The Glass Transition Behavior of the Globular Protein Bovine Serum Albumin
The glass-like transition behavior of concentrated aqueous solutions of bovine serum albumin was examined using rheological techniques. At mass fractions >0.4, there was a marked concentration dependence of viscosity with a glass-like kinetic arrest observed at mass fractions in the region of 0.5...
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Veröffentlicht in: | Biophysical journal 2003-12, Vol.85 (6), p.3943-3950 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | The glass-like transition behavior of concentrated aqueous solutions of bovine serum albumin was examined using rheological techniques. At mass fractions >0.4, there was a marked concentration dependence of viscosity with a glass-like kinetic arrest observed at mass fractions in the region of 0.55. At mass fractions >0.6 the material behaved as a solid with a Young's modulus rising from ∼20
MPa at a mass fraction of 0.62–1.1 GPa at 0.86. The solid was viscoelastic and exhibited stress relaxation with relaxation times increasing from 33 to 610
s over the same concentration range. The concentration dependence of the osmotic pressure was measured, at intermediate concentrations, using an osmotic stress technique and could be described using a hard sphere model, indicating that the intermolecular interactions were predominantly repulsive. In summary, a major structural relaxation results from the collective motion of the globules at the supra-globule length scale and, at 20°C, this is arrested at water contents of 40% w/w. This appears to be analogous to the glass transition in colloidal hard spheres. |
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ISSN: | 0006-3495 1542-0086 |
DOI: | 10.1016/S0006-3495(03)74808-5 |