Eigenmobilities in background electrolytes for capillary zone electrophoresis:: IV.: Computer program PeakMaster

被引:130
作者
Jaros, M [1 ]
Hruska, V [1 ]
Stedry, M [1 ]
Zusková, I [1 ]
Gas, B [1 ]
机构
[1] Charles Univ, Fac Sci, CZ-12840 Prague 2, Czech Republic
关键词
background electrolyte; capillary zone electrophoresis; computer simulation; eigenmobilities;
D O I
10.1002/elps.200405982
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
We are introducing a computer implementation of the mathematical model of zone electrophoresis (CZE) described in Stedry, M., Jaros, M., Hruska, V., Gas, B., Electro-phoresis 2004, 25, 3071-3079 program PeakMaster. The computer model calculates eigenmobilities, which are the eigenvalues of the matrix tied to the linearized continuity equations, and which are responsible for the presence of system eigenzones (system zones, system peaks). The model also calculates other parameters of the background electrolyte (BGE) - pH, conductivity, buffer capacity, ionic strength, etc., and parameters of the separated analytes - effective mobility, transfer ratio, molar conductivity detection response, and relative velocity slope. This allows the assessment of the indirect detection, conductivity detection and peak broadening (peak distortion) due to electromigration dispersion. The computer model requires the input of the BGE composition, the list of analytes to be separated, and the system instrumental configuration. The output parameters of the model are directly comparable with experiments; the model also simulates electropherograms in a user-friendly way. We demonstrate a successful application of PeakMaster for inspection of BGEs having no stationary injection zone.
引用
收藏
页码:3080 / 3085
页数:6
相关论文
共 50 条
[41]   Position and intensity of system (eigen) peaks in capillary zone electrophoresis [J].
Sellmeyer, H ;
Poppe, H .
JOURNAL OF CHROMATOGRAPHY A, 2002, 960 (1-2) :175-185
[42]   Eigenmobilities in background electrolytes for capillary zone electrophoresis: III Linear theory of electromigration [J].
Stedry, M ;
Jaros, M ;
Hruska, V ;
Gas, B .
ELECTROPHORESIS, 2004, 25 (18-19) :3071-3079
[43]   Eigenmobilities in background electrolytes for capillary zone electrophoresis:: II.: Eigenpeaks in univalent weak electrolytes [J].
Stedry, M ;
Jaros, M ;
Vceláková, K ;
Gas, B .
ELECTROPHORESIS, 2003, 24 (03) :536-547
[44]  
Stedry M, 2002, J CHROMATOGR A, V960, P187
[45]   Analysis of drying oils used as binding media for objects of art by capillary electrophoresis with indirect UV and conductivity detection [J].
Surowiec, I ;
Kaml, I ;
Kenndler, E .
JOURNAL OF CHROMATOGRAPHY A, 2004, 1024 (1-2) :245-254
[46]  
Teukolsky SA, 1992, NUMERICAL RECIPES C, VSecond
[47]   ELECTROPHORETIC TRANSPORT-EQUATIONS - ELECTROPHORETIC MODELS BASED ON MIGRATION ONLY AND THEIR INTERRELATIONSHIPS [J].
THORMANN, W ;
MOSHER, RA .
ELECTROPHORESIS, 1985, 6 (09) :413-418
[48]   Determination of cationic mobilities and pKa values of 22 amino acids by capillary zone electrophoresis [J].
Vceláková, K ;
Zusková, I ;
Kenndler, E ;
Gas, B .
ELECTROPHORESIS, 2004, 25 (02) :309-317
[49]   Design of background electrolytes for indirect photometric detections based on a model of sample zone absorption in capillary electrophoresis [J].
Xiong, X ;
Li, SFY .
JOURNAL OF CHROMATOGRAPHY A, 1999, 835 (1-2) :169-185
[50]   Change of pH in electrophoretic zones as a cause of peak deformation [J].
Xu, X ;
Kok, WT ;
Poppe, H .
JOURNAL OF CHROMATOGRAPHY A, 1996, 742 (1-2) :211-227