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Modern instrumentation for the studies of isoflavones


Authors: J. Vacek 1,2;  B. Klejdus 2;  L. Lojková 2;  V. Kubáň 2
Authors‘ workplace: Akademie věd České republiky, Biofyzikální ústav, Brno 1;  Mendelova zemědělská a lesnická univerzita Brno, Ústav chemie a biochemie 2
Published in: Čes. slov. Farm., 2008; 57, 85-94
Category: Review Articles

Overview

Isoflavones belong to the natural substances exhibiting a number of physiological effects in living organisms. The substances are synthesized in plant tissues as protective agents against biotic stress (i.e. bacterial infection). Isoflavones are also an important dietary constituent in human nutrition. The review discusses modern trends in the studies of isoflavones in plant materials and foodstuffs and procedures for chemical analyses of isoflavones in human body fluids and plant tissues. Highly effective extraction and purification techniques, i.e. solid–phase extraction (SFE), accelerated–solvent extraction (ASE), and Soxhlet extraction, are presented. Latest procedures in chromatographic separation of isoflavones that apply different types of stationary phases are described. Immunochemical analysis, electrochemical sensing of isoflavones, spectrometric and other analytical techniques and their applications are also mentioned. Special attention is focused on a highly selective and sensitive technique of mass spectrometry and its application for identification of isoflavones and their glucosides in plants. Studies of interactions of isoflavones with cell receptors and a number of biologically active substances such as DNA and proteins are described. The reason for the presentation of the review was not to give a full overview of the presented topics but mainly to show modern and the most recent methods in the studies of isoflavones.

Key words:
chromatography – isolation – mass spectrometry – phytoestrogens – human health


Sources

1. Setchell, K. D. R.: Am. J. Clin. Nutr., 1998; 68, 1333S-1346S.

2. Ososki, A. L., Kennelly, E. J.: Phytother. Res., 2003; 17, 845–869.

3. Wanibuchi, H., Kang, J. S., Salim, E. I. et al.: Pure Appl. Chem., 2003; 75, 2047–2053.

4. Fritsche, S., Steinhart, H.: Eur. Food Res. Technol., 1999; 209, 153–179.

5. de Rijke, E., Out, P., Niessen, W. M. A. et al.: J. Chromatogr. A, 2006; 1112, 31–63.

6. Wu, Q. L., Wang, M. F., Simon, J. E.: J. Chromatogr. B, 2004; 812, 325–355.

7. Akhtar, M. H., Abdel-Aal, E. S. M.: Curr. Pharm. Anal., 2006; 2, 183–193.

8. Delmonte, P., Rader, J. I.: J. AOAC Int., 2006; 89, 1138–1146.

9. D’Alessandro, T. L., Boersma-Maland, B. J., Peterson, T. G. et al.: Methods Enzymol., 2005; 400, 316–342.

10. Macková, Z., Koblovská, R., Lapčík, O.: Phytochem., 2006; 67, 849–855.

11. Yokosuka, A., Haraguchi, M., Usui, T. et al.: Bioorg. Med. Chem. Lett., 2007; 17, 3091–3094.

12. Moriyasu, M., Igi, Y., Ichimaru, M. et al.: J. Nat. Med., 2007; 61, 329–333.

13. Chen, S. G., Chen, J. J., Gao, K.: Chem. Pharm. Bull., 2007; 55, 1181-1184.

14. Hegnauer, R., Grayerbarkmeijer, R. J.: Phytochem., 1993; 34, 3–16.

15. Dunford, C. L., Smith, G. J., Swinny, E. E., Markham, K. R.: Photochem. Photobiol. Sci., 2003; 2, 611–615.

16. Mathias, K., Ismail, B., Corvalan, C. M., Hayes, K. D.: J. Agric. Food Chem., 2006; 54, 7495–7502.

17. de Rijke, E., Zafra-Gomez, A., Ariese, F. et al.: J. Chromatogr. A, 2001; 932, 55–64.

18. Shimoni, E.: J. Food Sci., 2004; 69, R160–R166.

19. Delmonte, P., Perry, J., Rader, J. I.: J. Chromatogr. A, 2006; 1107, 59–69.

20. Xu, H. N., He, C. H.: Sep. Purif. Technol., 2007; 56, 85–89.

21. Wu, C. Y., Lai, S. M.: J. Liq. Chromatogr. Relat. Technol., 2007; 30, 1617–1640.

22. Yu, Z. G., Gao, X. X., Zhao, Y. L., Bi, K. S.: Biomed. Chromatogr., 2007; 21, 577–584.

23. Velickovic, D. T., Nikolova, M. T., Ivancheva, S. V. et al.: J. Serb. Chem. Soc., 2007; 72, 73–80.

24. Apers, S., Naessens, T., Van Den Steen, K. et al.: J. Chromatogr. A, 2004; 1038, 107–112.

25. Rostagno, M. A., Palma, M., Barroso, C. G.: J. Chromatogr. A, 2003; 1012, 119–128.

26. Rostagno, M. A., Palma, M., Barroso, C. G.: Anal. Chim. Acta, 2007; 582, 243–249.

27. Klejdus, B., Vitamvásová, D., Kubáň, V.: J. Chromatogr. A, 1999; 839, 261–263.

28. Klejdus, B., Vitamvásová-Štěrbová, D., Kubáň, V.: Anal. Chim. Acta, 2001; 450, 81–97.

29. Klejdus, B., Štěrbová, D., Stratil, P., Kubáň, V.: Chem. Listy, 2003; 97, 530–539.

30. Klejdus, B., Mikelová, R., Adam, V. et al.: Anal. Chim. Acta, 2004; 517, 1–11.

31. Klejdus, B., Mikelová, R., Petrlová, J. et al.: J. Agric. Food Chem., 2005; 53, 5848–5852.

32. Rostagno, M. A., Palma, M., Barroso, C. G.: Anal. Chim. Acta, 2007; 588, 274–282.

33. Chukwumah, Y. C., Walker, L. T., Verghese, M. et al.: J. Agric. Food Chem., 2007; 55, 285–290.

34. Yu, J., Liu, Y. F., Qiu, A. Y., Wang, X. G.: LWT-Food Sci. Technol., 2007; 40, 800–806.

35. Klejdus, B., Lojková, L., Lapčík, O. et al.: J. Sep. Sci., 2005; 28, 1334–1346.

36. Grynkiewicz, G., Ksycinska, H., Ramza, J., Zagrodzka, J.: Acta Chromatogr., 2005; 15, 31–65.

37. Lee, S. K., Row, K. H.: Bull. Korean Chem. Soc., 2003; 24, 1265–1268.

38. Zheng, J. Z., Row, K.: Chin. J. Chem. Eng., 2007; 15, 291–295.

39. Merken, H. M., Beecher, G. R.: J. Agric. Food Chem., 2000; 48, 577–599.

40. Klejdus, B., Mikelová, R., Petrlová, J. et al.: J. Chromatogr. A, 2005; 1084, 71–79.

41. Klejdus, B., Vacek, J., Benešová, L. et al.: Anal. Bioanal. Chem., 2007; 389, 2277–2285.

42. Farre, M., Kuster, M., Brix, R. et al.: J. Chromatogr. A, 2007; 1160, 166–175.

43. Churchwell, M. I., Twaddle, N. C., Meeker, L. R., Doerge, D. R.: J. Chromatogr. B, 2005; 825, 134-143.

44. Sýkora, D., Tesařová, E., Vosmanská, M., Zvolánková, M.: Chem. Listy, 2007; 101, 190–199.

45. Švec, F.: Chem. Listy, 2004; 98, 232–238.

46. Repolles, C., Herrero-Martinez, J. M., Rafols, C.: J. Chromatogr. A, 2006; 1131, 51–57.

47. Cacciola, F., Jandera, P., Bláhová, E., Mondello, L.: J. Sep. Sci., 2006; 29, 2500–2513.

48. Pemp, E., Reznicek, G., Krenn, L.: J. Anal. Chem., 2007; 62, 669–673.

49. Ma, X. F., Tu, P. F., Chen, Y. J. et al.: J. Chromatogr. A, 2003; 992, 193–197.

50. Shihabi, Z. K., Kute, T., Garcia, L. L., Hinsdale, M.: J. Chromatogr. A, 1994; 680, 181–185.

51. Mellenthin, O., Galensa, R.: J. Agric. Food Chem., 1999; 47, 594–602.

52. Chen, G., Zhang, J. X., Ye, J. N.: J. Chromatogr. A, 2001; 923, 255–262.

53. Cao, Y. H., Lou, C. G., Zhang, X. et al.: Anal. Chim. Acta, 2002; 452, 123–128.

54. Zhang, Y., Chen, J., Zhao, L., Shi, Y-P.: Biomed. Chromatogr., 2007; 21, 987–992.

55. Starkey, J. A., Mechref, Y., Byun, C. K. et al.: Anal. Chem., 2002; 74, 5998–6005.

56. Aramendia, M. A., Garcia, I., Lafont, F., Marinas, J. M.: J. Chromatogr. A, 1995; 707, 327–333.

57. McLeod, G. S., Shepherd, M. J.: Phytochem. Anal., 2000; 11, 322–326.

58. Dinelli, G., Aloisio, I., Bonetti, A. et al.: J. Sep. Sci., 2007; 30, 604–611.

59. Herrero, M., Ibanez, E., Cifuentes, A.: J. Sep. Sci., 2005; 28, 883–897.

60. Li, P., Li, S. P., Wang, Y. T.: Electrophoresis, 2006; 27, 4808–4819.

61. Cuyckens, F., Claeys, M.: J. Mass. Spectrom., 2004; 39, 1–15.

62. Elipe, M. V. S.: Anal. Chim. Acta, 2003; 497, 1–25.

63. Cuyckens, F., Ma, Y. L., Pocsfalvi, G., Claeys, M.: Analusis, 2000; 28, 888–895.

64. Dewald, H. D., Worst, S. A., Butcher, J. A., Saulinskas, E. F.: Electroanal., 1991; 3, 777–782.

65. Prasain, J. K., Wang, C. C., Barnes, S.: Free Rad. Biol. Med., 2004; 37, 1324–1350.

66. Kang, J. G., Hick, L. A., Price, W. E.: Rapid Commun. Mass Spectrom., 2007; 21, 857–868.

67. Chen, L. J., Zhao, X., Fang, L. Y., Games, D. E.: J. Chromatogr. A, 2007; 1154, 103-110.

68. Cavaliere, C., Cucci, F., Foglia, P. et al.: Rapid Commun. Mass Spectrom., 2007; 21, 2177–2187.

69. Muller, A., Steinhart, H.: Food Chem., 2007; 102, 436–444.

70. Zhai, X-J., Qu, H-B., Shao, Q., Cheng, Y-Y.: Chromatographia, 2007; 66, 43–47.

71. Wang, C., Song, Z.: Bioorg. Med. Chem. Lett., 2004; 14, 4127–4130.

72. Lapčík, O., Hampl, R., Hill, M. et al.: J. Steroid Biochem. Mol. Biol., 1998; 64, 261–268.

73. Vítková, M., Macková, Z., Fukal, L., Lapčík, O.: Chem. Listy, 2004; 98, 1135-1139.

74. He, J. T., Shi, Z. H., Yan, J. et al.: Talanta, 2005; 65, 621–626.

75. Bennetau-Pelissero, C., Arnal-Schnebelen, B., Lamothe, V. et al.: Food Chem., 2003; 82, 645–658.

76. Bennetau-Pelissero, C., Le Houerou, C., Lamothe, V. et al.: J. Agric. Food Chem., 2000; 48, 305–311.

77. Talbot, D. C. S., Ogborne, R. M., Dadd, T. et al.: Clin. Chem., 2007; 53, 748–756.

78. Blasco, A. J., González, M. C., Escarpa, A.: Anal. Chim. Acta, 2004; 511, 71–81.

79. Escarpa, A., González, M. C., Blasco, A. J. et al.: Electroanal., 2007; 19, 952–957.

80. Klejdus, B., Vacek, J., Adam, V. et al.: J. Chromatogr. B, 2004; 806, 101–111.

81. Volikakis, G. J., Efstathiou, C. E.: Talanta, 2000; 51, 775–785.

82. Volikakis, G. J., Efstathiou, C. E.: Anal. Chim. Acta, 2005; 551, 124–131.

83. Hodek, P., Hanuštiak, P., Křížková, J. et al.: Neuroendocrinol. Lett., 2006; 27, 14–17.

84. Li, W., Zhang, M., Zhang, J. L. et al.: Febs Lett., 2006; 580, 4905–4910.

85. Maliar, T., Jedinak, A., Kadrabová, J., Šturdik, E.: Eur. J. Med. Chem., 2004; 39, 241–248.

86. Mahesha, H. G., Singh, S. A., Srinivasan, N., Rao, A. G. A.: FEBS J., 2006; 273, 451–467.

87. Morito, K., Aomori, T., Hirose, T. et al.: Biol. Pharm. Bull., 2002; 25, 48–52.

88. Erlejman, A. G., Verstraeten, S. V., Fraga, C. G., Oteiza, P. I.: Free Rad. Res., 2004; 38, 1311–1320.

89. Dvořák, R., Pechová, A., Pavlata, L. et al.: Czech J. Anim. Sci., 2005; 50, 519–527.

90. Yu, O., Shi, J., Hession, A. O. et al.: Phytochem., 2003; 63, 753–763.

91. Rader, J. I., Delmonte, P., Trucksess, M. W.: Anal. Bioanal. Chem., 2007; 389, 27–35.

92. Lord, H. L.: J. Chromatogr. A, 2007; 1152, 2–13.

93. Wickremsinhe, E. R., Singh, G., Ackermann, B. L. et al.: Curr. Drug Metab., 2006; 7, 913–928.

94. Takats, Z., Wiseman, J. M., Gologan, B., Cooks, R. G.: Science, 2004; 306, 471–473.

95. Zhao, M. P., Zhou, S., Yan, J., Li, L.: Curr. Pharm. Anal., 2007; 3, 25–38.

96. Escarpa, A., Gonzalez, M. C., Crevillen, A. G., Blasco, A. J.: Electrophoresis, 2007; 28, 1002-1011.

97. Bachmann, S., Huck, C. W., Bakry, R., Bonn, G. K.: Electrophoresis, 2007; 28, 799–805.

98. Pumera, M., Sanchez, S., Ichinose, I., Tang, J.: Sens. Actuator B Chem., 2007; 123, 1195–1205.

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