[期刊论文]


Equilibrium studies of protein aggregates and homogeneous nucleation in protein formulation

作   者:
Sylvia Kiese;Astrid Pappenberger;Wolfgang Friess;Hanns-Christian Mahler;

出版年:2010

页     码:632 - 644
出版社:John Wiley & Sons, Ltd.


摘   要:

Shaking or heat stress may induce protein aggregates. Aggregation behavior of an IgG1 stressed by shaking or heat following static storage at 5 and 25°C was investigated to determine whether protein aggregates exist in equilibrium. Aggregates were detected using different analytical methods including visual inspection, turbidity, light obscuration, size exclusion chromatography, and dynamic light scattering. Significant differences were evident between shaken and heated samples upon storage. Visible and subvisible particles (insoluble aggregates), turbidity and z-average diameter decreased whilst soluble aggregate content increased in shaken samples over time. Insoluble aggregates were considered to be reversible and dissociate into soluble aggregates and both aggregate types existed in equilibrium. Heat-induced aggregates had a denatured protein structure and upon static storage, no significant change in insoluble aggregates content was shown, whilst changes in soluble aggregates content occurred. This suggested that heat-induced insoluble aggregates were irreversible and not in equilibrium with soluble aggregates. Additionally, the aggregation behavior of unstressed IgG1 after spiking with heavily aggregated material (shaken or heat stressed) was studied. The aggregation behavior was not significantly altered, independent of the spiking concentration over time. Thus, neither mechanically stressed native nor temperature-induced denatured aggregates were involved in nucleating or propagating aggregation. © 2009 Wiley-Liss, Inc. and the American Pharmacists Association J Pharm Sci 99:632–644, 2010



关键字:

IgG;protein aggregation;spiking;nucleation;seeding;visible and subvisible particles;soluble aggregates;mechanical stress;heat stress;denaturation;shaking;size exclusion chromatography;light obscuration;turbidity;dynamic light scattering


所属期刊
Journal of Pharmaceutical Sciences
ISSN: 0022-3549
来自:John Wiley & Sons, Ltd.