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Differential Response in Downstream Processing of CHO Cells Grown Under Mild Hypothermic Conditions

The manufacture of complex therapeutic proteins using mammalian cells is well established, with several strategies developed to improve productivity. The application of sustained mild hypothermic conditions during culture has been associated with increases in product titer and improved product quali...

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Autores principales: Tait, Andrew S, Tarrant, Richard D R, Velez-Suberbie, M Lourdes, Spencer, Daniel I R, Bracewell, Daniel G
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Blackwell Publishing Ltd 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3738919/
https://www.ncbi.nlm.nih.gov/pubmed/23636936
http://dx.doi.org/10.1002/btpr.1726
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author Tait, Andrew S
Tarrant, Richard D R
Velez-Suberbie, M Lourdes
Spencer, Daniel I R
Bracewell, Daniel G
author_facet Tait, Andrew S
Tarrant, Richard D R
Velez-Suberbie, M Lourdes
Spencer, Daniel I R
Bracewell, Daniel G
author_sort Tait, Andrew S
collection PubMed
description The manufacture of complex therapeutic proteins using mammalian cells is well established, with several strategies developed to improve productivity. The application of sustained mild hypothermic conditions during culture has been associated with increases in product titer and improved product quality. However, despite associated cell physiological effects, very few studies have investigated the impact on downstream processing (DSP). Characterization of cells grown under mild hypothermic conditions demonstrated that the stationary phase was prolonged by delaying the onset of apoptosis. This enabled cells to maintain viability for extended periods and increase volumetric productivity from 0.74 to 1.02 g L(−1). However, host cell proteins, measured by ELISA, increased by ∼50%, attributed to the extended time course and higher peak and harvest cell densities. The individual components making up this impurity, as determined by SELDI-TOF MS and 2D-PAGE, were shown to be largely comparable. Under mild hypothermic conditions, cells were less shear sensitive than those maintained at 37°C, enhancing the preliminary primary recovery step. Adaptive changes in membrane fluidity were further investigated by adopting a pronounced temperature shift immediately prior to primary recovery and the improvement observed suggests that such a strategy may be implementable when shear sensitivity is of concern. Early and late apoptotic cells were particularly susceptible to shear, at either temperature, even under the lowest shear rate investigated. These findings demonstrate the importance of considering the impact of cell culture strategies and cell physiology on DSP, by implementing a range of experimental methods for process characterization. © 2013 American Institute of Chemical Engineers Biotechnol. Prog., 29:688–696, 2013
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spelling pubmed-37389192013-08-14 Differential Response in Downstream Processing of CHO Cells Grown Under Mild Hypothermic Conditions Tait, Andrew S Tarrant, Richard D R Velez-Suberbie, M Lourdes Spencer, Daniel I R Bracewell, Daniel G Biotechnol Prog Bioseparations and Downstream Processing The manufacture of complex therapeutic proteins using mammalian cells is well established, with several strategies developed to improve productivity. The application of sustained mild hypothermic conditions during culture has been associated with increases in product titer and improved product quality. However, despite associated cell physiological effects, very few studies have investigated the impact on downstream processing (DSP). Characterization of cells grown under mild hypothermic conditions demonstrated that the stationary phase was prolonged by delaying the onset of apoptosis. This enabled cells to maintain viability for extended periods and increase volumetric productivity from 0.74 to 1.02 g L(−1). However, host cell proteins, measured by ELISA, increased by ∼50%, attributed to the extended time course and higher peak and harvest cell densities. The individual components making up this impurity, as determined by SELDI-TOF MS and 2D-PAGE, were shown to be largely comparable. Under mild hypothermic conditions, cells were less shear sensitive than those maintained at 37°C, enhancing the preliminary primary recovery step. Adaptive changes in membrane fluidity were further investigated by adopting a pronounced temperature shift immediately prior to primary recovery and the improvement observed suggests that such a strategy may be implementable when shear sensitivity is of concern. Early and late apoptotic cells were particularly susceptible to shear, at either temperature, even under the lowest shear rate investigated. These findings demonstrate the importance of considering the impact of cell culture strategies and cell physiology on DSP, by implementing a range of experimental methods for process characterization. © 2013 American Institute of Chemical Engineers Biotechnol. Prog., 29:688–696, 2013 Blackwell Publishing Ltd 2013-05 2013-05-02 /pmc/articles/PMC3738919/ /pubmed/23636936 http://dx.doi.org/10.1002/btpr.1726 Text en © 2013 American Institute of Chemical Engineers http://creativecommons.org/licenses/by/2.5/ Re-use of this article is permitted in accordance with the Creative Commons Deed, Attribution 2.5, which does not permit commercial exploitation.
spellingShingle Bioseparations and Downstream Processing
Tait, Andrew S
Tarrant, Richard D R
Velez-Suberbie, M Lourdes
Spencer, Daniel I R
Bracewell, Daniel G
Differential Response in Downstream Processing of CHO Cells Grown Under Mild Hypothermic Conditions
title Differential Response in Downstream Processing of CHO Cells Grown Under Mild Hypothermic Conditions
title_full Differential Response in Downstream Processing of CHO Cells Grown Under Mild Hypothermic Conditions
title_fullStr Differential Response in Downstream Processing of CHO Cells Grown Under Mild Hypothermic Conditions
title_full_unstemmed Differential Response in Downstream Processing of CHO Cells Grown Under Mild Hypothermic Conditions
title_short Differential Response in Downstream Processing of CHO Cells Grown Under Mild Hypothermic Conditions
title_sort differential response in downstream processing of cho cells grown under mild hypothermic conditions
topic Bioseparations and Downstream Processing
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3738919/
https://www.ncbi.nlm.nih.gov/pubmed/23636936
http://dx.doi.org/10.1002/btpr.1726
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