1.Three-dimensional multi-component analysis of Aurantii Fructus quality and research on influencing factors.
Zi-Xuan LIU ; Xue-Sen FU ; Ling WANG ; Xiang-Dan LIU ; Ri-Bao ZHOU
China Journal of Chinese Materia Medica 2023;48(1):265-272
The present study explored the consistency of the content proportions of active components of Aurantii Fructus and analyzed the influencing factors based on three-dimensional multi-component analysis. A total of 839 Aurantii Fructus samples in 65 research articles were analyzed using the three-dimensional multi-component analysis mode. The content data of flavonoid components(naringin, hesperidin, neohesperidin, narirutin, and nobiletin), coumarin components(meranzin and gluconolactone), and alkaloid(synephrine) in 386 samples which met the criteria of 2020 edition of the Chinese Pharmacopoeia were extracted and adjusted to percentages, and the content ratios between components were calculated. The influencing factors of Aurantii Fructus quality were analyzed. The results showed content ratios of components as follows: neohesperidin∶naringin in the range of 0.4-1.2; narirutin∶naringin in the range of 0.02-0.16; hesperidin∶naringin in the range of 0.01-0.3; nobiletin∶naringin in the range of 0.000 588 3-0.069 68; synephrine∶naringin in the range of 0.02-0.042; gluconolactone∶naringin in the range of 0.001-0.01; meranzin∶naringin in the range of 0.000 4-0.035. The quality of Aurantii Fructus was closely related to the origin, variety, harvesting time, and processing method of medicinal materials. Harvesting time had a greater impact on the quality of Aurantii Fructus, and the origin and variety had a certain impact on the quality of Aurantii Fructus. The findings of this study indicated that the ratios between flavonoid components, flavonoids and coumarin components, and flavonoids and alkaloids fluctuated. The production base should optimize the varieties, harvesting period, and processing methods of Aurantii Fructus to provide a scientific basis for the production of high-quality Aurantii Fructus.
Citrus
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Flavonoids/analysis*
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Drugs, Chinese Herbal
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Fruit/chemistry*
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Coumarins/analysis*
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Chromatography, High Pressure Liquid/methods*
2.Chemome profiling of Qijiao Shengbai Capsules by UPLC-IT-TOF-MS.
Qian WANG ; Xia XU ; Ke ZHANG ; Shi-Lin ZHANG ; Li LIU ; Qing WU ; Peng-Fei TU ; Yue-Lin SONG ; Yun-Fang ZHAO ; Jun LI
China Journal of Chinese Materia Medica 2022;47(18):4938-4949
Qijiao Shengbai Capsules(QJ) are a common Miao medicine serving as an adjuvant cancer therapy in clinical practice.QJ consists of seven medicinal materials such as Astragalus membranaceus and Lespedeza buergeri.Its chemical components have not been clarified and the quality control needs to be improved.In this study, LC-IT-TOF-MS was used to comprehensively collect MS~1 and MS~2 fragment information of QJ and rapidly identify the chemical compositions.The chromatographic separation was performed on the Capcell core ADME column(2.1 mm×150 mm, 2.7 μm) with 0.1% formic acid aqueous solution(A) and acetonitrile(B) as mobile phases for gradient elution.High-resolution mass spectrometric information was obtained by scanning in the positive and negative ion ESI modes.A total of 107 compounds were structurally identified according to the deduced MS fragmentation patterns and comparison with standards and data reported in the literature, including 54 flavonoids, 16 phthalides, 13 alkaloids, 12 phenolic acids, 7 saponins, 2 coumarins, 2 condensed tannins, and 1 purine.This study clarified the chemical composition of QJ and provided references for the improvement of its quality standards and the elucidation of its medicinal substances.
Acetonitriles
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Alkaloids
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Capsules
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Chromatography, High Pressure Liquid
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Coumarins/analysis*
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Drugs, Chinese Herbal/chemistry*
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Flavonoids/analysis*
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Formates
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Proanthocyanidins/analysis*
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Purines
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Saponins
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Tandem Mass Spectrometry
3.Identification and attribution of chemical constituents of Qingfei Paidu Decoction based on UHPLC-LTQ-Orbitrap-MS technology.
Yan-Yan ZHOU ; Wen-Ya GAO ; Xin-Ru GU ; Zhou-Quan CHEN ; Hai-Yu ZHAO ; Bao-Lin BIAN ; Li-Xin YANG ; Nan SI ; Hong-Jie WANG ; Ying TAN
China Journal of Chinese Materia Medica 2020;45(13):3035-3044
UHPLC-LTQ-Orbitrap-MS was developed for the identification of chemical constituents in Qingfei Paidu Decoction, which will clarify its material basis. ACQUITY UHPLC HSS T3 chromatography column(2.1 mm×100 mm, 1.8 μm) was used with 0.1% formic acid(B)-acetonitrile(A) as the mobile phase in gradient elution. The decoction was detected by high-resolution liquid chromatography-mass spectrometry equipped with an ESI ion source in positive and negative mode. Based on the accurate mass measurements, retention time, mass fragmentation patterns combined with comparison of reference and literature reports, a total of 87 major compounds including 43 flavonoids, 9 alkaloids, 4 triterpenoid saponins, 1 sesquiterpene, 2 coumarins, 10 phenolic acids and 18 other compounds were tentatively screened and characterized. UHPLC-LTQ-Orbitrap-MS was employed to comprehensively elucidate the chemical components in Qingfei Paidu Decoction, which basically covered 20 Chinese medicines except gypsum in Qingfei Paidu Decoction. These collective results provide a scientific basis for further research on the quality control standard of Qingfei Paidu Decoction.
Chromatography, High Pressure Liquid
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Coumarins
;
analysis
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Drugs, Chinese Herbal
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Flavonoids
;
analysis
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Mass Spectrometry
4.Inhibition of osthole for resorption of rats femur tissue in vitro.
Jian ZHOU ; Xue-mei REN ; Xiao-ni MA ; Yu-hai GAO ; Li-juan YAN ; Wen-gui SHI ; Ke-ming CHEN
China Journal of Orthopaedics and Traumatology 2015;28(9):832-837
OBJECTIVETo investigate osthole effect on femoral tissue resorption activity of rat in vitro.
METHODSSix SD rats weighted (80 ± 5) g were used to isolate and culture femoral tissue (diaphyses and metaphysis) in vitro. The cultured tissue were devided into control group, estradiol group and osthole group. The femoral tissue was treated with final concentration of 1 x 10(-5) mol/L osthole and 1 x 10(-8) mol/L estradiol culture in vitro at 48 hours after cultured. Tartrate-resistant acid phosphatase (StrACP) activity, glucose and Lactic acid content, StrACP, MCSF (Macrophage colony stimulating factor) and CTSK (Cathepsin K) mRNA was detected by Real-Time RT-PCR were detected.
RESULTSConcetration of Alkaline phosphatase activity were 2226 and 2498 in 1 x 10(-5) mol/L osthole and 1 x 10(-8) mol/L estradiol respectively. As compared with control group, the activity of StrACP of 1 x 10(-5) mol/L osthole and 1 x 10(-8) mol/L estradiol were inhibited at 6, 9, 12 days (P < 0.05); under treatment of in l x 10(-5) mol/L osthole, the content of Lactic acid were increased and the content of glucose were decreased at 3, 6, 9 days (P < 0.05); StrACP, MCSF and CTSK mRNA expression level were inhibited at 6, 9 days (P < 0.05).
CONCLUSIONOsthole can inhibit bone resorption and raise the level of nutrition metabolism of femurs tissue.
Acid Phosphatase ; metabolism ; Animals ; Bone Resorption ; prevention & control ; Coumarins ; pharmacology ; Estradiol ; pharmacology ; Femur ; drug effects ; Glucose ; analysis ; Lactic Acid ; analysis ; Male ; Rats ; Rats, Sprague-Dawley
5.Simultaneously preparation of grams of high purity tyrosol, crenulatin and salidroside from Rhodiola crenulata.
Xin LUO ; Xue-jing WANG ; Shi-ping LI ; Qiao ZHANG ; Yi-wu ZHAO ; Huang WEN-ZHE ; Zhen-zhong WANG ; Wei XIAO
China Journal of Chinese Materia Medica 2015;40(7):1300-1304
Tyrosol, crenulatin and salidroside are the main active constituents of Rhodiola crenulata, with extensive pharmacological activities. In the study, grams of high purity tyrosol, crenulatin and salidroside were simultaneously separated from R. crenulata by the first time. Firstly, R. crenulata was extracted by 70% alcohol. Then, with the yields of three compounds as the index, the macroporous resin was optimized. At last, grams of high purity tyrosol, crenulatin and salidroside were isolated by D-101 macroporousresin, purified by column chromatography. Detected by HPLC, the purity of three compounds were higher than 98%. This method has the advantages of simple process and operation, less dosage of organic solvent, highly yield and reproducibility, suitable for the simultaneously preparation of tyrosol, crenulatin and salidroside.
Chemical Fractionation
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methods
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Chemistry, Pharmaceutical
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Chromatography, High Pressure Liquid
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Coumarins
;
analysis
;
isolation & purification
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Drugs, Chinese Herbal
;
analysis
;
isolation & purification
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Glucosides
;
analysis
;
isolation & purification
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Phenols
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analysis
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isolation & purification
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Phenylethyl Alcohol
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analogs & derivatives
;
analysis
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isolation & purification
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Rhodiola
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chemistry
6.Determination of scopolin, chlorogenic acid, scopoletin, isochlorogenic acid A, isochlorogenic acid B and isochlorogenic acid C in plants of Erycibe.
Xiao-kun XU ; Zhi-yong CHEN ; Li-ping LIAO ; Zi-jia ZHANG ; Zheng-tao WANG
China Journal of Chinese Materia Medica 2015;40(6):1119-1122
OBJECTIVEAn accurate and reliable analytical method for-simultaneous determination of six active components (scopolin, chlorogenic acid, scopoletin, isochlorogenic acid A, isochlorogenic acid B and isochlorogenic acid C) in plants of Erycibe was developed.
METHODScopolin, chlorogenic acid, scopoletin, isochlorogenic acid A, isochlorogenic acid B and isochlorogenic acid C in the samples were well separated in analytical HPLC by gradual elution with methanol-0.1% formic acid solution. The chromatographic condictions: Agilent Poroshell 120 EC-C18 column, flowing rate being 1 mL x min(-1), detecting wavelength at 345 nm.
RESULTGood linearities of scopolin, chlorogenic acid, scopoletin, isochlorogenic acid A, isochlorogenic acid B and isochlorogenic acid C were in the range of 0.026 8-2.68, 0.027 0-2.70, 0.008 1-0.81, 0.018 8-1.88, 0.017 6-1.76, 0.019 6-1.96 μg, respectively (r > 0.999 6). The average recoveries of the six components were 98.1%, 98.7%, 100.8%, 100.4%, 99.7%, 101.1%; the relative standard deviations were 2.67%, 2.86%, 2.62%, 1.98%, 2.76%, 2.19%.
CONCLUSIONThe method is simple, feasible and reproducible and can be used for the quality control of plants of Erycibe.
China ; Chlorogenic Acid ; analogs & derivatives ; analysis ; Chromatography, High Pressure Liquid ; methods ; Convolvulaceae ; chemistry ; Coumarins ; analysis ; Drugs, Chinese Herbal ; analysis ; Glucosides ; analysis ; Scopoletin ; analysis
7.Effects of P and K fertilizer on content of coumarin and yield of Glehnia littoralis.
Chuang-shu SUN ; Kan ZHENG ; Wei LI ; Gui-lin CHEN ; Rong YU ; Jian-guo YU
China Journal of Chinese Materia Medica 2015;40(18):3543-3548
By a orthogonal experiment, the influence of different ratio of phosphorus and potassium fertilizers on imperatorin, isoimperatorin and psoralen contents and yield of Glehnia littoralis were studied. The results showed that root dry weight and the yield of G. littoralis increased when reasonably applied phosphorus fertilizer combined with potassium fertilizer within a certain range. And the influence of phosphorus fertilizer was greater than that of potassium fertilizer. The optimal value of root dry weight and yield achieved at both P2O5 360 kg x hm(-2), K2O 270 kg x hm(-2) and P2O5 360 kg x hm(-2), K2O 180 kg x hm(-2). The effects of different phosphorus and potassium treatments on the content of imperatorin, isoimperatorin and psoralen in G. littoralis were determined, which shows that the content increased with the moderate increase of phosphorus and potassium. And the effects of phosphorus fertilizer were more significantly. The isoimperatorin content achieved the largest value at P2O5 360 kg x hm(-2), K2O 270 kg x hm(-2), also a larger content of imperatorin and psoralen. The imperatorin content is the largest when applied P2O5 360 kg x hm(-2), K2O 180 kg x hm(-2), and the isoimperatorin content was higher as well. So that the treatment of P2O5 360 kg x hm(-2), K2O 180 kg x hm(-2) are suitable for promote to the agricultural production, which could improve the quality and yield of G. littoralis.
Agriculture
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Apiaceae
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chemistry
;
growth & development
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metabolism
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Coumarins
;
analysis
;
metabolism
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Drugs, Chinese Herbal
;
analysis
;
metabolism
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Fertilizers
;
analysis
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Phosphorus
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analysis
;
metabolism
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Potassium
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analysis
;
metabolism
8.Chemical constituents from lipophilic parts in roots of Angelica dahurica var. formosana cv. Chuanbaizhi.
Gai-Gai DENG ; Xiu-Wei YANG ; You-Bo ZHANG ; Wei XU ; Wei WEI ; Tian-Li CHEN
China Journal of Chinese Materia Medica 2015;40(11):2148-2156
The chemical constituents from lipophilic parts in the roots of Angelica dahurica var. formosana cv. Chuanbaizhi were studied in this paper. The compounds were separated and purified by repeated column chromatographic methods on silica gel and HPLC, and the chemical structures of compounds were determined by spectral data analyses. Twenty-nine compounds were obtained and identified as isoimperatorin (1), β-sitosterol (2), imperatorin (3), bergapten (4), osthenol (5), xanthotoxin (6), isoimpinellin (7), dehydrogeijerin (8), phellopterin (9), isodemethylfuropinarine (10), 7-demethylsuberosin (11), alloimperatorin (12), xanthotoxol (13), isooxypeucedanin (14), alloisoimperatorin (15), demethylfuropinarine (16), 5-hydroxy-8-methoxypsoralen (17), oxypeucedanin methanolate (18), pabulenol (19), byakangelicin (20), marmesin (21), (+) -decursinol (22), heraclenol (23), oxypeucedanin hydrate (24), marmesinin (25), ulopterol (26), erythro-guaiacylglycerol-β-ferulic acid ether (27), threo-guaiacylglycerol-β-ferulic acid ether (28), and uracil (29). Compounds 5, 8, 11, 18, 21-23, and 26-28 were obtained from the roots of title plant for the first time.
Angelica
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chemistry
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Coumarins
;
chemistry
;
isolation & purification
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Furocoumarins
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chemistry
;
isolation & purification
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Methoxsalen
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chemistry
;
isolation & purification
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Phytochemicals
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analysis
;
chemistry
;
Plant Roots
;
chemistry
9.Analysis of variation of coumarin and volatile compounds in Angelica Dahuricae radix in different drying methods and conditions.
Pei LIU ; Jing CHEN ; Bing ZHOU ; Yuan XU ; Da-Wei QIAN ; Jin-Ao DUAN
China Journal of Chinese Materia Medica 2014;39(14):2653-2659
To explore the effect of different processing methods and conditions of coumarin and volatile compounds in Angelica Dahuricae Radix and their change regularity, in order to optimize and establish appropriate drying methods and conditions. After being cleaned, fresh Angelica Dahuricae Radix herbs were baked, sun-dried, shade-dried, sun-dried after sulfur-fumigation, dried by quick-lime embedding, freeze-dried, microwave-dried. Finally, 24 groups of samples were obtained after being mashed and passing through the 60-mesh screen. The HPLC-PDA method was adopted to simultaneously determine the content of coumarin compounds. The GC-MS method was used to determine the content of volatile compounds. The principal component analysis (PCA) was made on the standardized analysis results for the 24 groups of samples processed with different drying methods. According to the PCA results, the comprehensive scores of coumarin and volatile compounds in Angelica Dahuricae Radix herbs processed with different methods in the order from high to low were that unpeeled and dried by quicklime embedding > unpeeled and dried with hot-air at 100 degrees C > unpeeled and dried with hot-air at 40 degrees C > peeled and infrared-dried > peeled and dried with hot-air at 60 degrees C > peeled and dried with hot-air at 40 degrees C > peeled and sun-dried > peeled and dried with hot-air at 60 degrees C > peeled and dried with hot-air at 100 degrees C > peeled and microwave-dried > peeled and dried with hot-air at 80 degrees C > unpeeled and sun-dried > unpeeled and dried with sulfur-fumigation > peeled and dried with sulfur-fumigation > unpeeled and dried with hot-air at 120 degrees C > unpeeled and freeze-dried > unpeeled and infrared-dried > peeled and dried with hot-air at 120 degrees C > peeled and freeze-dried > peeled and dried by quicklime embedding > unpeeled and dried with hot-air at 80 degrees C > peeled and shade-dried > unpeeled and shade-dried > unpeeled and microwave-dried. According to the findings, different drying processing methods have certain impacts on the content coumarin and volatile compounds in Angelica Dahuricae Radix herbs. The traditional method of drying by quicklime embedding is recommended as the optimum origin processing method of Angelica Dahuricae Radix, which is followed by the method for being peeled and dried with hot-air at 100 degrees C.
Angelica
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chemistry
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Coumarins
;
analysis
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Desiccation
;
methods
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Gas Chromatography-Mass Spectrometry
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Hot Temperature
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Principal Component Analysis
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Volatile Organic Compounds
;
analysis
10.Determination of skimmin, scopolin and umbelliferone in Tibetan medicine Saussurea hieracioides by HPLC.
Rong TAN ; Yu-Jie WANG ; Yu-Xin ZHANG ; Li-Shi ZHOU ; Er TAN ; A PING ; Yi ZHANG
China Journal of Chinese Materia Medica 2014;39(6):1054-1057
This study is aimed to establish a high-performance liquid chromatography (HPLC) method for simultaneous determination of skimmin, scopolin and umbelliferone in Saussurea hieracioides. Samples were analyzed on a Wondasil C18-WR column (4.6 mm x 250 mm, 5 microm) with methanol (A) and water containing 0.1% phosphate (B) as mobile phases for gradient elution at a flow rate of 1.0 mL x min(-1). The detection wavelength and column temperature were set at 325 nm and 35 degrees C, respectively, and the sample size was 10 microL. The results showed that skimmin, scopolin and umbelliferone were simultaneously achieved within 40 min under the above conditions. A good linearity was observed in the range of 0.18-5.6 microg (r = 1.000 0), 0.060-1.8 microg (r = 0.999 9), 0.032-0.97 microg (r = 0.999 8) for skimmin, scopolin and umbelliferone, respectively, with the average recoveries of 99.16% (RSD = 0.41%), 100.3% (RSD = 0.79%), 102.2% (RSD = 0.87%). The method is simple, accurate and reproducible and can be used for the quality control of S. hieracioides.
Chromatography, High Pressure Liquid
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Coumarins
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analysis
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Glucosides
;
analysis
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Medicine, Tibetan Traditional
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Reproducibility of Results
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Saussurea
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chemistry
;
Umbelliferones
;
analysis

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