1.Chemical constituents of Kadsura oblongifolia and evaluation of their toxicity.
Jin ZHANG ; Zhi-Ming WANG ; Ke-Chun LIU ; Qiu-Xia HE ; Yao-Dong QI ; Ben-Gang ZHANG ; Hai-Tao LIU ; Pei-Gen XIAO
Acta Pharmaceutica Sinica 2014;49(9):1296-1303
To study the chemical constituents of K. oblongifolia, silica gel column chromatography, MCI and Sephadex LH-20 were used to separate the 70% acetone extract of the stems of K. oblongifolia. The structures of the isolated compounds have been established on the basis of physicochemical and NMR spectroscopic evidence as well as ESI-MS in some cases. Twenty compounds were obtained and identified as heteroclitalignan A (1), kadsulignan F (2), kadoblongifolin C (3), schizanrin F (4), heteroclitalignan C (5), kadsurarin (6), kadsulignan O (7), eburicol (8), meso-dihydroguaiaretic acid (9), kadsufolin A (10), tiegusanin M (11), heteroclitin B (12), (7'S)-parabenzlactone (13), angeloylbinankadsurin B (14), propinquain H (15), quercetin (16), kadsulignan P (17), schizanrin G (18), micrandilactone C (19) and (-)-shikimic acid (20). Compouds 1, 5, 8, 11-15, 18 and 20 were isolated from this plant for the first time. Toxicity of compounds 1-10 were evaluated with zebrafish model to observe the effect on its embryonic development and heart function. The results showed that compounds 7, 9 and 10 caused edema of zebrafish embryo and decreased the heart rate of zebrafish, which exhibited interference effect on heart development of zebrafish.
Animals
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Embryo, Nonmammalian
;
drug effects
;
Guaiacol
;
analogs & derivatives
;
toxicity
;
Kadsura
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chemistry
;
Lignans
;
toxicity
;
Plant Extracts
;
toxicity
;
Quercetin
;
toxicity
;
Triterpenes
;
toxicity
;
Zebrafish
;
embryology
2.Rapid identification 15 effective components of anti common cold medicine with MRM by LC-MS/MS.
Jian-Guo JIANG ; Xi-Ru ZHANG ; Yi-Hua ZHANG ; Geng-Shen SONG
Acta Pharmaceutica Sinica 2013;48(1):94-97
This paper reports the establishment of a method for rapid identification 15 effective components of anti common cold medicine (paracetamol, aminophenazone, pseudoephedrine hydrochloride, methylephedrine hydrochloride, caffeine, amantadine hydrochloride, phenazone, guaifenesin, chlorphenamine maleate, dextromethorphen hydrobromide, diphenhydramine hydrochloride, promethazine hydrochloride, propyphenazone, benorilate and diclofenac sodium) with MRM by LC-MS/MS. The samples were extracted by methanol and were separated from a Altantis T3 column within 15 min with a gradient of acetonitrile-ammonium acetate (containing 0.25% glacial acetic acid), a tandem quadrupole mass spectrometer equipped with electrospray ionization source (ESI) was used in positive ion mode, and multiple reaction monitoring (MRM) was performed for qualitative analysis of these compounds. The minimum detectable quantity were 0.33-2.5 microg x kg(-1) of the 15 compounds. The method is simple, accurate and with good reproducibility for rapid identification many components in the same chromatographic condition, and provides a reference for qualitative analysis illegally added chemicals in anti common cold medicine.
Acetaminophen
;
analysis
;
Acetanilides
;
analysis
;
Amantadine
;
analysis
;
Aminopyrine
;
analysis
;
Anti-Inflammatory Agents, Non-Steroidal
;
analysis
;
Antipyretics
;
analysis
;
Antipyrine
;
analogs & derivatives
;
analysis
;
Caffeine
;
analysis
;
Chlorpheniramine
;
analysis
;
Chromatography, Liquid
;
Diclofenac
;
analysis
;
Diphenhydramine
;
analysis
;
Drug Contamination
;
Drug Stability
;
Ephedrine
;
analogs & derivatives
;
analysis
;
Guaifenesin
;
analysis
;
Promethazine
;
analysis
;
Pseudoephedrine
;
analysis
;
Reproducibility of Results
;
Salicylates
;
analysis
;
Spectrometry, Mass, Electrospray Ionization
;
Tandem Mass Spectrometry
3.A case of levocetirizine-induced fixed drug eruption and cross-reaction with piperazine derivatives
Mi Yeong KIM ; Eun Jung JO ; Yoon Seok CHANG ; Sang Heon CHO ; Kyung Up MIN ; Sae Hoon KIM
Asia Pacific Allergy 2013;3(4):281-284
Fixed drug eruption is an uncommon adverse drug reaction caused by delayed cell-mediated hypersensitivity. Levocetirizine is an active (R)-enatiomer of cetirizine and there have been a few reports of fixed drug eruption related to these antihistamines. We experienced a case of levocetirizine-induced fixed drug eruption and cross-reaction with other piperazine derivatives confirmed by patch test. A 73-year-old female patient presented with recurrent generalized itching, cutaneous bullae formation, rash and multiple pigmentation at fixed sites after taking drugs for common cold. She took bepotastine besilate (Talion®) and levocetirizine (Xyzal®) as antihistamine. She took acetaminophen, pseudoephedrine 60 mg / triprolidine 2.5 mg (Actifed®), dihydrocodeinebitartrate 5 mg / di-methylephedrine hydrochloride 17.5 mg / chlorpheniramine maleate 1.5 mg / guaifenesin 50 mg (Codening®) and aluminium hydroxide 200 mg / magnesium carbonate 120 mg (Antad®) at the same time. Patch test was done with suspected drugs and the result was positive with levocetirizine. We additionally performed patch test for other antihistamines such as cetirizine, hydroxyzine, fexofenadine and loratadine. Piperazine derivatives (cetirizine and hydroxyzine) were positive, but piperidine derivatives (fexofenadine and loratadine) were negative to patch test. There was no adverse drug reaction when she was challenged with fexofenadine. We report a case of levocetirizine-induced fixed drug eruption confirmed by patch test. Cross-reactions were only observed in the piperazine derivatives and piperidine antihistamine was tolerant to the patient.
Acetaminophen
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Aged
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Carbon
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Cetirizine
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Chlorpheniramine
;
Common Cold
;
Drug Eruptions
;
Drug-Related Side Effects and Adverse Reactions
;
Exanthema
;
Female
;
Guaifenesin
;
Histamine Antagonists
;
Humans
;
Hydroxyzine
;
Hypersensitivity
;
Loratadine
;
Magnesium
;
Patch Tests
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Pigmentation
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Pruritus
;
Pseudoephedrine
;
Triprolidine
4.Study on anti-cataract effect of gigantol combined with syringic acid and their mechanism.
Hongxing DIAO ; Yanqun YI ; Hui QI ; Xinxin GAO ; Hua FANG ; Xiaoyong WEI ; Qiong GU ; Ling WANG ; Zhengtao WANG ; Lianquan GU
China Journal of Chinese Materia Medica 2012;37(16):2429-2434
OBJECTIVETo study the anti-cataract effect of gigantol combined with syringic acid and their action mechanism.
METHODH202-induced lens oxidative injury in vitro rat model was establish to observe the impact of gigantol combined with syringic acid on lens transparency under a dissecting microscope. D-galactose-induced cataract rat model was established to observe the impact of gigantol combined with syringic acid on lens transparency under a slit-lamp. UV spectrophotometry was adopted to detect the inhibitory activity of gigantol combined with syringic acid against AR. Molecular docking method was used to detect binding sites, binding types and pharmacophores of gigantol combined with syringic acid in prohibiting aldose reductase.
RESULTBoth in vitro and in vivo experiments showed a good anti-sugar cataract activity in the combination of gigantol and syringic acid and a better collaborative effect than single component-gigantol and syringic acid and positive control drug Catalin. Molecular docking and dynamic simulation showed their collaborative AR-inhibiting amino acid residue was Asn160 and the major acting force was Van der Waals' force, which formed common pharmacophores.
CONCLUSIONGigantol combined with syringic acid shows good anti-cataract, their action mechanism is reflected in their good collaborative inhibitory effect on AR.
Aldehyde Reductase ; antagonists & inhibitors ; Animals ; Bibenzyls ; Cataract ; drug therapy ; enzymology ; Drug Synergism ; Female ; Gallic Acid ; analogs & derivatives ; pharmacology ; Guaiacol ; analogs & derivatives ; pharmacology ; Humans ; In Vitro Techniques ; Lens, Crystalline ; drug effects ; enzymology ; Male ; Rats ; Rats, Wistar
5.Effect of Qingkailing Injection on children with respiratory syncytial virus pneumonia of phlegm-heat obstructing Fei syndrome pattern at different time-points.
Yan YANG ; Shou-Chuan WANG ; Rui-Li LI
Chinese Journal of Integrated Traditional and Western Medicine 2010;30(9):908-911
OBJECTIVETo evaluate the curative effect of Qingkailing Injection (QKL) for treatment of children's respiratory syncytial virus pneumonia of phlegm-heat obstructing Fei syndrome pattern (SVP-PH) depending upon main symptom assessment.
METHODSA Chinese-Western medicine comparative trial was conducted on 206 children with SVP-PH in two groups treated with Ribavirin injection plus compound guaiacol potassium sul-fonale oral solution (as control group) and QKL injection plus Ertong Qingfei oral liquid (as treated group) respectively, for 10 days. The curative effectiveness on four main symptoms (fever, cough, sputum and short breath) were evaluated at different time-points.
RESULTSThe effectiveness in the treated group at various time-points was superior to that in the control group, showing the earlier initiating time (on the 4th day) and the preponderances on cough and sputum ran all through the whole course.
CONCLUSIONChinese medicine shows a multi-target effect in treating children's SVP-HP.
Child ; Diagnosis, Differential ; Drugs, Chinese Herbal ; therapeutic use ; Female ; Guaiacol ; analogs & derivatives ; therapeutic use ; Humans ; Infusions, Intravenous ; Male ; Medicine, Chinese Traditional ; Phytotherapy ; Pneumonia, Viral ; drug therapy ; Respiratory Syncytial Virus Infections ; drug therapy ; Ribavirin ; therapeutic use
6.Effective components against HIV-1 replicative enzymes isolated from plants.
Zong-gen PENG ; Li-jia XU ; Wen-cai YE ; Pei-gen XIAO ; Hong-shan CHEN
Acta Pharmaceutica Sinica 2010;45(2):235-240
Plant active components characterized of many different structures and activities on multiple targets, have made them to be the important sources of inhibitors on HIV-1. For finding leading compounds with new structure against HIV-1, three key HIV-1 replicative enzymes (reverse transcriptase, protease and integrase) were used as screening models. The in vitro activities of 45 plant derived components isolated from Schisandraceae, Rutaceae and Ranunculaceae were reported. Within twelve triterpene components isolated, eight compounds were found to inhibit HIV-1 protease, in these eight active compounds, kadsuranic acid A (7) and nigranoic acid (8), inhibited both HIV-1 protease and integrase; Among fifteen lignans, meso-dihydroguaiaretic acid (15) and kadsurarin (16) were active on HIV-1 reverse transcriptase, and 4, 4-di(4-hydroxy-3-methoxyphenly)-2, 3-dimethylbutanol (13) active on HIV-1 integrase. All of the six alkaloids, seven flavones, and five others compounds were not active or only with low activities against HIV-1 replicative enzymes. Further studies of the triterpene components showing strong inhibitory activities on HIV-1 were warranted.
Alkaloids
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chemistry
;
isolation & purification
;
pharmacology
;
Anti-HIV Agents
;
chemistry
;
isolation & purification
;
pharmacology
;
Drugs, Chinese Herbal
;
chemistry
;
isolation & purification
;
pharmacology
;
Flavones
;
chemistry
;
isolation & purification
;
pharmacology
;
Guaiacol
;
analogs & derivatives
;
chemistry
;
isolation & purification
;
pharmacology
;
HIV Integrase
;
drug effects
;
HIV Protease
;
drug effects
;
HIV Reverse Transcriptase
;
antagonists & inhibitors
;
Lignans
;
chemistry
;
isolation & purification
;
pharmacology
;
Plants, Medicinal
;
chemistry
;
Ranunculaceae
;
chemistry
;
Rutaceae
;
chemistry
;
Schisandraceae
;
chemistry
;
Triterpenes
;
chemistry
;
isolation & purification
;
pharmacology
7.Studies on chemical constituents in fruit of Alpinia oxyphylla.
Junju XU ; Ninghua TAN ; Guangzhi ZENG ; Hongjin HAN ; Huoqiang HUANG ; Changjiu JI ; Meiju ZHU ; Yumei ZHANG
China Journal of Chinese Materia Medica 2009;34(8):990-993
OBJECTIVETo study the chemical constituents in fruit of Alpinia oxyphylla and their cytotoxicities on cancer cell lines.
METHODCompounds were isolated and purified by various column chromatographic methods. Their structures were determined by physico-chemical properties and spectral analyses. Compound cytotoxicity was assessed by the sulforhodamine B (SRB) assay.
RESULTEight compounds were obtained from Me2CO-H2O (70%) extract of the fruit of A. oxyphylla and their structures were identified as: (9E)-humulene-2, 3; 6, 7-diepoxide (1), 3(12), 7(13), 9(E)-humulatriene-2, 6-diol (2), (-)-oplopanone (3), yakuchinone A (4), yakuchinone B (5), tectochrysin (6), isovanillin (7), (2E, 4E)-6-hydroxy-2, 6-dimethylhepta-2, 4-dienal (8), and the cytotoxicities of compounds 1, 3-5 on cancer cell lines, A549, HT-29 and SGC-7901, were also investigated.
CONCLUSIONCompounds 1-3, 7, 8 were isolated for the first time from this genus and compounds 1, 3-5 exhibited no cytotoxicity against three cancer cell lines at a concentration of 10 mg x L(-1).
Alpinia ; chemistry ; Benzaldehydes ; chemistry ; isolation & purification ; pharmacology ; Cell Line, Tumor ; Cell Survival ; drug effects ; Diarylheptanoids ; chemistry ; isolation & purification ; pharmacology ; Drugs, Chinese Herbal ; chemistry ; isolation & purification ; pharmacology ; Flavonoids ; chemistry ; isolation & purification ; pharmacology ; Fruit ; chemistry ; Guaiacol ; analogs & derivatives ; chemistry ; isolation & purification ; pharmacology ; HT29 Cells ; Humans
8.Three Cases of Chronic Headache, Bronchial Asthma and Bronchial Amyloidosis Successfully Treated with Reitakutsuukitoukashin'i
Katsutoshi TERASAWA ; Nobuyasu SEKIYA ; Takao NAMIKI ; Yuji KASAHARA ; Atsushi CHINO ; Kenji OHNO ; Yoshiro HIRASAKI
Kampo Medicine 2008;59(2):303-307
The source of reitakutsukito, which has been described in only one case, is the text “Ranshitsu-hizo.” We recently experienced a 65-year old male suffering from refractory chronic headache for forty years, and a 38-year old female suffering from bronchial asthma resistant to tokishigyakukagoshuyushokyoto, whose symptoms were successfully treated with reitakutsukito by adding shin'i which has the action of dispersing pathogenic wind factor and opening orifice. Although reduction of underlying disease was not obtained, we also experienced clear improvement of oxygen saturation peripherally, and the subjective symptoms of a 40-year old male suffering from bronchial amyloidosis with reitakutsukitokashin'i. We report these three cases including documented considerations.
Asthma
;
Amyloidosis
;
Cases
;
Bronchial brand of guaifenesin-theophylline
;
symptoms <1>
9.Studies on chemical constituents of Dendrobium crystallinum.
Lei WANG ; Chao-feng ZHANG ; Zheng-tao WANG ; Mian ZHANG ; Li SHAO ; Luo-shan XU
China Journal of Chinese Materia Medica 2008;33(15):1847-1848
OBJECTIVETo study the chemical constituents of Dendobium crystallinum.
METHODCompounds were isolated and purified by silica gel and Sephadex LH-20 column chromatography. Their structures were identified by physicochemical properties and spectral analyses.
RESULTNine compounds were obtained and identified as: 4, 4'-dihydroxy-3, 5-dimethoxybi-benzyl (1), gigantol (2), naringenin (3) , p-hydroxybenzoic acid (4), n-tetracosyl trans-p-cou-marate (5), n-octacosy trans-p-coumarate (6), n-hexacosyl trans-ferulate (7), stigmasterol (8), daucosterol (9).
CONCLUSIONAll these compounds were obtained from this plant for the first time, compounds 1 and 4 were isolated firstly from the genus.
Bibenzyls ; Chromatography ; Dendrobium ; chemistry ; Drugs, Chinese Herbal ; chemistry ; Flavanones ; chemistry ; Guaiacol ; analogs & derivatives ; chemistry ; Magnetic Resonance Spectroscopy ; Parabens ; chemistry ; Sitosterols ; chemistry ; Stigmasterol ; chemistry
10.Alkaloid and sesquiterpenes from the root tuber of Curcuma longa.
Li-yao WANG ; Mian ZHANG ; Chao-feng ZHANG ; Zheng-tao WANG
Acta Pharmaceutica Sinica 2008;43(7):724-727
One new quinoline alkaloid and seven known bisabolane sesquiterpenes: 2-(2'-methyl-1'-propenyl)-4, 6-dimethyl-7-hydroxyquinoline (1), 2, 5-dihydroxybisabola-3, 10-diene (2), 4, 5-dihydroxybisabola-2,10-diene (3), turmeronol A (4), bisacurone (5), bisacurone A (6), bisacurone B (7) , bisacurone C (8), as well as dehydrozingerone (9) and zingerone (10) were isolated from the root tuber of Curcuma longa. Their structures were identified by spectral evidence. Compound 1 is a new compound, compounds 6 -8 were isolated from this plant for the first time and compounds 9 - 10 from Curcuma for the first time.
Alkaloids
;
chemistry
;
isolation & purification
;
Curcuma
;
chemistry
;
Cyclohexanols
;
chemistry
;
isolation & purification
;
Guaiacol
;
analogs & derivatives
;
chemistry
;
isolation & purification
;
Molecular Structure
;
Plant Tubers
;
chemistry
;
Plants, Medicinal
;
chemistry
;
Sesquiterpenes
;
chemistry
;
isolation & purification
;
Styrenes
;
chemistry
;
isolation & purification

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