Lancioni C, Keunchkarian S, Castells CB, Gagliardi LG (2018) Enantiomeric separations by
capillary electrophoresis: Theoretical method to determine optimum chiral selector concentration. J Chromatogr A 1539:71–77
Lian DS, Zhao SJ (2014) Capillary electrophoresis based on the nucleic acid detection in the
application of human disease diagnosis. Clin Lab 60(8):1253–1268
Liu, Y., L. L. Sombra and P. W. Stege (2018) Enantiomeric separation of beta-blockers and
tryptophan using heparin as stationary and pseudostationary phases in capillary electrophoresis.
Chirality. 10.1002/chir.22972
Mangelings D, Discry J, Maftouh M, Massart DL, Vander Heyden Y (2005a) Strategy for the chiral
separation of non-acidic pharmaceuticals using capillary electrochromatography. Electrophoresis 26(20):3930–3941
Mangelings D, Tanret I, Matthijs N, Maftouh M, Massart DL, Vander Heyden Y (2005b) Separation strategy for acidic chiral pharmaceuticals with capillary electrochromatography on polysaccharide stationary phases. Electrophoresis 26(4–5):818–832
Mann K (2008) Proteomic analysis of the chicken egg vitelline membrane. Proteomics 8
(11):2322–2332
Messina A, Sinibaldi M (2007) CEC enantioseparations on chiral monolithic columns: a study of
the stereoselective degradation of (R/S)-dichlorprop [2-(2,4-dichlorophenoxy)propionic acid] in
soil. Electrophoresis 28(15):2613–2618
Michalska K, Gruba E, Bocian W, Cielecka-Piontek J (2017) Enantioselective recognition of
radezolid by cyclodextrin modified capillary electrokinetic chromatography and electronic
circular dichroism. J Pharm Biomed Anal 139:98–108
Mikuma T, Iwata YT, Miyaguchi H, Kuwayama K, Tsujikawa K, Kanamori T, Kanazawa H, Inoue
H (2016) Approaching over 10 000-fold sensitivity increase in chiral capillary electrophoresis:
Cation-selective exhaustive injection and sweeping cyclodextrin-modified micellar electrokinetic chromatography. Electrophoresis 37(22):2970–2976
Mitchell GH (2017) Gel electrophoresis : types, applications and research. Nova, New York
Moldovan RC, Bodoki E, Servais AC, Chankvetadze B, Crommen J, Oprean R, Fillet M (2018)
Capillary electrophoresis-mass spectrometry of derivatized amino acids for targeted
neurometabolomics - pH mediated reversal of diastereomer migration order. J Chromatogr A
1564:199–206
Nishi H, Fukuyama T, Matsuo M, Terabe S (1990a) Effect of surfactant structures on the separation
of cold medicine ingredients by micellar electrokinetic chromatography. J Pharm Sci 79
(6):519–523
Nishi H, Fukuyama T, Matsuo M, Terabe S (1990b) Separation and determination of lipophilic
corticosteroids and benzothiazepin analogues by micellar electrokinetic chromatography using
bile salts. J Chromatogr 513:279–295
Polcaro CM, Marra C, Desiderio C, Fanali S (1999) Stereoselective analysis of acid herbicides in
natural waters by capillary electrophoresis. Electrophoresis 20(12):2420–2424
Porpiglia N, Musile G, Bortolotti F, De Palo EF, Tagliaro F (2016) Chiral separation and determination of ketamine and norketamine in hair by capillary electrophoresis. Forensic Sci Int
266:304–310
Prior A, Coliva G, de Jong GJ, Somsen GW (2018) Chiral capillary electrophoresis with
UV-excited
fluorescence
detection
for
the
enantioselective
analysis
of
9-fluorenylmethoxycarbonyl-derivatized amino acids. Anal Bioanal Chem 410(20):4979–4990
Ramautar R (2016) Capillary Electrophoresis-Mass Spectrometry for Clinical Metabolomics. Adv
Clin Chem 74:1–34
Reed, R. (2003) Practical skills in biomolecular sciences. Harlow, England; Pearson/Prentice Hall,
New York
Righetti PG, Gelfi C (1997) Recent advances in capillary electrophoresis of DNA fragments and
PCR products. Biochem Soc Trans 25(1):267–273
Rizvi SA, Shamsi SA (2006) Synthesis, characterization, and application of chiral ionic liquids and
their polymers in micellar electrokinetic chromatography. Anal Chem 78(19):7061–7069
References
71
capillary electrophoresis: Theoretical method to determine optimum chiral selector concentration. J Chromatogr A 1539:71–77
Lian DS, Zhao SJ (2014) Capillary electrophoresis based on the nucleic acid detection in the
application of human disease diagnosis. Clin Lab 60(8):1253–1268
Liu, Y., L. L. Sombra and P. W. Stege (2018) Enantiomeric separation of beta-blockers and
tryptophan using heparin as stationary and pseudostationary phases in capillary electrophoresis.
Chirality. 10.1002/chir.22972
Mangelings D, Discry J, Maftouh M, Massart DL, Vander Heyden Y (2005a) Strategy for the chiral
separation of non-acidic pharmaceuticals using capillary electrochromatography. Electrophoresis 26(20):3930–3941
Mangelings D, Tanret I, Matthijs N, Maftouh M, Massart DL, Vander Heyden Y (2005b) Separation strategy for acidic chiral pharmaceuticals with capillary electrochromatography on polysaccharide stationary phases. Electrophoresis 26(4–5):818–832
Mann K (2008) Proteomic analysis of the chicken egg vitelline membrane. Proteomics 8
(11):2322–2332
Messina A, Sinibaldi M (2007) CEC enantioseparations on chiral monolithic columns: a study of
the stereoselective degradation of (R/S)-dichlorprop [2-(2,4-dichlorophenoxy)propionic acid] in
soil. Electrophoresis 28(15):2613–2618
Michalska K, Gruba E, Bocian W, Cielecka-Piontek J (2017) Enantioselective recognition of
radezolid by cyclodextrin modified capillary electrokinetic chromatography and electronic
circular dichroism. J Pharm Biomed Anal 139:98–108
Mikuma T, Iwata YT, Miyaguchi H, Kuwayama K, Tsujikawa K, Kanamori T, Kanazawa H, Inoue
H (2016) Approaching over 10 000-fold sensitivity increase in chiral capillary electrophoresis:
Cation-selective exhaustive injection and sweeping cyclodextrin-modified micellar electrokinetic chromatography. Electrophoresis 37(22):2970–2976
Mitchell GH (2017) Gel electrophoresis : types, applications and research. Nova, New York
Moldovan RC, Bodoki E, Servais AC, Chankvetadze B, Crommen J, Oprean R, Fillet M (2018)
Capillary electrophoresis-mass spectrometry of derivatized amino acids for targeted
neurometabolomics - pH mediated reversal of diastereomer migration order. J Chromatogr A
1564:199–206
Nishi H, Fukuyama T, Matsuo M, Terabe S (1990a) Effect of surfactant structures on the separation
of cold medicine ingredients by micellar electrokinetic chromatography. J Pharm Sci 79
(6):519–523
Nishi H, Fukuyama T, Matsuo M, Terabe S (1990b) Separation and determination of lipophilic
corticosteroids and benzothiazepin analogues by micellar electrokinetic chromatography using
bile salts. J Chromatogr 513:279–295
Polcaro CM, Marra C, Desiderio C, Fanali S (1999) Stereoselective analysis of acid herbicides in
natural waters by capillary electrophoresis. Electrophoresis 20(12):2420–2424
Porpiglia N, Musile G, Bortolotti F, De Palo EF, Tagliaro F (2016) Chiral separation and determination of ketamine and norketamine in hair by capillary electrophoresis. Forensic Sci Int
266:304–310
Prior A, Coliva G, de Jong GJ, Somsen GW (2018) Chiral capillary electrophoresis with
UV-excited
fluorescence
detection
for
the
enantioselective
analysis
of
9-fluorenylmethoxycarbonyl-derivatized amino acids. Anal Bioanal Chem 410(20):4979–4990
Ramautar R (2016) Capillary Electrophoresis-Mass Spectrometry for Clinical Metabolomics. Adv
Clin Chem 74:1–34
Reed, R. (2003) Practical skills in biomolecular sciences. Harlow, England; Pearson/Prentice Hall,
New York
Righetti PG, Gelfi C (1997) Recent advances in capillary electrophoresis of DNA fragments and
PCR products. Biochem Soc Trans 25(1):267–273
Rizvi SA, Shamsi SA (2006) Synthesis, characterization, and application of chiral ionic liquids and
their polymers in micellar electrokinetic chromatography. Anal Chem 78(19):7061–7069
References
71
