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Multidimensional TLC procedure for separation of complex natural mixtures spanning a wide polarity range; Application for fingerprint construction and for investigation of systematic relationships within the Peucedanum genus

Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Identification of closely related plant species is not a trivial task, and is often difficult on the basis of morphological or anatomical features. To differentiate among analyzed species, a chromatographic fingerprint is usually constructed. This is not easy for very complex samples, however, especially those containing substances spanning a wide polarity range. In such circumstances more than one fingerprint is constructed, e.g. one for polar and the other for apolar constituents. In this paper a new method has been used for resolution of a mixture of 17 coumarins and flavonoids and, subsequently, construction of a fingerprint of closely related species belonging to the Peucedanum genus. This is the first time multidimensional planar chromatography has been applied for such purpose. Distinctive fingerprints are produced for every analyzed plant species, without the need to construct two fingerprints and without the application of more sophisticated multidimensional methods (e.g. hyphenation of HPLC and TLC, HPLC-MS, etc).
Rocznik
Strony
641--657
Opis fizyczny
Bibliogr. 17 poz., rys., tab.
Twórcy
autor
  • Medical University of Lublin Department of Inorganic Chemistry 6 Staszica Street 20-081 Lublin Poland
  • Medical University of Lublin Department of Pharmacognosy 1 Chodźki Street 20-093 Lublin Poland
autor
  • Medical University of Lublin Department of Pharmacognosy 1 Chodźki Street 20-093 Lublin Poland
autor
  • Medical University of Lublin Department of Inorganic Chemistry 6 Staszica Street 20-081 Lublin Poland
  • Medical University of Lublin Department of Inorganic Chemistry 6 Staszica Street 20-081 Lublin Poland
Bibliografia
  • [1] X.H. Fan, Z.L. Cheng, Z.L. Ye, R.Ch. Lin, and Z.Z. Qian, Anal. Chim. Acta, 555 , 217–224 (2006)
  • [2] M. Obradovič, S. Strgulc Krajšek, M. Dermastia, and S. Kreft, Phytochem. Anal., 18 , 123–132 (2007)
  • [3] E. Reich and A. Schibli, High-Performance Thin-layer Chromatography for the Analysis of Medicinal Plants, Thieme, New York, 2006
  • [4] Ł. Cieśla, A. Bogucka-Kocka, M. Hajnos, A. Petruczynik, and M. Waksmundzka-Hajnos, J. Chromatogr. A, 1207 , 160–168 (2008)
  • [5] L. Zhang, R.W. Zhang, L. Qing, J.W. Lian, J. Liang, X.H. Chen, and K.S. Bi, Chromatographia 66 , 13–20 (2007)
  • [6] Ł. Cieśla and M. Waksmundzka-Hajnos, J. Chromatogr. A, 1216 , 1035–1052 (2009)
  • [7] A. Petruczynik, M. Waksmundzka-Hajnos, T. Michniowski, T. Plech, T. Tuzimski, M.Ł. Hajnos, M. Gadzikowska, and G. Jóźwiak, J. Chromatogr. Sci., 45 , 447–454 (2007)
  • [8] M. Waksmundzka-Hajnos, A. Petruczynik, M.Ł. Hajnos, T. Tuzimski, A. Hawrył, and A. Bogucka-Kocka, J. Chromatogr. Sci., 44 , 510–517 (2006)
  • [9] M.A. Hawrył, A. Hawrył, and E. Soczewiński, J. Planar Chromatogr., 15 , 4–10 (2002)
  • [10] A. Petruczynik, M. Waksmundzka-Hajnos, T. Plech, T. Tuzimski, M.Ł. Hajnos, G. Jóźwiak, M. Gadzikowska, and A. Rompała, J. Chromatogr. Sci., 46 , 291–297 (2008)
  • [11] M. Łuczkiewicz, P. Migas, A. Kokotkiewicz, M. Walijewska, and W. Cisowski, J. Planar Chromatogr., 17 , 89–94 (2004)
  • [12] M. Glensk, U. Sawicka, I. Mażol, and W. Cisowski, J. Planar Chromatogr., 15 , 463–465 (2002)
  • [13] G. Matysik, A. Skalska-Kamińska, B. Stefańczyk, M. Wójciak-Kosior, and D. Rapa, J. Planar Chromatogr., 21 , 233–236 (2008)
  • [14] M.A. Hawrył, E. Soczewiński, and T.H. Dzido, J. Chromatogr. A, 886 , 75–81 (2000)
  • [15] T. Tuzimski, J. Sep. Sci., 31 , 3537–3542 (2007)
  • [16] V.S. Shneyer, N.G. Kutyavina, and M.G. Pimenov, Plant Syst. Evol., 236 , 175–194 (2003)
  • [17] A. Bogucka-Kocka and T. Krzaczek, Acta Pol. Pharm., 60 , 391–393 (2003)
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-48a3f647-5730-4536-8a2a-6f915cb82e3a
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