Xu-yang HAN, Lu ZHANG, Bing PENG, et al. Analysis of Effective Substance of Qingre Chushi Decoction by UPLC-Q-TOF-MS[J]. Chinese journal of experimental traditional medical formulae, 2019, 25(6): 150-155.
DOI:
Xu-yang HAN, Lu ZHANG, Bing PENG, et al. Analysis of Effective Substance of Qingre Chushi Decoction by UPLC-Q-TOF-MS[J]. Chinese journal of experimental traditional medical formulae, 2019, 25(6): 150-155. DOI: 10.13422/j.cnki.syfjx.20190614.
Analysis of Effective Substance of Qingre Chushi Decoction by UPLC-Q-TOF-MS
To characterize and compare the chemical information of four extracts of Qingre Chushi (QRCS) decoction by liquid chromatography-mass spectrometry (LC-MS)
and combine the chemical information of the four extracts with their results of anti-inflammatory effect for a multivariate statistical analysis
in order to identify the compounds directly relating to the anti-inflammatory effects of QRCS decoction.
Method:
2
Four extracts of QRCS decoction were characterized by UPLC-Q-TOF-MS: ①ethanol extract+ water extract
② ethanol extract+ supernatant after water extraction and alcohol precipitation
③ ethanol extract+ precipitation after water extraction and alcohol precipitation
and ④ standard decoction. On the basis of the results of inhibition of the four above extracts on xylene-induced ear swelling in mice
multivariate statistical analysis [principal component analysis (PCA) and orthogonal partial least squares-discriminant analysis (OPLS-DA)] were carried out to lock the chromatographic peaks with significant differences between group ① (the best pharmacological action group) and group ④ (standard decoction group). According to the accuracy of quasi-molecular ion and fragment ion data
and the reference materials and literature data
those chromatographic peaks were identified.
Result:
2
PCA could cluster the four extracts of QRCS decoction
and the differences between groups was reflected in the distance between groups. Group ④ (standard decoction) had the most significant differences with the other three groups
especially in the first principal component; group ① (ethanol extract+ water extract)
group ② (ethanol extract+ supernatant after water extraction and ethanol precipitation) and group ③ (ethanol extract+ precipitation after water extraction and ethanol precipitation) had certain differences in the second principal component. OPLS-DA was used to compare group ① (the best pharmacological action group) and group ④ (standard decoction group). Eleven chromatographic peaks with great contribution and high reliability to group differences
were identified as gentiopicrin
skimmin
baicalin
baicalin isomer
wogonoside
5
6
7-trihydroxy-8-methoxyflavone-7-
O
-glucurodonaldehyde
5
6-dihydroxy-6
8
2′
3′-tetramethoxyflavone
salicin-6-
C
-arabinose-8-
C
-glucoside
plantamajoside and glycyrrhizic acid.
Conclusion:
2
In the mode of pectrum-effect combination
this study explores and identifies compounds relating to the anti-inflammatory effect of QRCS decoction
so as to provide the basis for screening the extraction and purification process and optimizing the formulation of preparation of Qingre Chushi decoction.
XU J , QIAN D W , JIANG S , et al . UPLC-Q-TOF-MS for analysis of the metabolites of flavone glycosides from Scutellaria baicalensis Georgi by human fecal flora in vitro [J]. Chromatographia , 2013 , 76 ( 15/16 ): 975 - 983 .
MA Z C , ZHOU S S , LIANG Q D , et al . UPLC-TOF/MS based chemical profiling approach to evaluate toxicity-attenuated chemical composition in combination of ginseng and Radix Aconiti Praeparata [J]. Acta Pharm Sin(药学学报) , 2011 , 46 ( 12 ): 1488 - 1492 .
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