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首页> 外文期刊>Journal of Pharmaceutical and Biomedical Analysis: An International Journal on All Drug-Related Topics in Pharmaceutical, Biomedical and Clinical Analysis >Development and validation of a UFLC–MS/MS method for simultaneous quantification of sixty-six saponins and their six aglycones: Application to comparative analysis of red ginseng and white ginseng
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Development and validation of a UFLC–MS/MS method for simultaneous quantification of sixty-six saponins and their six aglycones: Application to comparative analysis of red ginseng and white ginseng

机译:UFLC-MS / MS方法的开发和验证用于同时定量六十六皂苷及其六个糖苷的方法:应用于红人参和白人比较分析

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A new and sensitive ultra fast liquid chromatography coupled with electrospray ionization triple quadrupole tandem mass spectrometry (UFLC–MS/MS) method was developed to evaluate the quality of Red ginseng (RG) and to find out its chemical markers by comparing with multi-batches of RG and white ginseng (WG). This innovative method could quantify sixty-six saponins and their six aglycones including 10 pairs of 20(S) and 20(R) epimers within 35?min simultaneously. All compounds could be determined in individual multiple-reaction monitoring channel without interference, and the optimized method was rapid, accurate, precise, reproducible and efficient. Using the orthogonal partial least squared discriminant analysis, ginsenosides Rg5, Rh4, Rk1, Rs4, F4, and 20(S)-Rg3were found to be the characteristic components of RG, the six compounds should be suggested as quality control markers to distinguish RG from WG. These findings will be significant for standardizing the processing procedures of RG and ensuring the consistent quality, as well as consequently the efficacy of RG in clinical applications. Results will be helpful in providing crucial chemical profiles of RG.
机译:开发了一种新的敏感的超快速液相色谱,与电喷雾电离三重四极杆串联质谱(UFLC-MS / MS)方法开发,以评估红人参(RG)的质量,并通过与多批次进行比较来查找其化学标志物RG和白人人参(WG)。这种创新方法可以量化六十六个皂苷及其六个糖酮,同时在35℃内包括10对20(S)和20(R)的基础。所有化合物都可以在无干扰的情况下在单个多反应监测通道中确定,并且优化方法是快速,准确,精确,可重复和高效的。使用正交的部分最小二乘判别分析,人参皂苷RG5,RH4,RK1,RS4,F4和20(S)-RG3WERE被发现是RG的特征组分,应建议六种化合物作为质量控制标记来区分RG WG。这些发现对于标准化RG的加工程序并确保一致的质量,以及因此RG在临床应用中的疗效的显着性。结果将有助于提供RG的关键化学型材。

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