1.Study on characteristic chromatogram and content determination of Wuzhuyu Decoction reference sample.
Meng-Ru CAI ; Dong-Ge YIN ; Hu-Lin-Yue PENG ; Kai-Xin WANG ; Yu-Chen XU ; Xing-Bin YIN ; Chang-Hai QU ; Chang-Qing SUN ; Jin-Cai HOU ; Jian NI ; Xiao-Xu DONG
China Journal of Chinese Materia Medica 2022;47(15):4015-4024
In this study, the critical quality attributes of Wuzhuyu Decoction reference sample were explored by using characteristic chromatogram, index component content and dry extract rate as indexes.The dissemination relationship of quantity value between medicinal materials-decoction pieces-reference sample was investigated to preliminarily formulate the quality standard of the reference sample.The characteristic chromatogram of 15 batches of Wuzhuyu Decoction was established by high performance liquid chromatography(HPLC) and the similarity analysis was conducted.Common peaks were demarcated and assigned to medicinal materials.Moreover, quantitative determination of limonin, evodiamine, rutaecarpine and ginsenoside Rb_1 of Wuzhuyu Decoction were performed.The dissemination of quantity value was explored combined with dry extract rate, similarity of characteristic chromatogram and transfer rate of index component content.A total of 18 common peaks were identified in the corresponding materials of Wuzhuyu Decoction reference sample, with the similarity of characteristic chromatogram greater than 0.9, and Fructus Evodiae, Radix Ginseng, Rhizoma Zingiberis Recens and Fructus Jujubae contributed 9, 5, 8 and 2 chromatographic peaks, respectively.The index component content of corresponding materials and the transfer rates of medicinal materials-decoction pieces and decoction pieces-reference sample of different batches of Wuzhuyu Decoction reference sample were as follows: the content of limonin was 0.16%-0.51%, and the transfer rates were 83.66%-115.60% and 38.54%-54.58%, respectively; the content of evodiamine was 0.01%-0.11%, the transfer rated were 80.80%-116.15% and 3.23%-12.93%, respectively; the content of rutaecarpine was 0.01%-0.05%, the transfer rates were 84.33%-134.53% and 5.72%-21.24%, respectively; the content of ginsenoside Rb_1 was 0.06%-0.11%, and the transfer rates were 90.00%-96.92% and 32.45%-67.24%, respectively.The dry extract rate of the whole prescription was 22.58%-29.89%.In this experiment, the dissemination of quantity value of Wuzhuyu Decoction reference sample was analyzed by the combination of characteristic chromatogram, index component content and dry extract rate.A scientific and stable quality evaluation method of the reference sample was preliminarily established, which provided basis for the subsequent development of Wuzhuyu Decoction and the quality control of related preparations.
Chromatography, High Pressure Liquid
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Drugs, Chinese Herbal/chemistry*
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Ginsenosides/analysis*
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Limonins/analysis*
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Quality Control
2.Optimization of a HPLC determination method for Evodia rutaecarpa.
Zhifang HUANG ; Jinhai YI ; Yan WU ; Yunhua LIU ; Yan CHEN ; Yuhong LIU
China Journal of Chinese Materia Medica 2011;36(4):478-480
A HPLC method for determination of limonin, evodiamine and rutaecarpine in Evodia rutaecarpa was optimized. The mobile phase was [acetonitrile-tetrahydrofuran (25: 15)] -0.02% H3 PO4 (35:65). The detection wavelength was 220 nm and the flow rate was 1.0 mL x min(-1). Limonin, evodiamine and rutaecarpine were all well separated from other substances and their UV spectrums were essentially the same to the standards . The liner ranges of limonin, evodiamine and rutaecarpine were 0.196 8-3.936, 0.153 6-3.072, 0.097 4-1.948 microg. The average recoveries were 97.8%, 100.7% and 98.4%. RSD were 1.7%, 1.3% and 1.1% (n = 6). The method of this article is accurate, reproducible and can be used to enhance the quality control of E. rutaecarpa.
Chromatography, High Pressure Liquid
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methods
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Evodia
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chemistry
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Indole Alkaloids
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analysis
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Limonins
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analysis
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Plant Extracts
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analysis
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Quinazolines
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analysis
3.Simultaneous determination of jatrorrhizine, palmatine, berberine, and obacunone in Phellodendri Amurensis Cortex by RP-HPLC.
Qian ZHANG ; Lifen CAI ; Guoyue ZHONG ; Weizao LUO
China Journal of Chinese Materia Medica 2010;35(16):2061-2064
OBJECTIVETo develop a HPLC method to determine the content of jatrorrhizine, palmatine, berberine, and obacunone in Phellodendri Amurensis Cortex simultaneously. MEHTOD: The separations were carried out at 25 degrees C on a Phenomenex Gemini C18 column (4.6 mm x 250 mm, 5 microm) eluted with acetonitril and water containing 0.1% phosphoric acid in gradient mode. The flow rate was 1.0 mL x min(-1), detection wavelengthes were 345 nm for jatrorrhizine , palmatine, berberine and 210 nm for obacunone.
RESULTThe average recoveries of jatrorrhizine, palmatine, berberine, and obacunone were 98.94%, 101.17%, 96.22% and 98.90%, respectively.
CONCLUSIONThe method is simple, accurate and repeatable, and can be used in content determination of jatrorrhizine, palmatine, berberine, and obacunone in Phellodendri Amurensis Cortex.
Benzoxepins ; analysis ; Berberine ; analogs & derivatives ; analysis ; Berberine Alkaloids ; analysis ; Chromatography, High Pressure Liquid ; Drugs, Chinese Herbal ; analysis ; Limonins ; analysis ; Phellodendron ; chemistry
4.Analysis on component difference in Citrus reticulata before and after being processed with salt by UPLC-Q-TOF/MS.
Rui ZENG ; Juan FU ; La-Bin WU ; Lin-Fang HUANG
China Journal of Chinese Materia Medica 2013;38(14):2318-2320
To analyze components of Citrus reticulata and salt-processed C. reticulata by ultra-performance liquid chromatography coupled with quadrupole-time-of-flight mass spectrometry (UPLC-Q-TOF/MS), and compared the changes in components before and after being processed with salt. Principal component analysis (PCA) and partial least squares discriminant analysis (OPLS-DA) were adopted to analyze the difference in fingerprint between crude and processed C. reticulata, showing increased content of eriocitrin, limonin, nomilin and obacunone increase in salt-processed C. reticulata. Potential chemical markers were identified as limonin, obacunone and nomilin, which could be used for distinguishing index components of crude and processed C. reticulata.
Benzoxepins
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chemistry
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Chromatography, High Pressure Liquid
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methods
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Citrus
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chemistry
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Discriminant Analysis
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Limonins
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chemistry
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Mass Spectrometry
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methods
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Principal Component Analysis
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methods
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Salts
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chemistry