From osmotic second virial coefficient (B22) to phase behavior of a monoclonal antibody
Published 2015 View Full Article
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Title
From osmotic second virial coefficient (B22) to phase behavior of a monoclonal antibody
Authors
Keywords
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Journal
BIOTECHNOLOGY PROGRESS
Volume 31, Issue 2, Pages 438-451
Publisher
Wiley
Online
2015-02-16
DOI
10.1002/btpr.2065
References
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Related references
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- Chemistry of Hofmeister Anions and Osmolytes
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- Interactions and phase behavior of a monoclonal antibody
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- A critical evaluation of self-interaction chromatography as a predictive tool for the assessment of protein–protein interactions in protein formulation development: A case study of a therapeutic monoclonal antibody
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- Comparative Effects of pH and Ionic Strength on Protein–Protein Interactions, Unfolding, and Aggregation for IgG1 Antibodies
- (2010) Erinc Sahin et al. JOURNAL OF PHARMACEUTICAL SCIENCES
- Intermolecular Interactions of IgG1 Monoclonal Antibodies at High Concentrations Characterized by Light Scattering
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- Self-interaction chromatography as a tool for optimizing conditions for membrane protein crystallization
- (2009) Mads Gabrielsen et al. ACTA CRYSTALLOGRAPHICA SECTION D-BIOLOGICAL CRYSTALLOGRAPHY
- Understanding and Modulating Opalescence and Viscosity in a Monoclonal Antibody Formulation
- (2009) Branden A. Salinas et al. JOURNAL OF PHARMACEUTICAL SCIENCES
- Protein crystallization: from purified protein to diffraction-quality crystal
- (2008) Naomi E Chayen et al. NATURE METHODS
- High-Throughput Self-Interaction Chromatography: Applications in Protein Formulation Prediction
- (2008) David H. Johnson et al. PHARMACEUTICAL RESEARCH
- Protein Phase Behavior in Aqueous Solutions: Crystallization, Liquid-Liquid Phase Separation, Gels, and Aggregates
- (2007) André C. Dumetz et al. BIOPHYSICAL JOURNAL
- Average protein density is a molecular-weight-dependent function
- (2004) Hannes Fischer et al. PROTEIN SCIENCE
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