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Unimolecular Reactions by Kenneth A. Holbrook, Michael J. Pilling, Struan H. Robertson

By Kenneth A. Holbrook, Michael J. Pilling, Struan H. Robertson

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17. F. ; Marcel-Dekker: New York, 1969, p. 213. 18. Creighton, T . E . Biochem. J. 1990, 270, 1. 19. ; Norde, W. Colloids and Surfaces B 1994, 2, 517. 20. L. Adv. Protein Chem. 1979, 33, 167. 21. L. Biochemistry 1988, 27, 1648. 22. ; Norde, W. J. Colloid Interface Sci. 1994, 164, 394. ; ACS Symposium Series; American Chemical Society: Washington, DC, 1995. ch003 Department of Anatomy and Cell Biology, University of Göteborg, Medicinaregatan 5, S-413 90 Göteborg, Sweden The kinetics of protein adsorption and antibody binding to surface­ -immobilised antigen was measured with off-null ellipsometry under non­ -diffusion limited conditions.

2b). In such systems, the form of the ascending branch is usually but not always (see refs. 1,2) independent of the number and size of c steps used in measuring the curve. ; ACS Symposium Series; American Chemical Society: Washington, DC, 1995. 27 28 PROTEINS AT INTERFACES II the isotherm distinguishable. As a rule it is found that, when shear is excluded, dilution does not lead to detectable desorption of proteins from solid sorbents, particularly hydrophobic sorbents, even when the observation time is extended to several days and is therefore much longer than the relaxation time of the protein at the surface [2,3].

This interplay between major adsorption processes points to a synergistic adsorption mechanism; in addition to its inherent contribution, each subprocess amplifies the other contributions to the overall driving force for adsorption. 1. , J. Colloid and Interface Sci. 1982, 90, 148. 2. P. ; Plenum Press: New York, 1985; p. 295. 3. ; Magnani, A. Clinical Materials1992,11,37. 4. L. Chem. Pharm. Bull. 1988, 36, 2711. 5. ; Kresak, M . I. Biofouling 1991, 4, 3. 6. Biofouling 1991, 4, 25. 7. J. Org. Coat.

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