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1.
Chinese Journal of Experimental Traditional Medical Formulae ; (24): 141-147, 2020.
Article in Chinese | WPRIM | ID: wpr-873261

ABSTRACT

Objective::To isolate and identify the chemical constituents from the 95%, 75%ethanol extracts of the stems of Zanthoxylum bungeanum. Method::The 25 kg stems of Z. bungeanum were extracted with 95%, 75%ethanol for three times, and the combined filtrates were concentrated under vacuum to get the extracts. The 95%extracts were then extracted by petroleum ether, dichloromethane, ethyl acetate and n-butanol successively to obtain corresponding fractions. Such fractions and 75%extracts were isolated and purified by silicagel, Sephadex LH-20, ODS, preparation HPLC and recrystallization to obtain compounds. Their structures were identified by mass spectroscopy (MS), and nuclear magnetic resonance (NMR). Result::Sixteen compounds were isolated from the stems of Z. bungeanum and identified as dictamnine(1), decarine(2), zanthobungeanine(3), pseudocolumbamine(4), skimmianine(5), norchelerythrine(6), osthenol(7), dimethylfraxetin(8), 3, 4, 5-trimethoxycinnamylalcohol(9), asarinin(10), yangambin(11), syringaresinol(12), ashantin(13), bis(2-ethylhexyl) benzene-1, 2-dicarboxylate(14), 24-propylcholesterol(15), and sucrose(16). Conclusion::Compounds pseudocolumbamine(4), 3, 4, 5-trimethoxycinnamylalcohol(9), and 24-propylcholesterol(15)were isolated from the genus of Zanthoxylum for the first time and compounds dictamnine(1), osthenol(7), dimethylfraxetin(8), asarinin(10), yangambin(11), syringaresinol(12), ashantin(13), and bis(2-ethylhexyl) benzene-1, 2-dicarboxylate(14)were isolated from this plant for the first time.

2.
Chinese Journal of Experimental Traditional Medical Formulae ; (24): 161-166, 2019.
Article in Chinese | WPRIM | ID: wpr-802215

ABSTRACT

Objective:To isolate and identify the chemical constituents from 95%ethanol extracts from stems of Zanthoxylum bungeanum. Method:The stems (25 kg) were extracted with 95%ethanol under reflux for three times and then filtrated,and the combined filtrates were concentrated under vacuum to get the extracts. After suspension with water,the extracts were extracted with petroleum ether,dichloromethane,ethyl acetate and n-butanol successively,and five corresponding parts were obtained. The parts of petroleum ether,dichloromethane,ethyl acetate were separated in a similar way to get pure compounds. By the method the subjects were first chromatographed on silica gel column respectively,then the selected sub-fractions were further separated by Sephadex LH-20, and finally purified on preparation HPLC to get the monomer compound. The n-butanol part was first treated with macroporous resin D101,and then the sub-fractions were further purified by almost the same method as mentioned above. The structures of these compounds were determined by spectrum technology as IR,MS,1H-NMR,13 C-NMR. Result:Ten compounds were isolated from Z. bungeanum stems and identified as follows:(+)-magnoflorine(1),(-)-marmesin(2),(-)-columbianetin(3),(-)-decursinol(4),lupeol(5),α-amyrin(6),β-amyrin(7),δ-amyrin(8),quercetin(9),rutin(10). Among them, 1 was alkaloid, 2,3,4 were coumarin, 5,6,7,8 were triterpenoid, 9,10 were flavonoids. Conclusion:Compounds 1-8 were isolated from this plant for the first time.

3.
Chinese Traditional and Herbal Drugs ; (24): 5477-5484, 2018.
Article in Chinese | WPRIM | ID: wpr-851570

ABSTRACT

There are more than 50 species of Zanthoxylum (Rutaceae) plants in China, which are very important Chinese meteria medica and natural medicines. It has a variety of pharmacological activities, among which one of the important activities is to inhibit the growth of pathogenic microorganisms and parasites, which can be used as the source of anti-infection drugs. This paper reviews the progress on anti-infective activities of the plants of genus Zanthoxylum in recent years, covering infectious pathogens from bacteria, fungi, viruses to parasites, in order to provide references for the search of novel structural compounds and antiinfective drugs with new mechanisms.

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