Fang LIU, Qi-juan LI, Qiao LIU, et al. Research on Profile Differences of Chemical Components in Magnoliae Officinalis Cortex from Different Varieties and Habitats by LC-TOF-MS[J]. Chinese journal of experimental traditional medical formulae, 2019, 25(10): 121-126.
DOI:
Fang LIU, Qi-juan LI, Qiao LIU, et al. Research on Profile Differences of Chemical Components in Magnoliae Officinalis Cortex from Different Varieties and Habitats by LC-TOF-MS[J]. Chinese journal of experimental traditional medical formulae, 2019, 25(10): 121-126. DOI: 10.13422/j.cnki.syfjx.20190210.
Research on Profile Differences of Chemical Components in Magnoliae Officinalis Cortex from Different Varieties and Habitats by LC-TOF-MS
To study on the differences of profile spectra among chemical components in Magnoliae Officinalis Cortex from different varieties and habitats
and to screen and identify the characteristic components affecting the quality difference of this herb.
Method:
2
The chromatogram data sets of Magnoliae Officinalis Cortex from different varieties and habitats were obtained by liquid chromatography-time-of-flight-mass spectrometry(LC-TOF-MS). Principal component analysis
partial least squares-discriminant analysis and cluster analysis were used to compare the differences in chemical profiles among Magnoliae Officinalis Cortex from different varieties and habitats
and adopted to screen out the characteristic chemical constituents that resulted in these differences and to perform mass spectrometry analysis and comparison.
Result:
2
Eleven characteristic peaks were identified by LC-TOF-MS chromatographic data and reported in the literature.The use of chemical profile could distinguish different habitats of Magnoliae Officinalis Cortex
but could not completely distinguish different varieties of this herb.
Conclusion:
2
LC-TOF-MS can easily and quickly study on the profile differences of chemical substances in Magnoliae Officinalis Cortex from different varieties and different habitats
the results of this study can provide a theoretical basis for the quality evaluation and pharmacodynamic material basis of this herb.
XIE G X , Plumb R , SU M M , et al . Ultra-performance LC/TOF MS analysis of medicinal Panax herbs for metabolomic research [J]. J Sep Sci , 2008 , 31 ( 6/7 ): 1015 - 1026 .
KANG J H , Lee S Y , KANG S M , et al . NMR-based metabolomics approach for the differentiation of ginseng ( Panax ginseng ) roots from different origins [J]. Arch Pharm Res , 2008 , 31 ( 3 ): 330 - 336 .
DAN M , SU M M , GAO X F , et al . Metabolite profiling of Panax notoginseng using UPLC-ESI-MS [J]. Phytochemistry , 2008 , 69 ( 11 ): 2237 - 2244 .
Toh D F , New L S , Koh H L , et al . Ultra-high performance liquid chromatography/time-of-flight mass spectrometry (UHPLC/TOFMS) for time-dependent profiling of raw and steamed Panax notoginseng [J]. J Pharm Biomed Anal , 2010 , 52 ( 1 ): 43 - 50 .
WANG Z G , HU H L , CHEN F , et al . Metabolic profiling assisted quality assessment of Rhodiola rosea extracts by high-performance liquid chromatography [J]. Planta Med , 2012 , 78 ( 7 ): 740 - 746 .
HU H L , WANG Z G , HUA W , et al . Effect of chemical profiling change of processed Magnolia officinalis on the pharmacokinetic profiling of honokiol and magnolol in rats [J]. J Chromatogr Sci , 2016 , 54 ( 7 ): 1201 - 1212 .
CHENG X , Harzdorf N , Khaing Z , et al . Neuronal growth promoting sesquiterpene-neolignans;syntheses and biological studies [J]. Org Biomol Chem , 2012 , 10 ( 2 ): 383 - 393 .
余盛贤 . 基于水溶性成分分析的厚朴质量评价 [D]. 北京 : 中国中医科学院 , 2011 .
WANG P , ZHU M Z , HUAGN W , et al . Lysicamine in a lotus leaves extract may be responsible for antibacterial and anti-inflammation activity [J]. AMM , 2012 , 108 : 189 - 193 .
da Silva F M , de Souza A D , Koolen H H , et al . Phytochemical study of the alkaloidal fractions of Unonopsis duckei R. E. Fr. guided by electrospray ionisation ion-trap tandem mass spectrometry [J]. Phytochem Anal , 2014 , 25 ( 1 ): 45 - 49 .
Singh A , Bajpai V , Kumar S , et al . Analysis of isoquinoline alkaloids from Mahonia leschenaultia and Mahonia napaulensis roots using UHPLC-Orbitrap-MS n and UHPLC-QqQ LIT -MS/MS [J]. J Pharm Anal , 2017 , 7 ( 2 ): 77 - 86 .
De Marino S , Gala F , Zollo F , et al . Identification of minor secondary metabolites from the latex of Croton lechleri (Muell-Arg) and evaluation of their antioxidant activity [J]. Molecules , 2008 , 13 ( 6 ): 1219 - 1229 .
Effective Constituents and Mechanism of Magnoliae Officinalis Cortex for Depressive Disorder Based on Network Pharmacology
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Jing XU
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Hong ZHANG
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Related Institution
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