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Chromatography capillary electrophoresis

J. P. Larmann-Jr, A. V. Lemmo, A. W. Moore and J. W. Jorgenson, Two-dimensional sep-ar ations of peptides and proteins by comprehensive liquid chromatography-capillary electrophoresis . Electrophoresis 14 439-447 (1993). [Pg.214]

Schure (1999) has studied the effect of multidimensional dilution for column-based separations that incorporate chromatography, capillary electrophoresis (CE), and FFF. In all of these cases, the dilution factors are multiplicative this gives the direct result that the limit of detection for MDC is... [Pg.27]

Schure, M.R. (1999). Limit of detection, dilution factors, and technique compatibility in multidimensional chromatography, capillary electrophoresis, and field-flow fractionation. Anal. Chem. 71, 1645-1657. [Pg.33]

Rowe, K., Bowlin, D., Zou, M., Davis, J.M. (1995). Application of 2-D statistical theory of overlap to three separation types 2-D thin-layer chromatography, 2-D gas chromatography, and liquid chromatography/capillary electrophoresis. Anal. Chem. 67, 2994. [Pg.58]

Bergstrom, S.K., Samskog, J., Markides, K.E. (2003). Development of a poly(dimethylsilox-ane) interface for on-line capillary column liquid chromatography-capillary electrophoresis coupled to sheathless electrospray ionization time-of-flight mass spectrometry. Anal. Chem. 75, 5461-5467. [Pg.381]

Ehala, S., Kaljurand, M., Kudrjashova, M., Vaher, M. (2004). Stroboscopic sampling in comprehensive high-performance liquid chromatography-capillary electrophoresis via a pneumatic sampler. Electrophoresis 25, 980-989. [Pg.381]

He, Y., Yeung, E.S., Chan, K.C., Issaq, HJ. (2002). Two-dimensional mapping of cancer cell extracts by liquid chromatography-capillary electrophoresis with ultraviolet absorbance detection. J. Chromatogr. A 979, 81-89. [Pg.381]

Issaq, H.J., Chan, K.C., Cheng, S.L., Qingho, L. (2001). Multidimensional high performance liquid chromatography-capillary electrophoresis separation of a protein digest an update. Electrophoresis 22, 1133-1135. [Pg.382]

Larmann, J.P., Lemmo, A.V., Moore, A.W., Jorgenson, J.W. (1993). Two-dimensional separations of peptides and proteins hy comprehensive liquid chromatography-capillary electrophoresis. Electrophoresis 14, 439 147. [Pg.382]

CL reactions can be coupled as a detection technique in chromatography, capillary electrophoresis, or immunoassay, providing qualitative and/or quantitative information of a large variety of species in the gas and liquid phases. [Pg.48]

Cao P. and Stults J.T. (1999), Phosphopeptide analysis by on-line immobilized metal-ion affinity chromatography-capillary electrophoresis-electrospray ionization mass spectrometry, J. Chromatogr. 853(1-2), 225-235. [Pg.275]

Saevels, J. (1998). Separation of tetracycline and its related substances comparison of liquid chromatography, capillary electrophoresis and capillary electrochromatography Biomed. Chromatogr. 12, 149 — 150. [Pg.314]

Hamdan, M. (1997). Pharmaceutical applications of liquid chromatography, capillary electrophoresis coupled to mass spectrometry. Process Control Qual. 10, 113 — 127. [Pg.509]

Chemical purity. The purity of the protein product is analysed in comparison with a reference preparation by a suitable method, such as liquid chromatography, capillary electrophoresis or sodium dodecyl sulphate polyacrylamide gel electrophoresis (SDS-PAGE). [Pg.518]

Apryll M. Stalcup received her PhD in chemistry (1988) from Georgetown University in Washington, DC. After postdoctoral training at the University of Missouri-Rolla, she joined the Department of Chemistry at the University of Hawaii-Manoa in 1990 as an assistant professor. She moved to the Chemistry Department at the University of Cincinnati as an associate professor in 1996 and was promoted as a professor in 2002. Her research interests include liquid chromatography, capillary electrophoresis, chiral separations, and investigations of separation mechanisms. [Pg.406]

F. Huber, Good Laboratory Practice A Primer for High Performance Liquid Chromatography, Capillary Electrophoresis, and UV-Visible Spectroscopy, Hewlett-Packard Publ. 12-5091-6259E, 1993. [Pg.137]

Some residues require derivatization to enhance the extractability, clean-up, or subsequent chromatographic resolution and determination steps. Instead of chromatography, capillary electrophoresis with a high resolving power may be considered as well. [Pg.471]

Aptamer-ligand interactions can be detected by conventional assay based on, e.g., radioactive labeling, chromatography, capillary electrophoresis and mass spectrometry. These methods have been reviewed recently by Tombelli et al. [5]. Novel approach in detection of aptamer-ligand interaction is connected with aptasensors. In aptasensors,... [Pg.808]

I. Ah, H.Y. Aboul-Enein, Instrumental methods in metal ions speciation Chromatography, capillary electrophoresis and electrochemistry, New York Taylor Francis (2006). [Pg.13]


See other pages where Chromatography capillary electrophoresis is mentioned: [Pg.369]    [Pg.533]    [Pg.542]    [Pg.78]    [Pg.488]    [Pg.421]    [Pg.368]    [Pg.579]    [Pg.121]    [Pg.228]    [Pg.228]    [Pg.369]    [Pg.421]    [Pg.153]    [Pg.370]    [Pg.216]    [Pg.7]   
See also in sourсe #XX -- [ Pg.37 , Pg.237 ]




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