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Theodore W Randolph

Showing results (21-30 of 179) with videos related to

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Journal of Pharmaceutical Sciences|January 17, 2025
Representative training data sets are critical for accurate machine-learning classification of microscopy images of particles formed by lipase-catalyzed polysorbate hydrolysisDavid N Greenblott, Christopher P Calderon, Theodore W Randolph
Journal of Pharmaceutical Sciences|February 5, 2017
Microflow Imaging Analyses Reflect Mechanisms of Aggregate Formation: Comparing Protein Particle Data Sets Using the Kullback-Leibler DivergenceNathaniel R Maddux, Austin L Daniels, Theodore W Randolph
Langmuir : the ACS Journal of Surfaces and Colloids|August 11, 2004
Nucleation and growth rates of poly(L-lactic acid) microparticles during precipitation with a compressed-fluid antisolventDaniel J Jarmer, Corinne S Lengsfeld, Theodore W Randolph
Current Protocols in Protein Science|April 23, 2008
Long-term storage of proteinsJohn F Carpenter, Mark C Manning, Theodore W Randolph
Journal of Pharmaceutical Sciences|July 2, 2009
Immunogenicity of aggregates of recombinant human growth hormone in mouse modelsAmber Haynes Fradkin, John F Carpenter, Theodore W Randolph
Biotechnology Progress|June 8, 2002
High-pressure refolding of disulfide-cross-linked lysozyme aggregates: thermodynamics and optimizationRichard J St John, John F Carpenter, Theodore W Randolph
Biotechnology and Bioengineering|March 6, 2007
Specific volume and adiabatic compressibility measurements of native and aggregated recombinant human interleukin-1 receptor antagonist: density differences enable pressure-modulated refoldingMatthew B Seefeldt, Chris Crouch, Brent Kendrick, et al.
Journal of Pharmaceutical Sciences|September 24, 2009
Inhibition of agitation-induced aggregation of an IgG-antibody by hydroxypropyl-beta-cyclodextrinTim Serno, John F Carpenter, Theodore W Randolph, et al.
Biotechnology and Bioengineering|September 20, 2022
Machine learning approaches to root cause analysis, characterization, and monitoring of subvisible particles in monoclonal antibody formulationsDavid N Greenblott, Jingtao Zhang, Christopher P Calderon, et al.
Journal of Pharmaceutical Sciences|August 5, 2016
Particle Formation and Aggregation of a Therapeutic Protein in Nanobubble SuspensionsJared R Snell, Chen Zhou, John F Carpenter, et al.
Pageof 18

Showing results (21-30 of 179) with videos related to

Sort By:
Pageof 18
Journal of Pharmaceutical Sciences|January 17, 2025
Representative training data sets are critical for accurate machine-learning classification of microscopy images of particles formed by lipase-catalyzed polysorbate hydrolysisDavid N Greenblott, Christopher P Calderon, Theodore W Randolph
Journal of Pharmaceutical Sciences|February 5, 2017
Microflow Imaging Analyses Reflect Mechanisms of Aggregate Formation: Comparing Protein Particle Data Sets Using the Kullback-Leibler DivergenceNathaniel R Maddux, Austin L Daniels, Theodore W Randolph
Langmuir : the ACS Journal of Surfaces and Colloids|August 11, 2004
Nucleation and growth rates of poly(L-lactic acid) microparticles during precipitation with a compressed-fluid antisolventDaniel J Jarmer, Corinne S Lengsfeld, Theodore W Randolph
Current Protocols in Protein Science|April 23, 2008
Long-term storage of proteinsJohn F Carpenter, Mark C Manning, Theodore W Randolph
Journal of Pharmaceutical Sciences|July 2, 2009
Immunogenicity of aggregates of recombinant human growth hormone in mouse modelsAmber Haynes Fradkin, John F Carpenter, Theodore W Randolph
Biotechnology Progress|June 8, 2002
High-pressure refolding of disulfide-cross-linked lysozyme aggregates: thermodynamics and optimizationRichard J St John, John F Carpenter, Theodore W Randolph
Biotechnology and Bioengineering|March 6, 2007
Specific volume and adiabatic compressibility measurements of native and aggregated recombinant human interleukin-1 receptor antagonist: density differences enable pressure-modulated refoldingMatthew B Seefeldt, Chris Crouch, Brent Kendrick, et al.
Journal of Pharmaceutical Sciences|September 24, 2009
Inhibition of agitation-induced aggregation of an IgG-antibody by hydroxypropyl-beta-cyclodextrinTim Serno, John F Carpenter, Theodore W Randolph, et al.
Biotechnology and Bioengineering|September 20, 2022
Machine learning approaches to root cause analysis, characterization, and monitoring of subvisible particles in monoclonal antibody formulationsDavid N Greenblott, Jingtao Zhang, Christopher P Calderon, et al.
Journal of Pharmaceutical Sciences|August 5, 2016
Particle Formation and Aggregation of a Therapeutic Protein in Nanobubble SuspensionsJared R Snell, Chen Zhou, John F Carpenter, et al.
Pageof 18