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Simultaneous separation and analysis of two bioactive xanthones in the Tibetan medicinal plant Gentianopsis paludosa (Hook. f.) Ma by micellar electrokinetic capillary chromatography

Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
1,7-Dihydroxy-3,8-dimethoxyxanthone (X1) and 1,8-dihydroxy-3,7-dimethoxyxanthone (X2) are two important xanthones of the Tibetan medicinal plant Gentianopsis paludosa (Hook. f.) Ma. They are very similar in structure, the only difference being exchange of OH and OCH 3 at the 7 and 8 positions. By calculations based on the geometry of the molecules using the MM+ force field, the different distances between the hydroxyl groups of the two xanthones were obtained (4.64774 Å for X2 and 7.19412 Å for X1), therefore, the two hydroxyl groups of X1 should freely interact with more water molecules than those of X2 in aqueous solution. In other words, X2 is more hydrophobic than X1. Micellar electrokinetic capillary chromatography (MEKC) was therefore chosen for separation of the compounds. The optimum separation conditions were: 20 mM borate + 20 mM SDS (pH 9.8) as running buffer, 17.5 kV applied potential, and detection wavelength 260 nm. The two xanthones were well separated in 9.0 min, with Gaussian peak shapes. The repeatability of the MEKC method (expressed as RSD) for X1 and X2 was 0.9 and 1.1%, respectively, for migration time, and 3.1 and 1.4% for peak area. The limits of detection ( S/N = 3) were 0.41 μg mL -1 for X1 and 0.82 μg mL -1 for X2. The recovery of the MEKC method for the two xanthones was also satisfactory.
Rocznik
Strony
637--650
Opis fizyczny
Bibliogr. 17 poz., rys., tab.
Twórcy
autor
  • Lanzhou University Department of Chemistry Lanzhou 730000 China
  • Geological Scientific Research Institute of Shengli Oilfield Sinopec, Dongying 257001 China
autor
  • Lanzhou University Department of Chemistry Lanzhou 730000 China
autor
  • Lanzhou University Department of Chemistry Lanzhou 730000 China
autor
  • Lanzhou University Department of Chemistry Lanzhou 730000 China
autor
  • Lanzhou University Department of Chemistry Lanzhou 730000 China
Bibliografia
  • [1] T.N. He, Flora of China, Science Press, Beijing, 1988, pp. 294–297
  • [2] B.Z. Guo, Medicinal Plants of Qinghai Province, Qinghai People’s Publishing House, Xining, 1987, pp. 458
  • [3] Z.P. Li, C.H. Huo, and X.L. Zheng, Chin. J. Mod. Appl. Pharm. 20 , 24 (2003)
  • [4] H.D. Wang, C.Y. Tan, Y.G. Du, X.F. Bai, and H.F. Lu, Chin. J. Chin. Mater. Med., 29 , 1055 (2004)
  • [5] H.D. Wang, C.Y. Tan, Y.G. Du, X.F. Bai, and B.C. Lin, Chin. Pharm. J., 40 , 1059 (2005)
  • [6] Q. Mi, C.N. Cao, Z.X. Zhao, and L.Y. Tu, J. Qinghai Norm. Univ. (Nat. Sci.), 2 , 64 (2005)
  • [7] H.D. Wang, C.Y. Tan, X.F. Bai, Y.G. Du, and B.C. Lin, J. Ethnopharmacol., 105 , 114 (2006)
  • [8] Jiangsu Institute of Botany, Chinese Academy of Medical Sciences and Kunming Institute of Botany, Xinhua Bencao Gangyao, Shanghai Science and Technology Press, Shanghai, 1988, pp. 292
  • [9] H.D. Wang, C.Y. Tan, X.F. Bai, Y.G. Du, and B.C. Lin, Nat. Prod. Res. Dev., 17 , 598 (2005)
  • [10] Y.Y. Zong, and C.Y. Xu, Yaoxue Tongbao, 17 , 206 (1982)
  • [11] H.D. Wang, C.Y. Tan, J.M. Zhao, X.F. Bai, Y.G. Du, and B.C. Lin, Chin. J. Pharm. Anal., 27 , 421 (2007)
  • [12] M. Jing, J.W. Li, Q. Fan, and X. Shi, Chin. J. Inform. Trad. Chin. Med., 15 , 43 (2008)
  • [13] T. Bo, Y.F. Huang, X.D. Yang, K.A. Li, H.W. Liu, and L.Z. Xu, J. Chromatogr. Sci., 41 , 182 (2003)
  • [14] X.M. Wu, S.X. Gong, T. Bo, Y.P. Liao, and H.W. Liu, J. Chromatogr. A, 1061 , 217 (2004)
  • [15] T. Bo, X.D. Yang, K.A. Li, L.Z. Xu, and H.W. Liu, J. Sep. Sci., 26 , 133–136 (2003)
  • [16] T. Bo, X.D. Yang, F. Liu, K.A. Li, L.Z. Xiu, and H.W. Liu, Anal. Chim. Acta, 474 , 37 (2002)
  • [17] Y.F. Yang, Z.X. Liao, L. Cuo, and Y. Chen, J. Liq. Chromatogr. Relat. Technol., 26 , 1219 (2003)
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-0936293d-3818-44fa-889a-e9deadf0bb8a
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