2.Effects of primary processing on quality of cortex Magnolia officinalis.
Shengxian YU ; Chunxia ZHANG ; Chengyu CHEN ; Renyi YAN ; Bin YANG ; Chaolin LIAO ; Jinwen YOU
China Journal of Chinese Materia Medica 2010;35(14):1831-1835
In this paper, the changes of volatile oil and non-volatile ingredients in Cortex Magnolia Officinalis before and after primary processing were determined by an HPLC and a GC-MS method. The method is based on quantitative determination of three index ingredients, beta-eudesmol, honokiol and magnolol, and on qualitative fingerprinting analysis using HPLC and GC. Big differences were observed between processed and unprocessed samples according to their chromatographic fingerprinting data calculated by statistic software. Compared with unprocessed samples, the contents of honokiol and magnolol in processed samples increased, whereas the contents of beta-eudesmol and magnoloside A in processed samples decreased. Magnoloside A was isolated from this plant for the first time.
Drugs, Chinese Herbal
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chemistry
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Magnolia
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chemistry
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Quality Control
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Technology, Pharmaceutical
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methods
3.Effects of tree ages and geographic area on quality of bark of Magnolia officinalis and M. officinalis var. biloba.
Chunxia ZHANG ; Lixin YANG ; Xing YU ; Shengxian YU ; Ya'nan YUAN ; Chengyu CHEN ; Bin YANG ; Chaolin LIAO ; Jinwen YOU
China Journal of Chinese Materia Medica 2009;34(19):2431-2437
The effects of tree ages and geographic area on quality of bark of Magnolia officinalis (MO) and M. officinalis var. biloba (MOB) were studied. The volatile oils of samples extracted by a water stream distillation method were analyzed using a GC/MS method. The non-volatile ingredients of samples were determined by an HPLC method. Seven and twenty characteristic peaks were detected in the HPLC and GC fingerprint of MO, respectively, and the similar HPLC and GC fingerprint were showed in MOB. For samples collected in the same geographic area with different ages, the concentrations of active ingredients varied barely, whereas for those samples collected from different geographic area, differences on the concentrations of active ingredients were observed, for example, the concentrations of the amount of magnolol and honokiol in samples collected in Hubei province were higher than those collected in other areas. Big differences on the concentrations of active ingredients were found between MO and MOB, for MO, the ratio of honokiol/ magnolol was more than 0.7, whereas the ratio-was less than 0.7 in the case of MOB, and the concentrations of honokiol in MO were higher than those in MOB.
China
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Magnolia
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chemistry
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physiology
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Plant Bark
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chemistry
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physiology
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Plant Extracts
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analysis