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Remarkable impact of steam temperature on ginsenosides transformation from fresh ginseng to red ginseng

机译:蒸汽温度对从新鲜人参的人参温度转化的显着影响

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摘要

Background: Temperature is an essential condition in red ginseng processing. The pharmacological activities of red ginseng under different steam temperatures are significantly different. Methods: In this study, an ultrahigh-performance liquid chromatography quadrupole time-of-flight tandem mass spectrometry was developed to distinguish the red ginseng products that were steamed at high and low temperatures. Multivariate statistical analyses such as principal component analysis and supervised orthogonal partial least squared discrimination analysis were used to determine the influential components of the different samples. Results: The results showed that different steamed red ginseng samples can be identified, and the characteristic components were 20-gluco-ginsenoside Rf, ginsenoside Re, ginsenoside Rg1, and malonyl-ginsenoside Rb1 in red ginseng steamed at low temperature. Meanwhile, the characteristic components in red ginseng steamed at high temperature were 20R-ginsenoside Rs3 and ginsenoside Rs4. Polar ginsenosides were abundant in red ginseng steamed at low temperature, whereas higher levels of less polar ginsenosides were detected in red ginseng steamed at high temperature. Conclusion: This study makes the first time that differences between red ginseng steamed under different temperatures and their ginsenosides transformation have been observed systematically at the chemistry level. The results suggested that the identified chemical markers can be used to illustrate the transformation of ginsenosides in red ginseng processing. Keywords: MVA, red ginseng, steaming temperature, transformation, UPLC–QTOF-MS/MS
机译:背景:温度是红人参加工的重要条件。红人参在不同蒸汽温度下的药理活性显着不同。方法:在本研究中,开发了超高效液相色谱四极杆 - 飞行时间串联质谱法,以区分在高温和低温下蒸的红人参产物。多变量统计分析如主成分分析和监督正交部分最小二乘辨别分析来确定不同样品的影响成分。结果:结果表明,可以鉴定不同蒸的红人参样品,并且特征成分是在低温下蒸蒸汽的红人参苷蒸汽的20-aguco-人参皂苷RF,人参皂苷Re,人参皂苷RB1和丙基 - 人参皂苷RB1。同时,在高温下蒸的红人参中的特征成分为20r-人参皂苷Rs3和人参皂苷Rs4。在低温下蒸地,极性人参皂甙丰富,而在高温下蒸蒸汽在红色人参中检测到较高的极性人参皂苷。结论:本研究首次在化学水平上系统地观察到在不同温度下蒸蒸蒸蒸蒸蒸汽的差异,并在化学水平上观察到。结果表明,所确定的化学标志物可用于说明在红人参处理中的人参皂苷的转化。关键词:MVA,红人参,蒸温度,转换,UPLC-QTOF-MS / MS

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