期刊文献+

Determination of Magnolol and Honokiol by Non-aqueous Capillary Electrophoresis 被引量:3

Determination of Magnolol and Honokiol by Non-aqueous Capillary Electrophoresis
下载PDF
导出
摘要 Two active principles in traditional Chinese medicine Magnolia officinalis, magnolol and honokiol, were successfully separated by means of nonaqueous capillary electrophoresis. The effect of the composition of a nonaqueous buffer on column efficiency and resolution, and the effect of acid additives on peak shapes were researched. The separation was conducted with a running buffer in a mixture of methanol/aeetonitrile/formamide ( volume ratio : 1 : 2 : 2 ), in which the concentrations of Tris, acetic acid, and water were 60 retool/L, 0. 04 mmol/L and 5% ( volume fration), respectively, and the pH^* (apperent pH) of the running buffer was 8.96. Magnolol and honokiol were separated on baseline within 20 min. The relative standard deviation of the analytes' concentrations in the sample is 1.32% for magnolol and 1.60% for honokiol, and the recoveries of the spiked sample are 98.4% for magnolol and 98. 0% for honokiol, respectively. Two active principles in traditional Chinese medicine Magnolia officinalis, magnolol and honokiol, were successfully separated by means of nonaqueous capillary electrophoresis. The effect of the composition of a nonaqueous buffer on column efficiency and resolution, and the effect of acid additives on peak shapes were researched. The separation was conducted with a running buffer in a mixture of methanol/aeetonitrile/formamide ( volume ratio : 1 : 2 : 2 ), in which the concentrations of Tris, acetic acid, and water were 60 retool/L, 0. 04 mmol/L and 5% ( volume fration), respectively, and the pH^* (apperent pH) of the running buffer was 8.96. Magnolol and honokiol were separated on baseline within 20 min. The relative standard deviation of the analytes' concentrations in the sample is 1.32% for magnolol and 1.60% for honokiol, and the recoveries of the spiked sample are 98.4% for magnolol and 98. 0% for honokiol, respectively.
出处 《Chemical Research in Chinese Universities》 SCIE CAS CSCD 2006年第3期335-338,共4页 高等学校化学研究(英文版)
基金 SupportedbytheNationalScienceFoundationofHebeiProvince,P.R.China(No.202281).
关键词 Nonaqueous capillary electrophoresis MAGNOLOL HONOKIOL Nonaqueous capillary electrophoresis Magnolol Honokiol
  • 相关文献

参考文献18

  • 1Jorgenson J. W. , Lukase K. D. , Anal. Chem. , 1981, 53,1298
  • 2Terabe S. , Otsuka K. , Ichikawa K. , et al. , Anal. Chem. ,1984, 56, 111
  • 3Cohen A. S., Karger B. L., J. Chromatogr. A, 1987, 397,409
  • 4Walbrohel Y. , Jorgenson J. W. , J. Chromatogr. A, 1984,115, 135
  • 5Flores J. B., Nevado J. J. B., Salcedo A. M. C., et al. ,Anal, Chim. Acta, 2004, 512,287
  • 6Backofen U., Matysik F. M. , Lunte C. E.,J. Chromatogr.A, 2002, 942,259
  • 7Wang T. L., Wei H. P., Li S. F. Y. , Electrophoresis, 1998,19, 2187
  • 8Valko I. E., Siren H. Riekkola M. L., J. Chromatogr. A,1996, 737, 263
  • 9Descroix S., Varenne A., Goasdoue N., et al. , J. Chromatogr, A, 2003, 987,467
  • 10Yan Liu-shui, Zhao Ji-yuan, Luo Guo-an, et al. , Chem. J.Chinese Universities, 2004, 25 (2), 256

同被引文献22

  • 1赵纯森,黄俊斌,周茂繁.厚朴叶中抑菌活性成分鉴别及其防病效果[J].华中农业大学学报,1994,13(4):373-377. 被引量:77
  • 2黄晓燕,卫莹芳,张盈娇,李隆云,汪晓辉,王梦月.高效液相色谱法测定厚朴叶不同采收期中厚朴酚、和厚朴酚的含量[J].中国中药杂志,2005,30(9):717-718. 被引量:25
  • 3郭宝林,肖培根,杨世林.中国珍珠菜属植物药用种类和研究概况[J].国外医药(植物药分册),1995,10(4):159-162. 被引量:16
  • 4刘晓鹏,姜宁,向东山,周大寨,吴永尧,武芸.厚朴叶中厚朴酚及和厚朴酚的提取与测定[J].中国医院药学杂志,2007,27(5):694-696. 被引量:19
  • 5Laurence Voutquenne, Catherine Lavaud, Georges Massiot, et al. Hadi, Cytotoxic polyisoprenes and glycosides of long chain fatty alcohols from Dimocarpus fumatus[J]. Phyto chemistry, 1999, 50(1):63-89.
  • 6Snook Maurice E, Chortyk Orestes T, Arrendale Richard F. Isolation and identification of the phenolic acids of tobacco smoke[J]. Tob Int, 1985, 187(5):49-55.
  • 7Kodaira Haruyoshi, Ishikawa Masayuki, Komoda Yasuo. Isolation and identification of anti platelet aggregation princi pie from the bark of Fraxinus japonica Blume[J].Chem Pharm Bull, 1983, 31(7): 2262-2268.
  • 8Chernyaeva G, Dolgodvorova S Ya, Bondarenko S M. Poly phenols from Betula pendula bark[J]. Khi Prir Soedin, 1983 (4) : 531- 532.
  • 9Nishikawa K, Furukawa H, Fujioka T, et al. Flavone production in transformed root cultures of Scutellaria baicalensis Georgi[J]. Phytochemistry, 1998, 52: 885-890.
  • 10Tori K, Seo S, Shimaoka A, et al. Carbon -13 NMR spectra of olean-12-enes. Full signal assignments including quater nary carbon signals assigned by use of indirect ^13C, ^1H spin couplings[J].Tetrahedron Letters, 1974, 15 (48): 4227 -4230.

引证文献3

二级引证文献7

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部