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1.
Journal of Pharmaceutical Analysis ; (6): 136-144, 2022.
Article in Chinese | WPRIM | ID: wpr-931240

ABSTRACT

Comprehensive characterization of metabolites and metabolic profiles in plasma has considerable sig-nificance in determining the efficacy and safety of traditional Chinese medicine(TCM)in vivo.However,this process is usually hindered by the insufficient characteristic fragments of metabolites,ubiquitous matrix interference,and complicated screening and identification procedures for metabolites.In this study,an effective strategy was established to systematically characterize the metabolites,deduce the metabolic pathways,and describe the metabolic profiles of bufadienolides isolated from Venenum Bufonis in vivo.The strategy was divided into five steps.First,the blank and test plasma samples were injected into an ultra-high performance liquid chromatography/linear trap quadrupole-orbitrap-mass spectrometry(MS)system in the full scan mode continuously five times to screen for valid matrix compounds and metabolites.Second,an extension-mass defect filter model was established to obtain the targeted precursor ions of the list of bufadienolide metabolites,which reduced approximately 39%of the interfering ions.Third,an acquisition model was developed and used to trigger more tandem MS(MS/MS)fragments of precursor ions based on the targeted ion list.The acquisition mode enhanced the acquisition capability by approximately four times than that of the regular data-dependent acquisition mode.Fourth,the acquired data were imported into Compound Discoverer software for identification of metabolites with metabolic network prediction.The main in vivo metabolic pathways of bufadienolides were elucidated.A total of 147 metabolites were characterized,and the main biotransformation reactions of bufadienolides were hydroxylation,dihydroxylation,and isomerization.Finally,the main prototype bufadienolides in plasma at different time points were determined using LC-MS/MS,and the metabolic profiles were clearly identified.This strategy could be widely used to elucidate the metabolic profiles of TCM preparations or Chinese patent medicines in vivo and provide critical data for rational drug use.

2.
Chinese Journal of Natural Medicines (English Ed.) ; (6): 473-480, 2021.
Article in English | WPRIM | ID: wpr-881088

ABSTRACT

Huashi Baidu prescription (HSBDF), recommended in the Guideline for the Diagnosis and Treatment of Novel Coronavirus (2019-nCoV) Pneumonia (On Trials, the Seventh Edition), was clinically used to treat severe corona virus disease 2019 (COVID-19) with cough, blood-stained sputum, inhibited defecation, red tongue etc. symptoms. This study was aimed to elucidate and profile the knowledge on its chemical constituents and the potential anti-inflammatory effect in vitro. In the study, the chemical constituents in extract of HSBDF were characterized by UPLC-Q-TOF/MS in both negative and positive modes, and the pro-inflammatory cytokines were measured by enzyme-linked immunosorbent assays (ELISA) to determine the effects of HSBDF in lipopolysaccharide (LPS)-stimulated RAW264.7 cells. The results showed that a total of 217 chemical constituents were tentativedly characterized in HSBDF. Moreover, HSBDF could alleviate the expression levels of IL-6 and TNF-α in the cell models, indicating that the antiviral effects of HSBDF might be associated with regulation of the inflammatory cytokines production in RAW264.7 cells. We hope that the results could be served as the basic data for further study of HSBDF on anti-COVID-19 effect.


Subject(s)
Humans , Anti-Inflammatory Agents/therapeutic use , Antiviral Agents/therapeutic use , COVID-19/drug therapy , Drugs, Chinese Herbal/therapeutic use , Plant Extracts/therapeutic use , SARS-CoV-2/drug effects
3.
Chinese Journal of Natural Medicines (English Ed.) ; (6): 295-304, 2021.
Article in English | WPRIM | ID: wpr-881072

ABSTRACT

In this study, a high performance thin-layer chromatography/single quadrupole mass spectrometry QDa (HPTLC-QDa) method for robust authentication of Ganoderma lucidum, a popular and valuable herbal medicine, has been developed. This method is simple and practical, which allows direct generation of characteristic mass spectra from the HPTLC plates automatically with the application of in situ solvent desorption interface. The HPTLC silica gel plates were developed with toluene-ethyl formate-formic acid (5 : 5 : 0.2, V/V) and all bands were transferred to QDa system directly in situ using 80% methanol with 0.1% formic acid as desorption solvent. The acquired HPTLC-QDa spectra showed that luminous yellow band b3, containing ganoderic acid B/G/H and ganodeneric acid B, the major active components of Ganoderma, could be found only in G. lucidum and G. lucidum (Antler-shaped), but not in G. sinense and G. applanatum. Moreover, bands b13 and b14 with m/z 475/477 and m/z 475/491/495, respectively, could be detected in G. lucidum (Antler-shaped), but not in G. lucidum, thus allowing simple and robust authentication of G. lucidum with confused species. This method is proved to be simple, practical and reproducible, which can be extended to analyze other herbal medicines.

4.
Journal of Integrative Medicine ; (12): 229-241, 2020.
Article in English | WPRIM | ID: wpr-829101

ABSTRACT

OBJECTIVE@#Lung-toxin Dispelling Formula No. 1, referred to as Respiratory Detox Shot (RDS), was developed based on a classical prescription of traditional Chinese medicine (TCM) and the theoretical understanding of herbal properties within TCM. Therapeutic benefits of using RDS for both disease control and prevention, in the effort to contain the coronavirus disease 2019 (COVID-19), have been shown. However, the biochemically active constituents of RDS and their mechanisms of action are still unclear. The goal of the present study is to clarify the material foundation and action mechanism of RDS.@*METHODS@#To conduct an analysis of RDS, an integrative analytical platform was constructed, including target prediction, protein-protein interaction (PPI) network, and cluster analysis; further, the hub genes involved in the disease-related pathways were identified, and the their corresponding compounds were used for in vitro validation of molecular docking predictions. The presence of these validated compounds was also measured in samples of the RDS formula to quantify the abundance of the biochemically active constituents. In our network pharmacological study, a total of 26 bioinformatic programs and databases were used, and six networks, covering the entire Zang-fu viscera, were constructed to comprehensively analyze the intricate connections among the compounds-targets-disease pathways-meridians of RDS.@*RESULTS@#For all 1071 known chemical constituents of the nine ingredients in RDS, identified from established TCM databases, 157 passed drug-likeness screening and led to 339 predicted targets in the constituent-target network. Forty-two hub genes with core regulatory effects were extracted from the PPI network, and 134 compounds and 29 crucial disease pathways were implicated in the target-constituent-disease network. Twelve disease pathways attributed to the Lung-Large Intestine meridians, with six and five attributed to the Kidney-Urinary Bladder and Stomach-Spleen meridians, respectively. One-hundred and eighteen candidate constituents showed a high binding affinity with SARS-coronavirus-2 3-chymotrypsin-like protease (3CL), as indicated by molecular docking using computational pattern recognition. The in vitro activity of 22 chemical constituents of RDS was validated using the 3CL inhibition assay. Finally, using liquid chromatography mass spectrometry in data-independent analysis mode, the presence of seven out of these 22 constituents was confirmed and validated in an aqueous decoction of RDS, using reference standards in both non-targeted and targeted approaches.@*CONCLUSION@#RDS acts primarily in the Lung-Large Intestine, Kidney-Urinary Bladder and Stomach-Spleen meridians, with other Zang-fu viscera strategically covered by all nine ingredients. In the context of TCM meridian theory, the multiple components and targets of RDS contribute to RDS's dual effects of health-strengthening and pathogen-eliminating. This results in general therapeutic effects for early COVID-19 control and prevention.


Subject(s)
Humans , Antiviral Agents , Chemistry , Therapeutic Uses , Betacoronavirus , Chemistry , Coronavirus Infections , Drug Therapy , Virology , Cysteine Endopeptidases , Chemistry , Drugs, Chinese Herbal , Chemistry , Therapeutic Uses , Mass Spectrometry , Medicine, Chinese Traditional , Molecular Docking Simulation , Pandemics , Pneumonia, Viral , Drug Therapy , Virology , Protein Interaction Maps , Viral Nonstructural Proteins , Chemistry
5.
Chinese Journal of Natural Medicines (English Ed.) ; (6): 301-309, 2017.
Article in English | WPRIM | ID: wpr-812111

ABSTRACT

Aconiti Lateralis Radix Praeparata (Fuzi) is a commonly used traditional Chinese medicine in clinic for its potency in restoring yang and rescuing from collapse. Aconiti alkaloids, mainly including monoester-diterpenoidaconitines (MDAs) and diester-diterpenoidaconitines (DDAs), are considered to act as both bioactive and toxic constituents. In the present study, a feasible, economical, and accurate HPLC method for simultaneous determination of six alkaloid markers using the Single Standard for Determination of Multi-Components (SSDMC) method was developed and fully validated. Benzoylmesaconine was used as the unique reference standard. This method was proven as accurate (recovery varying between 97.5%-101.8%, RSD 0.999 9) over the concentration ranges, and subsequently applied to quantitative evaluation of 62 batches of samples, among which 45 batches were from good manufacturing practice (GMP) facilities and 17 batches from the drug market. The contents were then analyzed by principal component analysis (PCA) and homogeneity test. The present study provided valuable information for improving the quality standard of Aconiti Lateralis Radix Praeparata. The developed method also has the potential in analysis of other Aconitum species, such as Aconitum carmichaelii (prepared parent root) and Aconitum kusnezoffii (prepared root).


Subject(s)
Aconitine , Chemistry , Aconitum , Chemistry , Alkaloids , Biomarkers , Chromatography, High Pressure Liquid , Economics , Methods , Diterpenes , Chemistry , Drugs, Chinese Herbal , Chemistry , Feasibility Studies , Molecular Structure
6.
Chinese Journal of Natural Medicines (English Ed.) ; (6): 766-774, 2017.
Article in English | WPRIM | ID: wpr-812058

ABSTRACT

Euphorbia kansui is a commonly used traditional Chinese medicine for the treatment of edema, pleural effusion, and asthma, etc. According to the previous researches, terpenoids in E. kansui possess various biological activities, e.g., anti-virus, anti-allergy, antitumor effects. In this work, twenty five terpenoids were isolated from E. kansui, including thirteen ingenane- and eight jatrophane-type diterpenoids (with two new compounds, kansuinin P and Q) and four triterpenoids. Eighteen of them were analyzed by MTS assay for in vitro anticancer activity in five human cancer cell lines. Structure-activity relationship for 12 ingenane-type diterpenoids in colorectal cancer Colo205 cells were preliminary studied. Significant anti-proliferation activities were observed in human melanoma cells breast cancer MDA-MB-435 cells and Colo205 cells. More than half of the isolated ingenane-type diterpenoids showed inhibitory activities in MDA-MB-435 cells. Eight ingenane- and one jatrophane-type diterpenoids possessed much lower IC values in MDA-MB-435 cells than positive control staurosporine. Preliminary structure-activity relationship analysis showed that substituent on position 20 was important for the activity of ingenane-type diterpenoids in Colo205 cells and substituent on position 3 contributed more significant biological activity of the compounds than that on position 5 in both MDA-MB-435 and Colo205 cells.


Subject(s)
Humans , Cell Line, Tumor , Cell Proliferation , Drugs, Chinese Herbal , Chemistry , Pharmacology , Euphorbia , Chemistry , Molecular Structure , Neoplasms , Drug Therapy , Structure-Activity Relationship , Terpenes , Chemistry , Pharmacology
7.
Chinese Journal of Natural Medicines (English Ed.) ; (6): 709-713, 2016.
Article in English | WPRIM | ID: wpr-812574

ABSTRACT

The sea dragon Solenognathus hardwickii has long been used as a traditional Chinese medicine for the treatment of various diseases, such as male impotency. To gain a comprehensive insight into the protein components of the sea dragon, shotgun proteomic analysis of its protein expression profiling was conducted in the present study. Proteins were extracted from dried sea dragon using a trichloroacetic acid/acetone precipitation method and then separated by SDS-PAGE. The protein bands were cut from the gel and digested by trypsin to generate peptide mixture. The peptide fragments were then analyzed using nano liquid chromatography tandem mass spectrometry (nano-LC-ESI MS/MS). 810 proteins and 1 577 peptides were identified in the dried sea dragon. The identified proteins exhibited molecular weight values ranging from 1 900 to 3 516 900 Da and pI values from 3.8 to 12.18. Bioinformatic analysis was conducted using the DAVID Bioinformatics Resources 6.7 Gene Ontology (GO) analysis tool to explore possible functions of the identified proteins. Ascribed functions of the proteins mainly included intracellular non-membrane-bound organelle, non-membrane-bounded organelle, cytoskeleton, structural molecule activity, calcium ion binding and etc. Furthermore, possible signal networks of the identified proteins were predicted using STRING (Search Tool for the Retrieval of Interacting Genes) database. Ribosomal protein synthesis was found to play an important role in the signal network. The results of this study, to best of our knowledge, were the first to provide a reference proteome profile for the sea dragon, and would aid in the understanding of the expression and functions of the identified proteins.


Subject(s)
Animals , Computational Biology , Fish Proteins , Chemistry , Genetics , Metabolism , Fishes , Genetics , Metabolism , Gene Expression Profiling , Peptides , Chemistry , Genetics , Metabolism , Proteomics , Tandem Mass Spectrometry
8.
Chinese Journal of Natural Medicines (English Ed.) ; (6): 856-864, 2016.
Article in English | WPRIM | ID: wpr-812567

ABSTRACT

Arisaema heterophyllum Blume is one of the three medicinal plants known as traditional Chinese medicine Rhizoma Arisaematis (RA). RA has been popularly used to treat patients with convulsions, inflammation, and cancer for a long time. However, the underlying mechanisms for RA effects are still unclear. The present study was designed to determine the cytotoxicity of agglutinin isolated from Arisema heterophyllum Blume (AHA) and explore the possible mechanisms in human non-small-cell lung cancer A549 cells. AHA with purity up to 95% was isolated and purified from Arisaema heterophyllum Blume using hydrophobic interaction chromatography. AHA dose-dependently inhibited the proliferation of A549 cells and induced G phase cell cycle arrest. AHA induced apoptosis by up-regulating pro-apoptotic Bax, decreasing anti-apoptotic Bcl-2, and activating caspase-9 and caspase-3. In A549 cells treated with AHA, the PI3K/Akt pathway was inhibited. Furthermore, AHA induced increase in the levels of ER stress markers such as phosphorylated eukaryotic initiation factor 2α (p-eIF2α), C/EBP-homologous protein (CHOP), inositol-requiring enzyme 1α (IRE1α), and phosphorylated c-Jun NH-terminal kinase (p-JNK). AHA also induced autophagy in A549 cells. Staining of acidic vesicular organelles (AVOs) and increase in the levels of LC3II and ATG7 were observed in AHA-treated cells. These findings suggested that AHA might be one of the active components with anti-cancer effects in Arisaema heterophyllum Blume. In conclusion, cytotoxicity of AHA on cancer cells might be related to its effects on apoptosis and autophagy through inhibition of PI3K/Akt pathway and induction of ER stress.


Subject(s)
Humans , A549 Cells , Agglutinins , Pharmacology , Apoptosis , Arisaema , Chemistry , Autophagy , Carcinoma, Non-Small-Cell Lung , Drug Therapy , Metabolism , Cell Line, Tumor , Drugs, Chinese Herbal , Pharmacology , Endoplasmic Reticulum Stress , MAP Kinase Signaling System , Phosphatidylinositol 3-Kinases , Genetics , Metabolism , Phosphorylation , Proto-Oncogene Proteins c-akt , Genetics , Metabolism
9.
Chinese Journal of Natural Medicines (English Ed.) ; (6): 954-960, 2016.
Article in English | WPRIM | ID: wpr-812535

ABSTRACT

Polysaccharides from numerous traditional Chinese medicines have been proven as the bioactive ingredients and are hence used as the quality control markers. However, the assessment criteria always show a poor specificity, due to the lack of systematic comparison among the analogous herbs. In the present study, two similar materials, namely sea-tangle and sargassum, were selected as the model herbs to develop more specific methods for quality control. Two well-established methods, determination of the total polysaccharides content and monosaccharides composition analysis, were both employed. Based upon the quantitative results, the evaluation criteria of the polysaccharides contents of not less than 2.0% and 1.7% were proposed for sea-tangle and sargassum, respectively. Nine identical monosaccharide derivatives appeared on the HPLC chromatograms of the hydrolysis and derivatized solutions of the two drugs. Principal component analysis and orthogonal partial least squares discriminant analysis using the peak areas of monosaccharides derivatives as the variables were performed, and the results indicated that mannuronic acid and xylose with the opposite concentrations in the two drugs were the differential components. A discriminative criterion using the peak area ratio of these two monosaccharides derivatives was proposed for the qualitative identification. In conclusion, a more specific and quantitative quality control method was developed for sea-tangle and sargassum.


Subject(s)
Chromatography, High Pressure Liquid , Methods , Drugs, Chinese Herbal , Chemistry , Laminaria , Chemistry , Plant Extracts , Chemistry , Polysaccharides , Chemistry , Quality Control , Sargassum , Chemistry , Seaweed , Chemistry
10.
Chinese Journal of Natural Medicines (English Ed.) ; (6): 867-872, 2015.
Article in English | WPRIM | ID: wpr-812470

ABSTRACT

The present study was designed to systematically investigate the ESI-MS(n) behavior of a complex 3, 7-O-glycosyl flavonol, kaempferol 3-O-α-L-[2,3-di-O-β-D-(6-E-p-coumaroyl)glucopyranosyl]-rhamnopyranosyl-7-O-α-L-rhamnopyranoside (KO) isolated from Epimedium wushanense, and to address the elimination priority among different glycosylation sites and different sugars/substituents. The direct-infusion ESI-MS(n) experiment of KO was performed on a hybrid LTQ-Orbitrap Velos Pro mass spectrometer in both negative and positive ion modes by three different fragmentation mechanisms (CID, HCD, and PQD). The CID, HCD, and PQD analyses of KO exhibited remarkable discrimination in respect of the scan range, richness, and distribution of product ions through the entire spectra. KO experienced different fragmentation pathways between two ionization modes: the negative mode CID of KO eliminated the glycosyl portions (priority: 7-sugar > 3-substituent and terminal substituents > inner sugar) and produced aglycone product ions at m/z 284.03/285.04; however, abundant sodium-adduct B(3)2 together with subsequent (i,j)X(3)0 cleavages were found characteristic for the positive mode CID-MS(n). The fragmentation pathways by CID for KO were proposed by analyzing the high accuracy ESI-MS(n) data. Complementary structural information of KO regarding the aglycone and glycosyl portions was obtained by analyzing the ESI-MS(n) data in both ionization modes. In conclusion, the LTQ-Orbitrap method facilitates highly reliable qualitative analysis of bioactive flavonoids with three alternative fragmentation modes.


Subject(s)
Epimedium , Chemistry , Flavonols , Glycosides , Glycosylation , Herbal Medicine , Plant Extracts , Chemistry , Spectrometry, Mass, Electrospray Ionization , Methods , Tandem Mass Spectrometry , Methods
11.
Chinese Journal of Natural Medicines (English Ed.) ; (6): 41-51, 2015.
Article in English | WPRIM | ID: wpr-812175

ABSTRACT

Gambogic acid (GA) is an anticancer agent in phase ‖b clinical trial in China but its mechanism of action has not been fully clarified. The present study was designed to search the possible target-related proteins of GA in cancer cells using proteomic method and establish possible network using bioinformatic analysis. Cytotoxicity and anti-migration effects of GA in MDA-MB-231 cells were checked using MTT assay, flow cytometry, wound migration assay, and chamber migration assay. Possible target-related proteins of GA at early (3 h) and late stage (24 h) of treatment were searched using a proteomic technology, two-dimensional electrophoresis (2-DE). The possible network of GA was established using bioinformatic analysis. The intracellular expression levels of vimentin, keratin 18, and calumenin were determined using Western blotting. GA inhibited cell proliferation and induced cell cycle arrest at G2/M phase and apoptosis in MDA-MB-231 cells. Additionally, GA exhibited anti-migration effects at non-toxic doses. In 2-DE analysis, totally 23 possible GA targeted proteins were found, including those with functions in cytoskeleton and transport, regulation of redox state, metabolism, ubiquitin-proteasome system, transcription and translation, protein transport and modification, and cytokine. Network analysis of these proteins suggested that cytoskeleton-related proteins might play important roles in the effects of GA. Results of Western blotting confirmed the cleavage of vimentin, increase in keratin 18, and decrease in calumenin levels in GA-treated cells. In summary, GA is a multi-target compound and its anti-cancer effects may be based on several target-related proteins such as cytoskeleton-related proteins.


Subject(s)
Humans , Antineoplastic Agents , Pharmacokinetics , Apoptosis , Breast Neoplasms , Drug Therapy , Metabolism , Calcium-Binding Proteins , Genetics , Cell Line, Tumor , Cell Migration Assays , Cell Migration Inhibition , Cell Proliferation , Computational Biology , Methods , Cytoskeleton , Metabolism , Electrophoresis, Gel, Two-Dimensional , Flow Cytometry , Gene Expression , Keratin-18 , Genetics , Oxidation-Reduction , Protein Biosynthesis , Protein Transport , Proteomics , Methods , Transcription, Genetic , Ubiquitin-Specific Proteases , Pharmacokinetics , Vimentin , Genetics , Xanthones , Pharmacokinetics
12.
Chinese Journal of Natural Medicines (English Ed.) ; (6): 241-250, 2014.
Article in English | WPRIM | ID: wpr-812269

ABSTRACT

Over the past 30 years, China has significantly improved the drug development environment by establishing a series of policies for the regulation of new drug approval. The regulatory system for new drug evaluation and registration in China was gradually developed in accordance with international standards. The approval and registration of TCM in China became as strict as those of chemical drugs and biological products. In this review, TCM-based new drug discovery and development are introduced according to the TCM classification of nine categories.


Subject(s)
China , Drug Discovery , Reference Standards , Drugs, Chinese Herbal , Reference Standards , Medicine, Chinese Traditional , Reference Standards
13.
China Journal of Chinese Materia Medica ; (24): 3321-3325, 2014.
Article in Chinese | WPRIM | ID: wpr-244572

ABSTRACT

The marine biological source of mineral drugs recorded in Chinese Pharmacopoeia (2010 version) mainly including pearl, nacre, clam shell, common oyster shell, ark shell, cuttle bone, and sea-ear shell are widely used in clinical. Calcium carbonate and a small amount of protein are the main components in this type of drugs. In this paper, a systematical and comparable study were carried out by determination of calcium carbonate by EDTA titration method, the crystal of calcium carbonate by X-Ray powder diffraction and the total amino acids (TAAs) of the hydrolyzed samples by ultraviolet spectrophotometry method. As a result, the crystal structure is calcite for common oyster shell, mixture of calcite and aragonite for nacre and sea-ear shell, aragonite for the other drugs. The content of calcium carbonate ranged from 86% to 96%. Cuttle bone has the highest amount of TAAs among the seven drugs which reached 1.7% while clam shell has the lowest content of 0.16% on average. In conclusion, an effective method was developed for the quality control of marine mineral drugs by comprehensive analysis of calcium carbonate and TAAs in the seven marine mineral drugs.


Subject(s)
Animals , Amino Acids , Chemistry , Animal Shells , Chemistry , Calcium Carbonate , Chemistry , Crystallization , Edetic Acid , Chemistry , Mollusca , Chemistry , Classification , Pharmaceutical Preparations , Chemistry , Reference Standards , Quality Control , Reproducibility of Results , Seawater , Species Specificity , Spectrophotometry, Ultraviolet , X-Ray Diffraction
14.
China Journal of Chinese Materia Medica ; (24): 351-356, 2014.
Article in Chinese | WPRIM | ID: wpr-287579

ABSTRACT

Based on the research goal of "traditional Chinese medicine standards lead in the international standard-setting", scientific strategies for the elaboration of traditional Chinese medicine (TCM) comprehensive quality standard system were introduced. TCM is a complex multi-component system which was used under the guidance of traditional Chinese medical theory. The present paper has put forward the basic principle of " deep research and simplified standard" to construct the quality standards of TCM. " Deep research" refers to systematic, thorough investigations on active constituents and biological mechanisms. On the basis of deep research, "simplified standard" means to establish a scientific and feasible standard, which should be practical and less complicated, to control the quality of Chinese herbs. Three key issues related to the elaboration of the quality standards are suggested. For reference substances, we propose the research methodology using reference extract to develop the qualitative and quantitative determination methods. Compared with that of using reference compounds, the preparation of reference extract is more accessible, economical and practical. Moreover, compared with reference crude drugs, the reference extract showed better batch-to-batch consistency. For identification, in addition to conventional methods, high performance liquid chromatography (HPLC), chemical fingerprints and characteristic chromatogram are proposed, in which more major marker compounds are monitored. And then LC-MS technique is employed to comprehensively analyze and characterize the peaks in the fingerprint. For multi-component quantification, the method of single standard to determine multi-components (SSDMC) is suggested, providing solutions for the lack of reference standards in quality evaluation. The SSDMC method uses a single reference standard to simultaneously determine the content of multiple compounds. In general, the integrate quality control standard of TCM is established based on combining innovative technology with practical applications.


Subject(s)
Chemistry Techniques, Analytical , Medicine, Chinese Traditional , Reference Standards , Quality Control , Reference Standards
15.
China Journal of Chinese Materia Medica ; (24): 353-355, 2002.
Article in Chinese | WPRIM | ID: wpr-263662

ABSTRACT

<p><b>OBJECTIVE</b>To optimize the preparation of genistein chitosan microspheres with central composite design (CCD).</p><p><b>METHOD</b>The chitosan microspheres were prepared by the O/W/O multiple emulsion method. Second-order polynomial and linear equations were fitted to the data, and the resulting equations were used to produce response surface graphs and the best experiment conditions.</p><p><b>RESULT</b>The theoretical drug content was 13%-15%, the concentration of organic phase was 30%-40% and the concentration of oil phase was 68%-72%.</p><p><b>CONCLUSION</b>The best experiment conditions can be obtained by central composite design and response surface methodology. The observed values agree well with model predicted values.</p>


Subject(s)
Antineoplastic Agents , Chitin , Chitosan , Delayed-Action Preparations , Genistein , Mathematics , Microspheres
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