically significant differences among the contents of the eight bakkenolides in different parts and origins of P. tatewakianus (P<0.01). The content of total bakkenolides in rhizome was higher than that in other parts of the plant. The content of total bakkenolides in rhizome from Baishan was higher than those in other localities. The result suggested that rhizome may be the most valuable part of P. tatewakianus, and P. tatewakianus from Baishan may be the best plant resource. Our results might serve as a sound foundation for further study and application of this plant.
机译:开发了一种高效液相色谱结合可变波长检测(HPLC-UV)的方法,通过同时测定八种酚类化合物:bakkenolide-L,bakkenolide-D,bakkenolide-B,bakkenolide-Ia,巴金诺利德-VIIa,巴金诺利德-IVa,巴金诺利德-IIIa和高富农酚内酯。使用C18分析柱,以恒定程序使用四氢呋喃-乙腈-水作为流动相可有效地分离出八种分析物。该方法的检出限和定量限分别为0.42-2.56@mg/mL和1.22-8.40@mg/mL。该方法的日内和日间精度均小于1.83%。加标分析物的所有回收率在97.8%-102.4%之间。八头ak不同部位和来源的八种巴克内酯的含量之间具有统计学意义的差异(P <0.01)。根茎中总巴克内酯的含量高于植物其他部位的含量。白山根茎中巴克内酯的含量高于其他地区。结果表明,根茎可能是棉铃虫最有价值的部分,而来自白山的棉铃虫可能是最好的植物资源。我们的结果可能为进一步研究和应用该植物奠定良好的基础。

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