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Biological Chemistry|June 3, 2006
Protein aggregation in crowded environmentsR John Ellis, Allen P MintonBiochimica Et Biophysica Acta. General Subjects|August 31, 2020
Implications of excluded volume for chemical inhibition of protein fibrillationAllen P MintonThe Journal of Physical Chemistry. B|October 23, 2023
Simplified Equilibrium Model for Exploring the Combined Influences of Concentration, Aggregate Shape, Excluded Volume, and Surface Adsorption upon Aggregation Propensity and Distribution of Globular MacromoleculesAllen P MintonJournal of Cell Science|July 11, 2006
How can biochemical reactions within cells differ from those in test tubes?Allen P MintonBiophysical Journal|October 17, 2020
Water Loss in Aging Erythrocytes Provides a Clue to a General Mechanism of Cellular SenescenceAllen P MintonThe Journal of Physical Chemistry. B|May 16, 2017
Explicit Incorporation of Hard and Soft Protein-Protein Interactions into Models for Crowding Effects in Protein Mixtures. 2. Effects of Varying Hard and Soft Interactions upon Prototypical Chemical EquilibriaAllen P MintonJournal of Pharmaceutical Sciences|June 26, 2007
The effective hard particle model provides a simple, robust, and broadly applicable description of nonideal behavior in concentrated solutions of bovine serum albumin and other nonassociating proteinsAllen P MintonBiophysical Journal|January 24, 2008
Effective hard particle model for the osmotic pressure of highly concentrated binary protein solutionsAllen P MintonBiophysical Journal|December 15, 2004
Models for excluded volume interaction between an unfolded protein and rigid macromolecular cosolutes: macromolecular crowding and protein stability revisitedAllen P MintonBiophysical Journal|May 29, 2007
Static light scattering from concentrated protein solutions, I: General theory for protein mixtures and application to self-associating proteinsAllen P MintonPageof 9