Biomedical Engineering Reference
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18. Lin, CH, Kuo, CM, Liu, YC, Cheng, HT, Lin, WY, Wu, JC, Wang, LF, Lin, CE. 2006.
Enantioselectivity of basic analytes in CZE enantioseparation under reversed-polarity
mode using sulfated beta-cyclodextrins as chiral selectors: An unusual temperature
effect. Electrophoresis 27: 4345-4350.
19. Peng, ZL, Yi, F, Guo, BY, Lin, JM. 2007. Temperature effects on the enantioselec-
tivity of basic analytes in capillary EKC using sulfated beta-CDs as chiral selectors.
Electrophoresis 28: 3753-3758.
20. Hashem, H, Kinzig, M, Jira, T. 2008. The effect of achiral calixarenes on chiral separation
of propranolol-HCl and brompheniramine maleate in capillary electrophoresis using
cyclodextrin as chiral selector. Pharmazie 63: 256-262.
21. Huang, L, Lin, JM, Xu, LJ, Chen, GN. 2007. Nonaqueous and aqueous-organic media
for the enantiomeric separations of neutral organophosphorus pesticides by CE.
Electrophoresis 28: 2758-2764.
22. Chankvetadze, B, Fillet, M, Burjanadze, N, Bergenthal, D, Bergander, C, Luftmann, H,
Crommen, J, Blaschke, G. 2000. Enantioseparation of aminoglutethimide with cyclo-
dextrins in capillary electrophoresis and studies of selector-selectand interactions
using NMR spectroscopy and electrospray ionization mass spectrometry. Enantiomer
5: 313-322.
23. Chankvetadze, B, Lomsadze, K, Bergenthal, D, Breitkreutz, J, Bergander, K, Blaschke, G.
2001. Mechanistic study on the opposite migration order of clenbuterol enantiomers
in capillary electrophoresis with beta-cyclodextrin and single-isomer heptakis(2,3-
diacetyl-6-sulfo)-beta-cyclodextrin. Electrophoresis 22: 3178-3184.
24. Danel, C, Chaminade, P, Odou, P, Bartelemy, C, Azarzar, D, Bonte, JP, Vaccher, C. 2007.
Enantioselective analysis of the antipsychotic 9-hydroxyrisperidone, main metabolite of
risperidone, by chiral capillary EKC using dual CDs. Electrophoresis 28: 2683-2692.
25. Fillet, M, Hubert, P, Crommen, J. 1997. Enantioseparation of nonsteroidal anti-
inl ammatory drugs by capillary electrophoresis using mixtures of anionic and uncharged
beta-cyclodextrins as chiral additives. Electrophoresis 18: 1013-1018.
26. Fillet, M, Hubert, P, Crommen, J. 1998. Method development strategies for the enanti-
oseparation of drugs by capillary electrophoresis using cyclodextrins as chiral additives.
Electrophoresis 19: 2834-2840.
27. Fillet, M, Hubert, P, Crommen, J. 2000. Enantiomeric separations of drugs using
mixtures of charged and neutral cyclodextrins. J Chromatogr A 875: 123-134.
28. Liao, WS, Lin, CH, Chen, CY, Kuo, CM, Liu, YC, Wu, JC, Lin, CE. 2007.
Enantioseparation of phenothiazines in CD-modii ed CZE using single isomer sulfated
CD as a chiral selector. Electrophoresis 28: 3922-3929.
29. Lin, CH, Fang, WR, Kuo, CM, Chang, WY, Liu, YC, Lin, WY, Wu, JC, Lin, CE. 2008.
Chiral separation of hydroxyl avanones in cyclodextrin-modii ed capillary zone electro-
phoresis using sulfated cyclodextrins as chiral selectors. J Chromatogr A 1188: 301-307.
30. Lin, XL, Zhao, MG, Qi, XY, Zhu, CF, Hao, AY. 2006. Capillary zone electrophoretic chiral
discrimination using 6-O-(2-hydroxy-3-trimethylammoniopropyl)-beta-cyclodextrin as
a chiral selector. Electrophoresis 27: 872-879.
31. Lorin, M, Delepee, R, Morin, P, Ribet, JP. 2007. Quantii cation of very low enantiomeric
impurity of efaroxan using a dual cyclodextrin system by capillary electrophoresis. Anal
Chim Acta 592: 139-145.
32. Abushoffa, AM, Fillet, M, Hubert, P, Crommen, J. 2002. Prediction of selectivity for
enantiomeric separations of uncharged compounds by capillary electrophoresis involving
dual cyclodextrin systems. J Chromatogr A 948: 321-329.
33. Abushoffa, AM, Fillet, M, Servais, AC, Hubert, P, Crommen, J. 2003. Enhancement of
selectivity and resolution in the enantioseparation of uncharged compounds using mix-
tures of oppositely charged cyclodextrins in capillary electrophoresis. Electrophoresis 24:
343-350.
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