By Csaba Horváth and Leslie S. Ettre (Eds.)
content material: Chromatographic separations in biotechnology / John Frenz --
non-stop purification of proteins by means of selective nonadsorptive preparative chromatography / T.K. Nadler and F.E. Regnier --
Ion-exchange displacement chromatography of proteins : theoretical and experimental reports / Steven M. Cramer and Clayton A. Brooks --
method chromatography in construction of recombinant items / Walter F. Prouty --
Preparative reversed-phase pattern displacement chromatography of peptides / R.S. Hodges ... [et al.] --
Displacement : chromatographic focus keep watch over / Jana Jacobson --
Quantitative monosaccharide research of glycoproteins : high-performance liquid chromatography / R. Reid Townsend --
Separation of glucose oxidase isozymes from Penicillium amagasakiense by way of ion-exchange chromatography / Henryk M. Kalisz and Rolf D. Schmid --
research of microsomal cytochrome P-450 styles : quick protein liquid chromatography with ion-exchange and immobilized steel affinity desk bound stages / P.H. Roos --
Monosaccharide compositional research of Haemophilus influenzae sort b conjugate vaccine : procedure for in-process research / Charlotte C. Yu Ip and William J. Miller --
Zirconium oxide dependent helps for biochromatographic purposes / P.W. Carr ... [et al.] --
Preparative reversed-phase chromatography of proteins / Geoffrey B. Cox.
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Extra resources for Chromatography in Biotechnology
This multiplicity o f steps may obviate the need for high resolution techniques or, at least delay their use to the end o f the process when clean process streams would result i n a longer lifetime i n reuse of the column. Properties O f Chromatographic Resins Chromatographic resins used i n large-scale industrial processes should consist of rigid particles and a uniform size distribution. That is, the resin must neither deform at the pressures generated during the run nor contain very tiny particles that could cause excessive back- pressure (18).
Biochem. 1987, 164, 457-465. 36. Snyder, L. ; Stadalius, Μ. ; Quarry, M. A. Anal. Chem. 1983, 55, 1412A-1430A. ; ACS Symposium Series; American Chemical Society: Washington, DC, 1993. ch003 Steven M . Cramer and Clayton A . Brooks Bioseparations Research Center, Howard P. Isermann Department of Chemical Engineering, Rensselaer Polytechnic Institute, Troy, N Y 12180-3590 In this chapter we present a steric mass-action (SMA) ion-exchange equilibrium formalism which explicitly accounts for the steric hindrance of salt counter-ions upon protein binding in multicomponent equilibria.
Chromatogr. 1969, 43, 48-54. 15. Fox, J. , Jr. J. Chromatogr. 1969, 43, 55-60. 16. Canon, R. ; Begovich, J. ; Sisson, W. G. Sep. Sci. Technol. 1980, 15(3), 655-678. 17. ; Taramasso, M. J. Chromatogr. 1962, 7, 477-484. 18. ; Dinelli, D. J. Gas Chromatogr. 1964, 2(5), 150-153. 19. Hughes, J. ; Charm, S. E. Biotechnol. Bioeng. 1979, 21, 1439-1455. 20. Afeyan, Ν. ; Gordon, N. F . ; Cooney, C. L. J. Chromatogr. 1989, 478, 1-19. 21. Gordon, N. F . ; Cooney, C. L. In Protein Purification: from Molecular Mechanisms to Large-Scale Processes; Ladisch, M.