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A metabolomics approach to study the dual modulation by characterization of chemical alteration during processing of Gardeniae Fructus using UPLC-ESI-QTOF

机译:使用UPLC-ESI-QTOF通过代谢组学方法研究F子加工过程中化学变化的双重调控

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Dual modulation is an interesting phenomenon that may occur during Chinese Materia Medica (CMM) processing whereby the crude and processed products have completely opposite therapeutic effects in vivo due to chemical component alteration. Therefore, a comprehensive study of the chemical alteration in order to shed light on the reason behind dual modulation is of critical importance. Metabolomics employs an untargeted approach to obtain an overview on secondary metabolites in multi-component systems using high resolution LC-MS2, which fulfills the requirement of a comprehensive analysis to clarify the mechanism of dual modulation. Gardeniae Fructus (GF), is one of the many widely used medicines across Asia, and its processed product exhibits completely opposite therapeutic effects on blood stasis. Therefore, we chose crude and processed GF to examine changes in secondary metabolites using UPLC-ESI-QTOF. In the subsequent chemometric analysis, both principal component analysis (PCA, unsupervised feature extraction) and orthogonal partial least-squares analysis (OPLSA, supervised feature extraction) were used to find out the chemical changes during processing. Iridoid Glycosides a€“ jaminoside B, genipine-1-?2-gentiobioside, 6?±-hydroxygeniposide, and geniposide a€“ and other ingredients such as mannitol and crocin were found to have decreased three to four fold in processed GF compared to crude GF, whereas another iridoid glycoside with a carboxyl group, mussaenosidic acid, was found to increase two fold in the processed product. This rapid yet reliable screening method can be also applied to other CMM to characterize the chemical changes and further explain the reasons behind dual modulation.
机译:双重调制是一种有趣的现象,可能在中药(CMM)加工过程中发生,由于化学成分的改变,粗制和加工产品在体内具有完全相反的治疗效果。因此,对化学变化进行全面研究以揭示双重调制背后的原因至关重要。代谢组学采用非目标方法来获得使用高分辨率LC-MS2的多组分系统中次级代谢产物的概况,这满足了进行全面分析以阐明双重调制机理的要求。 ia子(GF)是亚洲许多广泛使用的药物之一,其加工产品对血瘀表现出完全相反的治疗效果。因此,我们选择了粗制和处理过的GF,以使用UPLC-ESI-QTOF检查次生代谢产物的变化。在随后的化学计量分析中,使用主成分分析(PCA,无监督特征提取)和正交偏最小二乘分析(OPLSA,有监督特征提取)来查找加工过程中的化学变化。与加工后的GF相比,发现Iridoid糖苷,Jaminoside B,genipine-1-?2-gentiobioside,6?±-hydroxygeniposide和geniposide a?和其他成分(如甘露醇和crocrocin)减少了三到四倍。粗制的GF,而另一种带有羧基的虹彩糖苷,mussaenosidic acid,则在加工产品中增加了两倍。这种快速而可靠的筛选方法也可以应用于其他CMM,以表征化学变化并进一步解释双重调制的原因。

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