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Research ArticleConference Proceeding - Article

Viral Clearance by Traditional Operations with Significant Knowledge Gaps (Session II): Protein A Chromatography

Brian Hubbard
PDA Journal of Pharmaceutical Science and Technology January 2014, 68 (1) 13-16; DOI: https://doi.org/10.5731/pdajpst.2014.00961
Brian Hubbard
Amgen, Thousand Oaks, CA
Ph.D.
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  • For correspondence: hubbardb@amgen.com
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Article Information

vol. 68 no. 1 13-16
DOI 
https://doi.org/10.5731/pdajpst.2014.00961
PubMed 
24504231

Published By 
Parenteral Drug Association (PDA)
Print ISSN 
1079-7440
Online ISSN 
1948-2124
History 
  • Published online February 6, 2014.

Copyright & Usage 
© PDA, Inc. 2014

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PDA Journal of Pharmaceutical Science and Technology: 68 (1)
PDA Journal of Pharmaceutical Science and Technology
Vol. 68, Issue 1
January/February 2014
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Viral Clearance by Traditional Operations with Significant Knowledge Gaps (Session II): Protein A Chromatography
Brian Hubbard
PDA Journal of Pharmaceutical Science and Technology Jan 2014, 68 (1) 13-16; DOI: 10.5731/pdajpst.2014.00961

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Viral Clearance by Traditional Operations with Significant Knowledge Gaps (Session II): Protein A Chromatography
Brian Hubbard
PDA Journal of Pharmaceutical Science and Technology Jan 2014, 68 (1) 13-16; DOI: 10.5731/pdajpst.2014.00961
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  • Article
    • Background
    • Impact of Process Parameters on Viral Clearance Results Achieved on Protein A–Based Affinity Step (Olga Galperina, David Kahn; Human Genome Sciences)
    • Key Process Parameters for Removal of Model Retrovirus and Parvovirus by Agarose-Based Recombinant Protein A Affinity Chromatography (John Mattila; Regeneron Pharmaceuticals Inc.)
    • Impact of Product on MuLV Removal by Protein A Chromatography (L. Connell-Crowley; Amgen)
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Cited By...

  • Analysis of Virus Clearance for Biotechnology Manufacturing Processes from Early to Late Phase Development
  • Proceedings of the 2019 Viral Clearance Symposium, Session 2: New Modalities in Chromatography and Adsorptive Filters
  • Viral Clearance Using Traditional, Well-Understood Unit Operations: Session 1.2. Anion Exchange Chromatography; and Session 1.3. Protein A Chromatography
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More in this TOC Section

  • Viral Clearance Using Traditional, Well-Understood Unit Operations (Session I): Virus-Retentive Filtration
  • Viral Clearance Integration (Session IV): General Trends, Bracketing, QbD, Virus Preparation Quality Attributes
  • Viral Clearance Using Traditional, Well-Understood Unit Operations (Session I): Low-pH Inactivation
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