Fanali S (1996) Identification of chiral drug isomers by capillary electrophoresis. J Chromatogr A
735(1–2):77–121
Farcas E, Pochet L, Crommen J, Servais AC, Fillet M (2017) Capillary electrophoresis in the
context of drug discovery. J Pharm Biomed Anal 144:195–212
Gaal O, Medgyesi GA, Vereczkey L (1980) Electrophoresis in the separation of biological
macromolecules. Akadémiai Kiadó, Budapest
Garrison AW, Schmitt-Kopplin P, Avants JK (2008) Analysis of the enantiomers of chiral pesticides and other pollutants in environmental samples by capillary electrophoresis. Methods Mol
Biol 384:157–170
Giuffrida A, Maccarrone G, Cucinotta V, Orlandini S, Contino A (2014) Recent advances in chiral
separation of amino acids using capillary electromigration techniques. J Chromatogr A
1363:41–50
Gomase VS, Tagore S (2008) Toxicogenomics. Curr Drug Metab 9(3):250–254
Gomase VS, Tagore S, Kale KV, Bhiwgade DA (2008) Oncogenomics. Curr Drug Metab 9
(3):199–206
Granger RM, Yochum HM, Granger JN, Sienerth KD (2017) Instrumental analysis. Oxford
University Press, Oxford
Greno M, Marina ML, Castro-Puyana M (2018) Enantioseparation by capillary electrophoresis
using ionic liquids as chiral selectors. Crit Rev Anal Chem 48(6):429–446
Gubitz G, Schmid MG (2008) Chiral separation by capillary electromigration techniques. J
Chromatogr A 1204(2):140–156
Hancu G, Simon B, Rusu A, Mirca E, Gyeresi A (2013) Principles of micellar electrokinetic
capillary chromatography applied in pharmaceutical analysis. Adv Pharm Bull 3(1):1–8
Hancu G, Budau M, Muntean DL, Gagyi L, Rusu A (2018) Capillary electrophoresis in the
enantioseparation of modern antidepressants: an overview. Biomed Chromatogr. e4335
Helmholtz Hv, Krigar-Menzel O, Laue Mv (1907) Vorlesungen über elektrodynamik und theorie
des magnetismus. J.A. Barth, Leipzig
Herrero M, Simo C, Garcia-Canas V, Fanali S, Cifuentes A (2010) Chiral capillary electrophoresis
in food analysis. Electrophoresis 31(13):2106–2114
Hinze WL, William RWJ, Fu ZS, Suzuki Y, Quina FH (1990) Novel chiral separation techniques
based on surfactants. Coll Surf 48:79–94
Holland LA, Chetwyn NP, Perkins MD, Lunte SM (1997) Capillary electrophoresis in pharmaceutical analysis. Pharm Res 14(4):372–387
Huang G, Ou J, Zhang X, Ji Y, Peng X, Zou H (2014) Synthesis of novel perphenylcarbamated
beta-cyclodextrin based chiral stationary phases via thiol-ene click chemistry. Electrophoresis
35(19):2752–2758
Iadarola P, Fumagalli M, Bardoni AM, Salvini R, Viglio S (2016) Recent applications of CE- and
HPLC-MS in the analysis of human fluids. Electrophoresis 37(1):212–230
Ikonomou G, Samiotaki M, Panayotou G (2009) Proteomic methodologies and their application in
colorectal cancer research. Crit Rev Clin Lab Sci 46(5–6):319–342
Issaq HJ (2000) A decade of capillary electrophoresis. Electrophoresis 21(10):1921–1939
Jakubetz H, Juza M, Schurig V (1998) Dual chiral recognition system involving cyclodextrin
derivatives in capillary electrophoresis II. Enhancement of enantioselectivity. Electrophoresis
19(5):738–744
Jarman JL, Jones WJ, Howell LA, Garrison AW (2005) Application of capillary electrophoresis to
study the enantioselective transformation of five chiral pesticides in aerobic soil slurries. J Agric
Food Chem 53(16):6175–6182
Johnson AC, Bowser MT (2017) Micro free flow electrophoresis. Lab Chip 18(1):27–40
Jorgenson J (1988) Recent trends in electrophoresis. Science 239(4841 Pt 2):G82
Kapnissi-Christodoulou CP, Stavrou IJ, Mavroudi MC (2014) Chiral ionic liquids in chromatographic and electrophoretic separations. J Chromatogr A 1363:2–10
Kirschner DL, Green TK (2009) Separation and sensitive detection of D-amino acids in biological
matrices. J Sep Sci 32(13):2305–2318
70
4 Enantiomer-Selective Electrophoresis and Electrochromatography
735(1–2):77–121
Farcas E, Pochet L, Crommen J, Servais AC, Fillet M (2017) Capillary electrophoresis in the
context of drug discovery. J Pharm Biomed Anal 144:195–212
Gaal O, Medgyesi GA, Vereczkey L (1980) Electrophoresis in the separation of biological
macromolecules. Akadémiai Kiadó, Budapest
Garrison AW, Schmitt-Kopplin P, Avants JK (2008) Analysis of the enantiomers of chiral pesticides and other pollutants in environmental samples by capillary electrophoresis. Methods Mol
Biol 384:157–170
Giuffrida A, Maccarrone G, Cucinotta V, Orlandini S, Contino A (2014) Recent advances in chiral
separation of amino acids using capillary electromigration techniques. J Chromatogr A
1363:41–50
Gomase VS, Tagore S (2008) Toxicogenomics. Curr Drug Metab 9(3):250–254
Gomase VS, Tagore S, Kale KV, Bhiwgade DA (2008) Oncogenomics. Curr Drug Metab 9
(3):199–206
Granger RM, Yochum HM, Granger JN, Sienerth KD (2017) Instrumental analysis. Oxford
University Press, Oxford
Greno M, Marina ML, Castro-Puyana M (2018) Enantioseparation by capillary electrophoresis
using ionic liquids as chiral selectors. Crit Rev Anal Chem 48(6):429–446
Gubitz G, Schmid MG (2008) Chiral separation by capillary electromigration techniques. J
Chromatogr A 1204(2):140–156
Hancu G, Simon B, Rusu A, Mirca E, Gyeresi A (2013) Principles of micellar electrokinetic
capillary chromatography applied in pharmaceutical analysis. Adv Pharm Bull 3(1):1–8
Hancu G, Budau M, Muntean DL, Gagyi L, Rusu A (2018) Capillary electrophoresis in the
enantioseparation of modern antidepressants: an overview. Biomed Chromatogr. e4335
Helmholtz Hv, Krigar-Menzel O, Laue Mv (1907) Vorlesungen über elektrodynamik und theorie
des magnetismus. J.A. Barth, Leipzig
Herrero M, Simo C, Garcia-Canas V, Fanali S, Cifuentes A (2010) Chiral capillary electrophoresis
in food analysis. Electrophoresis 31(13):2106–2114
Hinze WL, William RWJ, Fu ZS, Suzuki Y, Quina FH (1990) Novel chiral separation techniques
based on surfactants. Coll Surf 48:79–94
Holland LA, Chetwyn NP, Perkins MD, Lunte SM (1997) Capillary electrophoresis in pharmaceutical analysis. Pharm Res 14(4):372–387
Huang G, Ou J, Zhang X, Ji Y, Peng X, Zou H (2014) Synthesis of novel perphenylcarbamated
beta-cyclodextrin based chiral stationary phases via thiol-ene click chemistry. Electrophoresis
35(19):2752–2758
Iadarola P, Fumagalli M, Bardoni AM, Salvini R, Viglio S (2016) Recent applications of CE- and
HPLC-MS in the analysis of human fluids. Electrophoresis 37(1):212–230
Ikonomou G, Samiotaki M, Panayotou G (2009) Proteomic methodologies and their application in
colorectal cancer research. Crit Rev Clin Lab Sci 46(5–6):319–342
Issaq HJ (2000) A decade of capillary electrophoresis. Electrophoresis 21(10):1921–1939
Jakubetz H, Juza M, Schurig V (1998) Dual chiral recognition system involving cyclodextrin
derivatives in capillary electrophoresis II. Enhancement of enantioselectivity. Electrophoresis
19(5):738–744
Jarman JL, Jones WJ, Howell LA, Garrison AW (2005) Application of capillary electrophoresis to
study the enantioselective transformation of five chiral pesticides in aerobic soil slurries. J Agric
Food Chem 53(16):6175–6182
Johnson AC, Bowser MT (2017) Micro free flow electrophoresis. Lab Chip 18(1):27–40
Jorgenson J (1988) Recent trends in electrophoresis. Science 239(4841 Pt 2):G82
Kapnissi-Christodoulou CP, Stavrou IJ, Mavroudi MC (2014) Chiral ionic liquids in chromatographic and electrophoretic separations. J Chromatogr A 1363:2–10
Kirschner DL, Green TK (2009) Separation and sensitive detection of D-amino acids in biological
matrices. J Sep Sci 32(13):2305–2318
70
4 Enantiomer-Selective Electrophoresis and Electrochromatography
