Computerized optimization of the high-performance liquid chromatographic enantioseparation of a mixture of 4-dinitrophenyl amino acids on a quinine carbamate-type chiral stationary phase using DRYLAB

被引:43
作者
Lammerhofer, M
DiEugenio, P
Molnar, I
Lindner, W
机构
[1] KARL FRANZENS UNIV GRAZ,INST PHARMACEUT CHEM,A-8010 GRAZ,AUSTRIA
[2] INST APPL CHROMATOG,D-10407 BERLIN,GERMANY
来源
JOURNAL OF CHROMATOGRAPHY B | 1997年 / 689卷 / 01期
关键词
enantiomer separation; amino acids; 4-dinitrophenylamino acids;
D O I
10.1016/S0378-4347(96)00366-0
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
A method is proposed for the sensitive chiral analysis of amino acid enantiomers by high-performance liquid chromatography (HPLC). Thus the enantiomers of a mixture of seven racemic amino acids were resolved as their DNP derivatives from each other and from the peak of the hydrolyzed reagent, employing a quinine carbamate-based chiral anion exchange-type chiral stationary phase (CSP) and aqueous buffered mobile phases. However, the initial isocratic chromatogram yielded many peak overlaps although the corresponding enantiomers were well resolved. Therefore, the separation of the complex mixture had to be optimized; we utilized the commercial computer method development software DRYLAB. First, the influence of the manifold mobile phase parameters and chromatographic conditions (pH, type and content of organic modifier, buffer concentration, temperature, type of co-ion, etc.) on retention and resolution was studied by isocratic elution. Furthermore, with such optimized conditions linear and multi-segmented organic modifier and buffer salt gradients, respectively, were simulated with the computer program and experimentally verified. Average errors of prediction of retention times lay between 2 and 8%. Finally, a highly improved HPLC gradient method resulted in almost all components being baseline separated and equally spaced and accelerated by a factor of more than 3 compared to the initial run.
引用
收藏
页码:123 / 135
页数:13
相关论文
共 28 条
[21]  
REICHARDT C, 1979, SOLVENT EFFECTS ORGA
[22]  
Snyder L., 2012, Practical Hplc method development, V2nd, DOI [10.1002/9781118592014.app2, DOI 10.1002/9781118592014.APP2]
[23]   DRYLAB COMPUTER-SIMULATION FOR HIGH-PERFORMANCE LIQUID-CHROMATOGRAPHIC METHOD DEVELOPMENT .1. ISOCRATIC ELUTION [J].
SNYDER, LR ;
DOLAN, JW ;
LOMMEN, DC .
JOURNAL OF CHROMATOGRAPHY, 1989, 485 :65-89
[24]   Initial experiments in high-performance liquid chromatographic method development .1. Use of a starting gradient run [J].
Snyder, LR ;
Dolan, JW .
JOURNAL OF CHROMATOGRAPHY A, 1996, 721 (01) :3-14
[25]  
Subramanian G., 1994, PRACTICAL APPROACH C
[26]  
SZEPESI G, 1990, HPLC PHARM ANAL, V1, P101
[27]   COMPUTER-AIDED MODELS FOR OPTIMIZATION OF ELUENT PARAMETERS IN CHIRAL LIQUID-CHROMATOGRAPHY [J].
TUCKER, RP ;
FELL, AF ;
BERRIDGE, JC ;
COLEMAN, MW .
CHIRALITY, 1992, 4 (05) :316-322
[28]   USE OF COMPUTER-SIMULATIONS IN THE DEVELOPMENT OF GRADIENT AND ISOCRATIC HIGH-PERFORMANCE LIQUID-CHROMATOGRAPHY METHODS FOR ANALYSIS OF DRUG COMPOUNDS AND SYNTHETIC INTERMEDIATES [J].
WRISLEY, L .
JOURNAL OF CHROMATOGRAPHY, 1993, 628 (02) :191-198