1.Chemical constituents of Poria cocos.
Peng-Fei YANG ; Chao LIU ; Hong-Qing WANG ; Jia-Chun LI ; Zhen-Zhong WANG ; Wei XIAO ; Ruo-Yun CHEN
China Journal of Chinese Materia Medica 2014;39(6):1030-1033
The chemical constituents of Poria cocos were studied by means of silica gel, ODS column chromatography, Sephadex LH-20 and preparative HPLC. Thirteen compounds were isolated from this plant. By analysis of the ESI-MS and NMR data, the structures of these compounds were determined as tumulosic acid (1), dehydrotumulosic acid (2), 3beta, 5alpha-dihydroxy-ergosta-7, 22-dien-6-one (3), 3beta, 5alpha, 9alpha-trihydroxy-ergosta-7, 22-diene -6-one (4), ergosta-7, 22-diene-3-one (5), 6, 9-epoxy-ergosta-7,22-diene-3-ol (6), ergosta-4,22-diene-3-one (7), 3beta, 5alpha, 6beta-trihydroxyl-ergosta-7,22-diene (8), ergosta-5, 6-epoxy-7,22-dien-3-ol (9), beta-sitosterol (10), ribitol (11), mannitol (12), and oleanic acid 3-O-acetate (13), respectively. Compounds 3-13 were isolated from the P. cocos for the first time.
Drugs, Chinese Herbal
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chemistry
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Organic Chemicals
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analysis
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Poria
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chemistry
2.Quality evaluation of Poria based on specific chromatogram and quantitative analysis of multicomponents.
Shuang-Shuang TIAN ; Xiao-Qian LIU ; Wei-Hong FENG ; Qi-Wei ZHANG ; Li-Hua YAN ; Zhi-Min WANG ; Lu GAO
China Journal of Chinese Materia Medica 2019;44(7):1371-1380
HPLC specific chromatograms of Poria were established, and the concentrations of 10 triterpenoids(16α-hydroxydehydrotrametenolic acid, poricoic acid B, dehydrotumulosic acid, poricoic acid A, polyporenic acid C, poricoic acid AM, 3-O-acetyl-16α-hydroxydehydrotrametenolic acid, dehydropachymic acid, pachymic acid, and dehydrotrametenolic acid) were simultaneously determined. Chromatographic analysis was conducted on a Welch Ultimate XB C_(18) column(4.6 mm × 250 mm,5 μm). Acetonitrile solution(contain 3% tetrahydrofuran)(A) and 0.1% formic acid aqueous solution(B) were used as the mobile phase with gradient elution at a flow rate of 1.0 mL·min~(-1). The column temperature was 30 ℃ and the injection volume was 20 μL. The experimental data were analyzed by the SPSS 22.0 and GraphPad Prism 7.0. The established triterpenoids fingerprints were specific, and the 10 components were well separated and showed good linearity(r≥0.999 6) within the concentration ranges tested. The mean recoveries were between 98.53%-103.8%(RSD 1.7%-2.7%). The method was specific and repeatable, and could be used for identification and quality evaluation of Poria. The results showed that the contents of 10 triterpenoids were positively correlated with each other. The contents of 10 triterpenoids of samples collected from producing areas were higher than that collected from markets. The total contents of 10 triterpenoids of samples collected from Hubei and Yunnan province were slightly higher than that from Anhui province, but the contents of samples from Anhui province were varied in smaller ranges.
China
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Chromatography, High Pressure Liquid
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Materia Medica
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analysis
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Poria
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chemistry
3.AMWFA method applied to research on changes of essential components and extractive ratioes of herbal pair Cinnamomum cassia and Poria cocos.
Zheng XIANG ; Xian-Qin WANG ; Xiao-Min YU ; Tao WEI ; Yan-Xia LI
China Journal of Chinese Materia Medica 2008;33(18):2056-2060
Gas chromatography/mass spectrometry, chemometric resolution method-Alternative movingwindow factor analysis that were proposed recently and the Kovats retention index were used to analyze the essential components of herbal pair Cinnamomum cassia Presl and Poria cocos (CCP-PC) and compare them with those of single herbal Cinnamomum cassia Presl (CCP). 46 and 42 essential components in essential oil of CCP and CCP-PC have been identified individually. Results shows that the number of essential components of CCP and CCP-PC were almost the same, but extractive ratioes of them have changed significantly, some of them were increased obviously, most of them were declined notably instead and even several ingredients of CCP-PC were disappeared due to CCP PC's interaction probably. The main pharmacodynamic ingredients of CCP-PC, 3-phenyl-2-propenal and Cinnamaldehyde were obviously higher contents than that of single CCP. It suggested that there exist certain interactions of the chemical ingredients in compound medicine rather than their sum effect of single medicines. There is a litter difference in quality and quantity between single medicines and pair medicines, so the application of pair medicines can expand single medicine's adaptive disease and has a good clinical referenced valuation.
Cinnamomum aromaticum
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chemistry
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Drugs, Chinese Herbal
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chemistry
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Gas Chromatography-Mass Spectrometry
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Poria
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chemistry
4.UPLC characteristic chromatographic profile of Poria.
Qi ZHANG ; Zhenzhong WANG ; Wei XIAO ; Liangqi ZHANG ; Kaishun BI ; Ying JIA
China Journal of Chinese Materia Medica 2012;37(7):966-968
To establish a UPLC characteristic chromatographic profile analysis method to quickly assess Poria quality and provide basis fro controlling Poria quality. The UPLC characteristic chromatographic profiles of fifteen batches of Poria were determined by ACQUITY UPLC, with HSS T3 Column (2.1 mm x 100 mm, 1.8 microm) eluted with the mobile phases of water containing 0.05% phosphoric acid and acetonitrile in gradient mode. The detection wavelength was set at 243 nm. The common mode of the UPLC characteristic chromatographic profile was set up. There were 20 common peaks, seven of which were identified, and the similar degrees of the fifteen samples to the common mode were between 0.787 and 0.974. The method was so time-saving that it can be used for the quality control of Poria.
Acetonitriles
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chemistry
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Chromatography, High Pressure Liquid
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methods
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Phosphoric Acids
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chemistry
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Poria
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chemistry
5.Dynamic accumulation of three main triterpenic acids in submerged cultivation mycelium of Poria cocos.
Yang ZHANG ; Gao-Sheng HU ; Zhi-Fu HAN ; Wei XIAO ; Zhen-Dong WANG ; Yu-An BI ; Jing-Ming JIA
China Journal of Chinese Materia Medica 2013;38(9):1355-1359
OBJECTIVETo study the dymamic accumulation of triterpenic acids production in submerged cultivation mycelium of Poria cocos.
METHODLiquid culture method of P. cocos was established and RP-HPLC was applied to determine the contents of three main triterpenic acids dehydrotumulosic acid (DTA), 3-epi-dehydrotumulosic acid (eDTA) and polyporenic acid C (PAC) in submerged cultivation mycelium P. cocos at different culture stages and the contents were compared with cultivated P. cocos. The HPLC method is as follows, column: Plastisil ODS (4.6 mm x 250 mm, 5 microm); mobile phase: ACN/0.5% phosphate (80:20); flow rate: 1.0 mL . min-1; detective wavelength: 242 nm.
RESULTThe maximum biomass occurred at the 8th d after inoluctation, however, the contents and yield of three compounds increased till the 17th day. The contents of three compounds were 1. 2% (DTA), 0. 42% (eDTA) and 1.0% (PAC) at the 17th day after inoculation, which were significantly higher than that in cultivated material [0.2% (DTA), 0. 12(eDTA) and 0. 16% (PAC) ]. Furthermore, a correlation analysis between the content ratios of three independent compounds was carried out. The results showed that DTA negatively correlated with eDTA and PAC, with R2 of 0. 857 6 and 0. 971 7, respectively, which suggested the role of DTA as an important intermediate in the biosynthesis of triterpenic acids in P. cocos.
CONCLUSIONThe sum content of three main terpenoids in submerged cultivation mycelium P. cocos was 5. 55 times as that in cultivated material, which strongly suggested the possibility of fermentation in the production of medicinally important triterpenic acids in the future.
Chromatography, High Pressure Liquid ; Lanosterol ; analogs & derivatives ; analysis ; Mycelium ; chemistry ; Poria ; chemistry ; Triterpenes ; analysis
6.Chemical constituents of surface layer of Poria cocos and their pharmacological properties (I).
Ya-Long FENG ; Ying-Yong ZHAO ; Fan DING ; Zhi-Hui XI ; Ting TIAN ; Fan ZHOU ; Xiao DU ; Dan-Qian CHEN ; Feng WEI ; Xian-Long CHENG ; Rui-Chao LIN
China Journal of Chinese Materia Medica 2013;38(7):1098-1102
The surface layer of the sclerotia of Poria cocos, named Fu-Ling-Pi, is used as a diuretic in traditional Chinese medicine to treat edema and urinary dysfunction. Recent studies have showed that the triterpenes (lanostane and 3,4-secolanostane skeletons) and polysaccharides (beta-pachyman) are the main components of Fu-Ling-Pi and they exhibited various biological activities, such as anti-tumor, antibacterial and antioxidant, etc. This review was focused on the chemistry, pharmacology, and clinical uses of this drug and it may provide scientific foundation for further development and utilization of Fulingpi.
Animals
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Drug Therapy
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Drugs, Chinese Herbal
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chemistry
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pharmacology
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Humans
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Molecular Structure
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Poria
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chemistry
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Wolfiporia
7.Quality evaluation methods of Poria based on yield and content of alkali extracted polysaccharide.
Yue WANG ; Xiao-Qian LIU ; Yong-Xin ZHANG ; Wei-Hong FENG ; Li-Hua YAN ; Zhi-Min WANG
China Journal of Chinese Materia Medica 2023;48(2):443-454
To improve the quality control methods of Poria and develop and utilize its resources fully, alkaline extraction was used in this study to determine the yield and content of alkali-soluble polysaccharides of Poria. The alkali-soluble extracts of Poria were obtained according to the optimum extraction conditions on the basis of single-factor test, and 30 batches of samples were determined. The structure and chemical composition of the alkali-soluble extracts was characterized by high-performance gel permeation chromatography(HPGPC), Fourier transform infrared spectrometry(FT-IR), nuclear magnetic resonance(NMR) spectroscopy and high-performance liquid chromatography(HPLC) with 1-phenyl-3-methyl-5-pyrazolone(PMP-HPLC). The results showed that the content of the alkali-soluble extracts was in the range of 46.98%-73.86%. The main component was β-(1→3)-glucan, and its molecular mass was about 1.093×10~5. Further, the content of alkali-soluble polysaccharides of Poria was measured by UV-Vis spectrophotometry and HPLC coupled with the evaporative light scattering detector(HPLC-ELSD), and 30 batches of samples were measured. The results indicated that the content of alkali-soluble polysaccharides determined by UV-Vis spectrophotometry was in the range of 73.70%-92.57%, and the content of samples from Hubei province was slightly higher than that from Yunnan province, Anhui province and Hunan province. The content of alkali-soluble polysaccharides determined by HPLC-ELSD was in the range of 51.42%-76.69%, and the samples from Hunan province had slightly higher content than that from the other three provinces. The content determined by UV-Vis spectrophotometry was higher than that by HPLC-ELSD. However, the content determined by HPLC-ELSD was close to that of alkali-soluble extract, which could accurately characterize the content of alkali-soluble polysaccharides in Poria, and the method was simple and repeatable. Therefore, it is recommended that the quantitative analysis method for alkali-soluble extract and alkali-soluble polysaccharides by HPLC-ELSD be used in the quality standards of Poria in Chinese Pharmacopeia.
Poria/chemistry*
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Spectroscopy, Fourier Transform Infrared
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China
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Polysaccharides/chemistry*
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Reference Standards
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Chromatography, High Pressure Liquid/methods*
8.Splitted fractions and unoverlapping analysis of chemical constituents of Poria cocos.
Zhe LIN ; Yu-Bin XU ; Xiao-Ku RAN ; De-Qiang DOU
China Journal of Chinese Materia Medica 2013;38(24):4340-4346
With the combined applications of steam distillation, water extraction and alcohol precipitation, liquid-liquid extraction and column chromatography over macroporous resin, a splitted-fractions method of the chemical constituents of Poria cocos was established. The unoverlapping property of the fractions of P. cocos was qualitatively analysed by using principal component analysis and cluster analysis. With angle cosine, squared euclidean distance and the overlapping analysis of peak area of crude herbs, the unoverlapping property of the fractions of P. cocos was half-quantitatively analysed. The chemical components of P. cocos was divided into the fractions of polysaccharide, petroleum ether, ethyl acetate, alcohol eluate from macroporous resin and water eluate from macroporous resin. Non similarity degree among each chemical fraction was above 80% and main chemical components were identified. The established method for splitting fractions of P. cocos has good stability and repeatability and all chemical components in P. cocos could be completely divided into six fractions. It is the first time that the author half-quantitatively analyse the unoverlapping property of the chemical fractions of P. cocos.
Chromatography, High Pressure Liquid
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Cluster Analysis
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Medicine, Chinese Traditional
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Poria
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chemistry
9.Study on HPLC fingerprint of triterpene acids in different medicinal parts of Poria.
Hong-juan LI ; Jia-chun LI ; Jun-hua HU ; Wei LIU ; Yu-an BI ; Zhen-Zhong WANG ; Wei XIAO
China Journal of Chinese Materia Medica 2014;39(21):4133-4138
OBJECTIVETo establish an analytical method for the fingerprint of triterpenoid constituents of Poria by HPLC and compare the fingerprints of different medicinal parts of Poria in order to provide basis for controlling Poria quality.
METHODThe HPLC chromatographic conditions were Waters Symmetry C18 column (4.6 mm x 250 mm, 5 μm), 0.1% phosphoric acid (A) and acetonitrile (B) as gradient mobile phases, flow rate being 1.0 mL x min(-1), column temperature at 30 degrees C, The detection wavelength was set at 210 nm; The cluster analysis was carried on by SPSS 15.0.
RESULTThe HPLC fingerprints of triterpenoid constituents of Poria were set up. There were 16 common peaks in different medicinal parts. The results of method validation met technical requirement of fingerprints; Triterpenoid constituents in White Poria and Poria cum Radix Pini were different from Poria. The content of pachymic acid was the highest in Poria. The effect of habitat on the quality was no obvious difference.
CONCLUSIONThe method is stable, reliable, reproducible, and can be used as an effective means of Poria quality evaluation.
Chromatography, High Pressure Liquid ; methods ; Cluster Analysis ; Poria ; chemistry ; Triterpenes ; analysis
10.Qualitative and quantitative detection of Poria cocos by near infrared reflectance spectroscopy.
Xiao-huan FU ; Jun-hua HU ; Jia-chun LI ; Yin-hua DING ; Zhen-zhong WANG ; Wei XIAO ; Zhen-qiu ZHANG
China Journal of Chinese Materia Medica 2015;40(2):280-286
OBJECTIVEThe present study is concerning qualitative and quantitative detection of Poria cocos quality based on FT-near infrared (FT-NIR) spectroscopy combined with chemometrics.
METHODThe Poria cocos polysaccharides contents were determined by UV. Transmission mode was used in the collection of NIR spectral samples. The pretreatment method was first derivation and vector normalization. Then principal component analysis (PCA) was used to build classification model and partial least square (PLS) to build the calibration model.
RESULTThe results showed that conventional criteria such as the R, root mean square error of calibration (RMSEC), and the root mean square error of prediction (RMSEP) are 0.944 0, 0.072 1 and 0.076 2, respectively. The misclassified sample is 0 using the qualitative model built by PCA.
CONCLUSIONThe prediction models based on NIR have a better performance with high precision, good stability and adaptability and can be used to predict the polysaccharose content of Poria cocos rapidly, which can provide a fast approach to discriminate the different parts of Poria cocos.
Fungal Polysaccharides ; analysis ; Least-Squares Analysis ; Poria ; chemistry ; Principal Component Analysis ; Spectroscopy, Near-Infrared ; methods