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High-performance hquid reversed-phase

Reversed-phase high performance Hquid chromatography has come into use for estimating the purity of proteins and peptides as weU. However, before employed, a high performance Hquid chromatographic (hplc) profile of a given protein must be completely vaHdated (43). [Pg.54]

Chemical stabiUty studies are monitored by siUca gel thin-layer chromatography (dc) or by high performance Hquid chromatography (hplc) using a reverse-phase C g coated column (24). Hplc peaks or dc spots are visualized by thek uv absorption at 245 nm the tic spots can also be detected by ceric sulfate or phosphomolybdic acid staining. [Pg.281]

Toll, H., Oberacher, H., Swart, R., Huber, C.G. (2005). Separation, detection, and identification of peptides by ion-pair reversed-phase high-performance hquid... [Pg.175]

Jinno, K., Effect of the aUcyl chain length of the bonded stationary-phase on solute retention in reversed phase high performance hquid chromatography, Chromato-graphia, 15, 667, 1982. [Pg.295]

Kaliszan, R., Quantitative structure-retention relationships applied to reversed-phase high-performance hquid-chromatography, J. Chmmatogr. A, 656, 417, 1993. [Pg.303]

Colin, H. and Guiochon, G, Comparison of some packings for reversed phase high performance hquid sohd chromatography, ii. Some theoretical considerations, J. Chromatogr., 158, 183, 1978. [Pg.303]

RP-HPLC Reversed-phase high performance Hquid chromatography... [Pg.3]

W. G. Burton, K. D. Nugent, T. K. Slattery, B. R. Summers and L. R. Snyder, Separation of proteins by reversed-phase high-performance hquid chromatography , J. Chromatogr. 443 363-379(1988). [Pg.213]

J. B. Wheatley, J. A. Montali and D. E. Schmidt-Jr, Coupled afhnity-reversed-phase high-performance hquid chromatography systems for the measurement of glutathione S-transferases in human tissues , J. Chromatogr. A 676 65 -79 (1994). [Pg.291]

Hamisch, M., Mbckel, H.J., Schultze, G. (1983) Relationship between LOG Pow shake-flask values and capacity factors derived from reversed-phase high-performance hquid chromatography for ra-alkylbenzenes and some OECD reference substances. J. Chromatogr. 282, 315-332. [Pg.815]

Kuberan, B. et al. Analysis of heparan sulfate oligosaccharides with ion-pair reverse phase capillary high performance hquid chromatography-microelectrospray ionization time-of-flight mass spectrometry. J. Am. Chem. Soc. 2002,124, 8707-8718. [Pg.94]

Wybraniec, S. Effect of tetraalkylammonimn salts on retention of betacyanins and decarboxylated betacyanins in ion-pair reversed-phase high-performance hquid chromatography. /. Chromatogr. A. 2006, 1127, 70-75. [Pg.106]

Wybraniec, S. and Mizrahi, Y. Influence of perfluorinated carboxylic acids on ion-pair reversed-phase high-performance hquid chromatographic separation of betacyanins and 17-decarboxy-betacyanins. y. Chmmatogr. A. 2004, 1029, 97-101. [Pg.114]

Kodamatani, H. et al. Highly sensitive and simple method for measurement of pipe-colic acid using reverse-phase ion-pair high performance hquid chromatography with tris(2,2 -bipyridine) ruthenium(lll) chemiluminescence detection. J. Chromatogr. A. 2007, 1140, 88-94. [Pg.155]

S. Espinosa, E. Bosch, and M. Roses, Retention of ionizable compounds in high-performance hquid chromatography. IX Modeling retention in reversed-phase liquid chromatography as a function of pH and solvent composition with acetonitrile-water mobile phases,/. Chromatogr. A 947 (2002),47-58. [Pg.233]

D. V. McCalley, Effect of temperature and flow-rate on analysis of basic compounds in high-performance hquid chromatography using a reversed-phase column,/. Chromatogr. A. 902 (2000), 311-321. [Pg.235]

M. H. Abraham, M. Roses, C. F. Poole, and S. K. Poole, Hydrogen bonding. 42. Characterization of reversed phase high-performance hquid chromatographic C18 stationary phases,/. Phys. Org. Chem. 10 (1997), 358-368. [Pg.531]

RP-HPLC Reverse-phase high-performance hquid chromatography... [Pg.20]

Zukowski, J. Sybilska, D. Bojarski, J. Szejtli, J. Resolution of chiral barbiturates into enantiomers by reversed-phase high-performance hquid chromatography using methylated P-cyclodextrins. J. Chromatogr. 1988,463 (3), 381-390. [Pg.2163]

H. Testa, B. Structural effects in the lipophilicity of di-and poly-substituted benzenes as measured by reversed 16. phase high-performance hquid chromatography. J. Chro-matogr. 1987, 389, 33-45. [Pg.196]

Jackson, P.T. Schure, M.R. Weber, T.P. Carr, P.W. Intermolecular interactions involved in solute retention on carbon media in reversed-phase high-performance hquid chromatography. Anal. Chem. 1997, 69, 416-425. [Pg.1252]

H. John and W. Schlegel. Reversed-phase high-performance hquid chromatographic method for the determination of the 11-hydroxythromboxane B2 anomers equhibrium,/. Chromatogr. B 698 9-15 (1997). [Pg.1276]

Rustum, A.M. Determination of diltiazem in human whole blood and plasma by high-performance hquid chromatography using a pol5Tneric reversed-phase column and utilizing a salting-out extraction procedure. J.Chromatogr., 1989, 490 , 365-375... [Pg.529]

Inagaki, K. Takagi, J. Lor, E. Okamoto, M.P. Gill, M.A. Determination of fluconazole in human serum by solid-phase extraction and reversed-phase high-performance hquid chromatography. Ther.Drug Monit., 1992, 14, 306-311... [Pg.616]

Gazdag, M. Szepesi, G. Szeleczki, E. Selection of high-performance hquid chromatographic methods in pharmaceutical analysis. I. Optimization for selectivity in reversed-phase chromatography. [Pg.998]


See other pages where High-performance hquid reversed-phase is mentioned: [Pg.54]    [Pg.134]    [Pg.198]    [Pg.72]    [Pg.244]    [Pg.33]    [Pg.91]    [Pg.117]    [Pg.138]    [Pg.68]    [Pg.259]    [Pg.178]    [Pg.797]    [Pg.33]    [Pg.91]    [Pg.111]    [Pg.196]    [Pg.196]    [Pg.9]    [Pg.228]   


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Hquid phase

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Reverse phase high performance, hquid

Reverse phase high performance, hquid chromatography

Reversed-phase high-performance

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