Cirilli R, Alcaro S, Fioravanti R, Secci D, Fiore S, La Torre F, Ortuso F (2009) Unusually high
enantioselectivity in high-performance liquid chromatography using cellulose tris
(4-methylbenzoate) as a chiral stationary phase. J Chromatogr A 1216(22):4673–4678
Clonis YD (2006) Affinity chromatography matures as bioinformatic and combinatorial tools
develop. J Chromatogr A 1101(1–2):1–24
Cordero C, Kiefl J, Schieberle P, Reichenbach SE, Bicchi C (2015) Comprehensive
two-dimensional gas chromatography and food sensory properties: potential and challenges.
Anal Bioanal Chem 407(1):169–191
Cram DJ (1988) The design of molecular hosts, guests, and their complexes. Science 240
(4853):760–767
Cram DJ, de Graaff RA, Knobler CB, Lingenfelter DS, Maverick EF, Trueblood KN (1999) Chiral
recognition between host and guest: a binaphthyl-18-crown-6 host with D-phenylglycinium
methyl ester perchlorate guest. A difficult structure solved with CRUNCH. Acta Crystallogr B
55(Pt 3):432–440
Cutillas PR, Timms JF (2010) LC-MS/MS in proteomics : methods and applications. Humana,
New York
Dalgliesh C (1952) Optical resolution of aromatic amino acids on paper chromatograms. J Chem
Soc 47:3
Dasgupta A (2010) Advances in chromatographic techniques for therapeutic drug monitoring.
CRC/Taylor & Francis, Boca Raton, FL
David V, Cheregi M, Medvedovici A (2013) Alternative sample diluents in bioanalytical LC-MS.
Bioanalysis 5(24):3051–3061
de Albuquerque NCP, Carrao DB, Habenschus MD, de Oliveira ARM (2018) Metabolism studies
of chiral pesticides: A critical review. J Pharm Biomed Anal 147:89–109
Del Rio A, Hayes JM, Stein M, Piras P, Roussel C (2004) Theoretical reassessment of Whelk-O1 as
an enantioselective receptor for 1-(4-halogeno-phenyl)-1-ethylamine derivatives. Chirality 16
(Suppl):S1–S11
Denoroy L, Zimmer L, Renaud B, Parrot S (2013) Ultra high performance liquid chromatography as
a tool for the discovery and the analysis of biomarkers of diseases: a review. J Chromatogr B
Analyt Technol Biomed Life Sci 927:37–53
de Villiers A, Venter P, Pasch H (2016) Recent advances and trends in the liquid-chromatographymass spectrometry analysis of flavonoids. J Chromatogr A 1430:16–78
Ding GS, Huang XJ, Liu XL, Wang JD (2002) [New species of selectors of chiral stationary phase
in high performance liquid chromatography—macrocyclic antibiotics]. Se Pu 20(6):519–525
Domenici E, Bertucci C, Salvadori P, Motellier S, Wainer IW (1990) Immobilized serum albumin:
rapid HPLC probe of stereoselective protein-binding interactions. Chirality 2(4):263–268
Dungelova J, Lehotay J, Rojkovicova T, Cizmarik J (2003) [Chiral separation of drugs based on
macrocyclic antibiotics using HPLC, supercritical fluid chromatography (SFC) and capillary
electrochromatography (CEC)]. Ceska Slov Farm 52(3):119–125
Ekborg-Ott KH, Liu Y, Armstrong DW (1998) Highly enantioselective HPLC separations using the
covalently bonded macrocyclic antibiotic, ristocetin A, chiral stationary phase. Chirality 10
(5):434–483
Elbashir AA, Aboul-Enein HY (2018) Multidimensional gas chromatography for chiral analysis.
Crit Rev Anal Chem 48(5):416–427
el-Hady DA, el-Maali NA, Gotti R, Bertucci C, Mancini F, Andrisano V (2005) Methotrexate
determination in pharmaceuticals by enantioselective HPLC. J Pharm Biomed Anal 37
(5):919–925
Ermer J, Vogel M (2000) Applications of hyphenated LC-MS techniques in pharmaceutical
analysis. Biomed Chromatogr 14(6):373–383
Euerby MR, Partridge LZ, Nunn PB (1989) Resolution of neuroactive non-protein amino acid
enantiomers by high-performance liquid chromatography utilising pre-column derivatisation
with o-phthaldialdehyde-chiral thiols. Application to 2-amino-omega-phosphonoalkanoic acid
References
51
enantioselectivity in high-performance liquid chromatography using cellulose tris
(4-methylbenzoate) as a chiral stationary phase. J Chromatogr A 1216(22):4673–4678
Clonis YD (2006) Affinity chromatography matures as bioinformatic and combinatorial tools
develop. J Chromatogr A 1101(1–2):1–24
Cordero C, Kiefl J, Schieberle P, Reichenbach SE, Bicchi C (2015) Comprehensive
two-dimensional gas chromatography and food sensory properties: potential and challenges.
Anal Bioanal Chem 407(1):169–191
Cram DJ (1988) The design of molecular hosts, guests, and their complexes. Science 240
(4853):760–767
Cram DJ, de Graaff RA, Knobler CB, Lingenfelter DS, Maverick EF, Trueblood KN (1999) Chiral
recognition between host and guest: a binaphthyl-18-crown-6 host with D-phenylglycinium
methyl ester perchlorate guest. A difficult structure solved with CRUNCH. Acta Crystallogr B
55(Pt 3):432–440
Cutillas PR, Timms JF (2010) LC-MS/MS in proteomics : methods and applications. Humana,
New York
Dalgliesh C (1952) Optical resolution of aromatic amino acids on paper chromatograms. J Chem
Soc 47:3
Dasgupta A (2010) Advances in chromatographic techniques for therapeutic drug monitoring.
CRC/Taylor & Francis, Boca Raton, FL
David V, Cheregi M, Medvedovici A (2013) Alternative sample diluents in bioanalytical LC-MS.
Bioanalysis 5(24):3051–3061
de Albuquerque NCP, Carrao DB, Habenschus MD, de Oliveira ARM (2018) Metabolism studies
of chiral pesticides: A critical review. J Pharm Biomed Anal 147:89–109
Del Rio A, Hayes JM, Stein M, Piras P, Roussel C (2004) Theoretical reassessment of Whelk-O1 as
an enantioselective receptor for 1-(4-halogeno-phenyl)-1-ethylamine derivatives. Chirality 16
(Suppl):S1–S11
Denoroy L, Zimmer L, Renaud B, Parrot S (2013) Ultra high performance liquid chromatography as
a tool for the discovery and the analysis of biomarkers of diseases: a review. J Chromatogr B
Analyt Technol Biomed Life Sci 927:37–53
de Villiers A, Venter P, Pasch H (2016) Recent advances and trends in the liquid-chromatographymass spectrometry analysis of flavonoids. J Chromatogr A 1430:16–78
Ding GS, Huang XJ, Liu XL, Wang JD (2002) [New species of selectors of chiral stationary phase
in high performance liquid chromatography—macrocyclic antibiotics]. Se Pu 20(6):519–525
Domenici E, Bertucci C, Salvadori P, Motellier S, Wainer IW (1990) Immobilized serum albumin:
rapid HPLC probe of stereoselective protein-binding interactions. Chirality 2(4):263–268
Dungelova J, Lehotay J, Rojkovicova T, Cizmarik J (2003) [Chiral separation of drugs based on
macrocyclic antibiotics using HPLC, supercritical fluid chromatography (SFC) and capillary
electrochromatography (CEC)]. Ceska Slov Farm 52(3):119–125
Ekborg-Ott KH, Liu Y, Armstrong DW (1998) Highly enantioselective HPLC separations using the
covalently bonded macrocyclic antibiotic, ristocetin A, chiral stationary phase. Chirality 10
(5):434–483
Elbashir AA, Aboul-Enein HY (2018) Multidimensional gas chromatography for chiral analysis.
Crit Rev Anal Chem 48(5):416–427
el-Hady DA, el-Maali NA, Gotti R, Bertucci C, Mancini F, Andrisano V (2005) Methotrexate
determination in pharmaceuticals by enantioselective HPLC. J Pharm Biomed Anal 37
(5):919–925
Ermer J, Vogel M (2000) Applications of hyphenated LC-MS techniques in pharmaceutical
analysis. Biomed Chromatogr 14(6):373–383
Euerby MR, Partridge LZ, Nunn PB (1989) Resolution of neuroactive non-protein amino acid
enantiomers by high-performance liquid chromatography utilising pre-column derivatisation
with o-phthaldialdehyde-chiral thiols. Application to 2-amino-omega-phosphonoalkanoic acid
References
51
