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Comparison of column-coupled electrophoresis with liquid chromatography methods in food analysis of quinine Cover

Comparison of column-coupled electrophoresis with liquid chromatography methods in food analysis of quinine

Open Access
|Aug 2012

References

  1. Altria KD, Simpson CF. Analysis of some pharmaceuticals by high voltage capillary zone electrophoresis. J Pharm Biomed Anal. 1988;6:801-807.10.1016/0731-7085(88)80094-3
  2. Buchberger W, Gstottenmayr D, Himmelsbach M. Determination of cinchona alkaloids by non-aqueous CE with MS detection. Electrophoresis. 2010;31:1208-1213.10.1002/elps.200900744
  3. Feas X, Fente CA, Cepeda A. Fast and sensitive new high performance liquid chromatography laser induced fluorescence (HPLC-LIF) method for quinine. Comparative study in soft drinks. J Liq Chrom Relat Tech. 2009;32:2600-2614.
  4. Havránek E. Laboratory Practices of Analytical Chemistry, Instrumental Methods, Bratislava, BA: Comenius University Press; 1998.
  5. Hodel EM, Zanolari B, Mercier T et al. A single LC-tandem mass spectrometry method for the simultaneous determination of 14 antimalarial drugs and their metabolites in human plasma. J Chromatogr B. 2009;877:867-886.10.1016/j.jchromb.2009.02.006
  6. Horie M. et al. Liquid chromatographic analysis of Cinchona alkaloids in beverages. J AOAC Int. 2006;89:1042-1047.10.1093/jaoac/89.4.1042
  7. Huang X, Coleman WF, Zare, RN. Analysis of factors causing peak broadening in capillary zone electrophoresis J Chromatogr A. 1989;480:95-110.10.1016/S0021-9673(01)84281-3
  8. Ibrahim H, Bouajila B, Siri N, Rozing G, Nepveu F, Couderc F. Very small injected samples to study chloroquine and quinine in human serum using capillary-LC and native fluorescence. J Chromatogr B. 2007;850:481-487.10.1016/j.jchromb.2006.12.028
  9. ICH Harmonised Tripartite Guideline: Validation of Analytical Procedures: Text and Methodology. Step 4 Version. ( http://www.ich.org/cache/compo/276-254-1.html
  10. Junior LB, De Toni Uchoa F, Guterres SS., Costa TD. Development and validation of LC-MS/MS method for simultaneous determination of quinine and doxycykline in pharmaceutical formulations. J Liq Chrom Relat Tech. 2009;32:2699-2711.10.1080/10826070903245805
  11. Lester IH. Australia's Food & Nutrition. Canberra: Australian Government Publishing Service; 1994.
  12. Marini RD, Rozet E, Montes MLA et al. Reliable low-cost capillary electrophoresis device for drug quality control and counterfeit medicines. J Pharm Biomed Anal. 2010;53:1278-1287.10.1016/j.jpba.2010.07.026
  13. McCalley DV. Analysis of the Cinchona alkaloids by high-performance liquid chromatography and other separation techniques. J Chromatogr A 2002;967:1 - 19.10.1016/S0021-9673(01)01557-6
  14. Mikuš P, Maráková K, Veizerová L, Piešťanský J. Determination of quinine in beverages by on-line coupling capillary isotachophoresis to capillary zone electrophoresis with UV spectrophotometric detection. J Sep Sci. 2011;34:3392-3398.10.1002/jssc.20110063322083623
  15. Miller J. Statistics for Analytical Chemistry. Chichester, UK: Ellis Horwood; 1993.
  16. Quing CH, Jing W. Determination of quinine in drinks by reversed-phase ion-pair chromatography. J Liq Chrom Relat Tech. 2001;24:1341-1352.10.1081/JLC-100103451
  17. Reijenga JC, Abena GVA, Lemmens AAG, Verheggen TPEM, De Bruijn CHMM, Everaerts FM. Fluorescence emission and fluorescence quenching as detection methods in isotachophoresis. J Chromatogr A. 1985;320:245-252.10.1016/S0021-9673(01)90502-3
  18. Samanidou VF, Evaggelopoulou EN, Papadoyannis IN. Simple and rapid HPLC method for the determination of quinine in soft drinks using fluorescence detection. J Liq Chrom Relat Tech. 2004;27: 2397-2406.10.1081/JLC-200028156
  19. Steiner F, Hassel M. Influence of solvent properties on separation and detection performance in non-aqueous capillary electrophoresis-mass spectrometry of basic analytes. J Chromatogr A. 2005;1068:131-142.10.1016/j.chroma.2004.11.043
  20. Strašík S, Danková M, Molnárová M, Ölvecká E, Kaniansky D. Capillary zone electrophoresis in wide bore capillary tubes with fiber-coupled diode array detection. J Chromatogr A. 2003;990:23-33.10.1016/S0021-9673(02)01813-7
  21. Tsimachidis D, Česla P, Hájek T, Theodoridis G, Jandera P. Capillary electrophoretic chiral separation of Cinchona alkaloids using a cyclodextrin selector. J Sep Sci. 2008;31:1130-1136.10.1002/jssc.200700494
  22. U. S. Department of Health and Human services. Food and Drug Administration. 21 CFR Part 172.575. ( http://www.gpo.gov/fdsys/pkg/CFR-2010-title21-vol8/xml/CFR-2010-title21-vol8.xml
  23. Zaugg S, Thormann W. Capillary electrophoretic separation, immunochemical recognition and analysis of the diastereomers quinine and quinidine and two quinidine metabolites in body fluids. J Pharm Biomed Anal. 2001;24:785-799.10.1016/S0731-7085(00)00546-X
  24. Zhang L, Wang R, Zhang Y, Yu Y. Application of high performance capillary electrophoresis on toxic alkaloids analysis. J Sep Sci. 2007;30:1357-1363.10.1002/jssc.20060036317623479
Language: English
Page range: 67 - 80
Published on: Aug 13, 2012
Published by: Comenius University in Bratislava, Faculty of Pharmacy
In partnership with: Paradigm Publishing Services
Publication frequency: 2 issues per year
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© 2012 L. Veizerová, J. Piešťanský, K. Maráková, J. Galba, D. Rauová, S. Dokupilová, E. Havránek, P. Mikuš, published by Comenius University in Bratislava, Faculty of Pharmacy
This work is licensed under the Creative Commons License.

Volume 59 (2012): Issue 1 (June 2012)