Page 296 - Multidimensional Chromatography
P. 296

Biomedical and Pharmaceutical Applications                      291

                           decrease the importance of multidimensional separation systems. On the other hand,
                           separation techniques, including their combinations, will remain the heart of most
                           analytical methods in the biosciences.




                           REFERENCES

                            1. C. F. Poole, ‘Planar chromatography at the turn of the century’, J. Chromatogr. A 856:
                               399–427 (1999).
                            2. C. F. Poole and S. K. Poole, ‘Multidimensionality in planar chromatography’,
                               J. Chromatogr. A 703:573–612 (1995).
                            3. M.-C. Hennion, ‘Solid-phase extraction: method development, sorbents and coupling
                               with liquid chromatography’, J. Chromatogr. A 856:3–54 (1999).
                            4. F. Regnier and G. Huang, ‘Future potential of targeted component analysis by multidimen-
                               sional liquid chromatography–mass spectrometry’, J. Chromatogr. A 750:3–10 (1996).
                            5. G. J. Opiteck, J. W. Jorgenson, M. A. Moseley III and R. J. Anderegg, ‘Two-dimensional
                               microcolumn HPLC coupled to a single-quadrupole mass spectrometer for the elucida-
                               tion of sequence tags and peptide mapping’, J. Microcolumn Sep. 10:365–375 (1998).
                            6. G. J. Opiteck, S. M. Ramirez, J. W. Jorgenson and M. A. Moseley-III, ‘Comprehensive
                               two-dimensional high-performance liquid chromatography for the isolation of overex-
                               pressed proteins and proteome mapping’, Anal. Biochem. 258:349–361 (1998).
                            7. G. J. Opiteck, J. W. Jorgenson and R. J. Anderegg, ‘Two-dimensional SEC/RPLC coupled
                               to mass spectrometry for the analysis of peptides’, Anal. Chem. 69: 2283–2291 (1997).
                            8. G. J. Opiteck, K. C. Lewis, J. W. Jorgenson and R. J. Anderegg, ‘Comprehensive on-line
                               LC/LC/MS of proteins’, Anal. Chem. 69: 1518–1524 (1997).
                            9. L. A. Holland and J. W. Jorgenson, ‘Separation of nanoliter samples of biological amines
                               by a comprehensive two-dimensional microcolumn liquid chromatography system’,
                               Anal. Chem. 67: 3275–3283 (1995).
                           10. M. M. Bushey and J. W. Jorgenson, ‘Automated instrumentation for comprehensive two-
                               dimensional high-performance liquid chromatography of proteins’, Anal. Chem. 62:
                               161–167 (1990).
                           11. J. B. Wheatley, J. A. Montali and D. E. Schmidt-Jr, ‘Coupled affinity-reversed-phase
                               high-performance liquid chromatography systems for the measurement of glutathione
                               S-transferases in human tissues’, J. Chromatogr. A 676:65–79 (1994).
                           12. K. Matsuoka, M. Taoka, T. Isobe, T. Okuyama and Y. Kato, ‘Automated high-resolution
                               two-dimensional liquid chromatographic system for the rapid and sensitive separation of
                               complex peptide mixtures’, J. Chromatogr. 515:313–320 (1990).
                           13. D. Wu, M. Berna, G. Maier and J. Johnson, ‘An automated multidimensional screening
                               approach for rapid method development in high-performance liquid chromatography’,
                               J. Pharm. Biomed. Anal. 16:57–68 (1997).
                           14. E. A. Hogendoorn and P. van Zoonen, ‘Coupled-column reversed-phase liquid chro-
                               matography in environmental analysis’, J. Chromatogr. A 703:149–166 (1995).
                           15. N. Lundell and K. Markides, ‘Two-dimensional liquid chromatography of peptides: an
                               optimization strategy’, Chromatographia 34:369–375 (1992).
                           16. E. Eklund, C. Norsten-Höög and T. Arvidsson, ‘Determination of free concentration of
                               sameridine in blood plasma by ultrafiltration and coupled-column liquid chromatogra-
                               phy’, J. Chromatogr. B 708:195–200 (1998).
   291   292   293   294   295   296   297   298   299   300   301