1.Chemical constituents of Lobelia chinensis.
Jinglan HAN ; Fengling ZHANG ; Zhihong LI ; Guanhua DU ; Hailin QIN
China Journal of Chinese Materia Medica 2009;34(17):2200-2202
OBJECTIVETo study the chemical constituents from Lobelia chinensis.
METHODThe constituents were extracted with 95% EtOH, partitioned with different solvents, and isolated and purified by silica gel column chromatography and crystallization, their structures were elucidated by physico-chemical properties and spectroscopic data.
RESULTSeven compounds were isolated from the titled plant. They were identified as 5-hydroxy-4'-methoxyflavone-7-O-rutinoside (1), n-butyl-O-beta-D-fructopyranoside (2), 5,7-dimethoxycoumarin (3), cirsiumaldehyde (4), diosmetin (5), 5-hydroxymethyl-2-furancarboxaldehyde (6), and 6-hydroxy-7-methoxycoumarin (7).
CONCLUSIONCompounds 2-4, 6, and 7 were obtained from the titled plant for the first time.
Coumarins ; analysis ; Furans ; analysis ; Lobelia ; chemistry ; Plant Extracts ; chemistry ; isolation & purification
2.Quality standard of Lobeliae Chinensis Herba.
Qian ZHANG ; Hui-Xia HUO ; Hui-Na YAO ; Yun-Fang ZHAO ; Peng-Fei TU ; Jun LI ; Qing-Ying ZHANG
China Journal of Chinese Materia Medica 2022;47(1):127-133
In light of related methods in Chinese Pharmacopoeia(2020 edition), this study established the quality standard for Lobeliae Chinensis Herba. The TLC identification method was established with silica gel GF_(254) thin layer plate, diosmin standard, linarin standard, and the reference material of Lobeliae Chinensis Herba. The loss on drying, total ash, acid-insoluble ash, and ethanol-soluble extracts of 18 batches of Lobeliae Chinensis Herba samples were determined according to the general principles in Chinese Pharmacopoeia. Then, HPLC was adopted in the establishment of characteristic chromatogram and content determination. The results showed that the established method can achieve good separation for diosmin, linarin, and lobetyolin. Based on the results of detection for 18 batches of Lobeliae Chinensis Herba samples, the draft quality standard was established, which was expected to provide reference for the revision of this medicinal herb in Chinese Pharmacopoeia.
Chromatography, High Pressure Liquid
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Drugs, Chinese Herbal/standards*
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Lobelia/chemistry*
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Plants, Medicinal/chemistry*
3.Studies on chemical components of Lobelia chinensis.
Yanyan JIANG ; Renbing SHI ; Bin LIU ; Qiuying WANG ; Ying DAI
China Journal of Chinese Materia Medica 2009;34(3):294-297
OBJECTIVETo study on the chemical constituents of Lobelia chinensis.
METHODThe coloumn chromatographic techniques were applied to isolate constituents, and their structures were elucidated by means of spectral data analysis.
RESULTSixteen compounds were isolated and identified as daucosterol (1), diosmetin (2), apigenin (3), chrysoeriol (4), loteolin (5), hesperidin (6), loteolin-7-O-beta-D-glucoside (7), apigenin-7-O-beta-D-glucoside (8), linarin (9), diosmin(10), 5,7-dimethoxy-8- hydroxycoumarin (11), palmitinic acid (12), lacceroic acid (13), stearic acid (14), beta-sitosterol (15), daucosterol (16).
CONCLUSIONAll of these compouds were obtained from L. chinensis for the first time.
Apigenin ; analysis ; Cholestenones ; analysis ; Flavones ; Flavonoids ; analysis ; Glycosides ; analysis ; Hesperidin ; analysis ; Lobelia ; chemistry ; Plant Extracts ; pharmacology ; Sitosterols ; analysis
4.Determination of two polyacetylenes in Herba Lobeliae Chinensis by HPLC analysis.
Chun-feng QIAO ; Zhen-dan HE ; Quan-bin HAN ; Jing-zheng SONG ; Hong-xi XU
China Journal of Chinese Materia Medica 2006;31(9):744-746
OBJECTIVETo develop an HPLC method for determination of two polyacetylenes, lobetyolin and lobetyolinin, in Herba Lobeliae Chinensis.
METHODC18 column was used with the mobile phase consisted of acetonitrile and water. Linear gradient elution from 10% to 40% acetonitrile in 25 min was applied, at the flow rate of 1.0 mL x min(-1), the detection wavelength was at 267 nm.
RESULTLower contents of lobetyolin and lobtyolinin were found in collected samples of Herba Lobeliae Chinensis. The highest amounts of lobetyolin and lobetyolinin were found to be 0.461 and 0.436 mg x g(-1) in a sample procured from Hong Kong. However, there were no lobetyolin and lobetyolinin in some of the samples.
CONCLUSIONA simple and effective HPLC method to analyze the two polyacetylenes in Herba Lobeliae Chinensis was established. It could be applied for the quality control of this herb.
Chromatography, High Pressure Liquid ; methods ; Lobelia ; chemistry ; Molecular Structure ; Plants, Medicinal ; chemistry ; Polyacetylenes ; analysis ; chemistry ; Quality Control ; Reproducibility of Results
5.Study on alkaloids in Lobelia sessilifolia by ESI-MS(n).
Xiu-Li WANG ; Jia-Ming SUN ; Yang SONG ; Hui ZHANG
China Journal of Chinese Materia Medica 2008;33(13):1572-1574
OBJECTIVETo make qualitative analysis on alkaliod in Lobelia sessilifolia.
METHODThe ESI-MS(n) method was used for qualitative analysis.
RESULTThe structures of two alkaliods in plant extract of L. sessilifolia were successfully analyzed and identified as norlobelanine and 8, 10-diethyllobelidione by electrospray ionization multistage mass spectrometry in positive mode. Then the fragmentation mechanisms were explored.
CONCLUSIONSPE and ESI-MS(n) could simply and rapidly provide qualitative examination of alkaliods in L. sessilifolia.
Alkaloids ; analysis ; isolation & purification ; Drugs, Chinese Herbal ; analysis ; isolation & purification ; Lobelia ; chemistry ; Solid Phase Extraction ; Spectrometry, Mass, Electrospray Ionization
6.Lobelia chinensis: chemical constituents and anticancer activity perspective.
Mei-Wan CHEN ; Wen-Rong CHEN ; Jin-Ming ZHANG ; Xiao-Ying LONG ; Yi-Tao WANG
Chinese Journal of Natural Medicines (English Ed.) 2014;12(2):103-107
Research has demonstrated that many chemical constituents dominated by piperidine alkaloids and flavonoids, such as lobelanidine, lobeline, and lobelanine, have been obtained from Lobelia chinensis Lour. Experimental studies and clinical applications have also indicated that L. chinensis possesses a number of pharmacological activities (e.g., diuretic, choleretic, breathing excitement, anti-venom, anti-bacterial, and anticancer). This paper focuses on the properties, chemical constituents, and anticancer activity of L. chinensis to clarify the connection among them, and identify the active anticancer compounds. This work serves as the foundation for further research and development of L. chinensis.
Alkaloids
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pharmacology
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therapeutic use
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Animals
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Antineoplastic Agents, Phytogenic
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pharmacology
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therapeutic use
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Flavonoids
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pharmacology
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therapeutic use
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Humans
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Lobelia
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chemistry
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Neoplasms
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drug therapy
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Phytotherapy
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Plant Extracts
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pharmacology
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therapeutic use