Kinetics of Adsorption of Globular Proteins at an Air‐Water Interface
- 1 May 1992
- journal article
- review article
- Published by Wiley in Biotechnology Progress
- Vol. 8 (3) , 187-196
- https://doi.org/10.1021/bp00015a003
Abstract
Adsorption of globular proteins at an air-water interface from an infinite stagnant medium was modeled as one-dimensional diffusion in a potential field. The interaction potential experienced by an adsorbing molecule consisted of contributions from electrostatic interactions, work done against the surface pressure to clear area at the interface in order to anchor the adsorbed segments, and the change in the free energy due to exposure of penetrated surface hydrophobic functional groups to air. The assumption of irreversible adsorption is employed in the present analysis. The energy barrier to adsorption, present at sufficiently large surface pressures, was found to be higher for smaller surface hydrophobicities, larger surface pressures, larger size molecules, and oblate orientation of an ellipsoidal molecule. Consequently, more adsorption occurred at larger surface hydrophobicities, smaller size molecules, and for prolate orientation of ellipsoidal molecules. The subphase concentration has been shown to be zero at short times, increasing with time at larger times, and eventually becoming close to the bulk concentration as a result of increasing energy barrier to adsorption. The predicted evolution of surface concentration with time for adsorption of lysozyme at an air-water interface agreed well with the experimental data of Graham and Phillips (1979a).Keywords
This publication has 30 references indexed in Scilit:
- Kinetics of adsorption of proteins at interfaces: role of protein conformation in diffusional adsorptionBiochimica et Biophysica Acta (BBA) - Protein Structure and Molecular Enzymology, 1988
- The kinetics of adsorption of surface active agents at gas-liquid surfacesChemical Engineering Science, 1983
- Diffusion-controlled adsorption. Concentration kinetics, ideal isotherms, and some applicationsThe Journal of Physical Chemistry, 1983
- Diffusion-controlled adsorption kinetics. General solution and some applicationsThe Journal of Physical Chemistry, 1982
- On reversible adsorption of hydrosols and repeptizationAIChE Journal, 1976
- Adsorption and desorption of particles and their chromatographic separationAIChE Journal, 1976
- Dynamic and static properties of proteins adsorbed at the air/water interfaceFaraday Discussions of the Chemical Society, 1975
- On the average hydrophobicity of proteins and the relation between it and protein structureJournal of Theoretical Biology, 1967
- Structure of Hen Egg-White Lysozyme: A Three-dimensional Fourier Synthesis at 2 Å ResolutionNature, 1965
- Kinetics of adsorption of proteins at interfaces. Part I. The role of bulk diffusion in adsorptionJournal of Colloid Science, 1963