Mass spectrometric evaluation of upstream and downstream process influences on host cell protein patterns in biopharmaceutical products

被引:20
作者
Falkenberg, Heiner [1 ]
Waldera-Lupa, Daniel Michael [1 ]
Vanderlaan, Martin [2 ]
Schwab, Thomas [3 ]
Krapfenbauer, Kurt [4 ]
Studts, Joey Michael [5 ]
Flad, Thomas [1 ]
Waerner, Thomas [3 ]
机构
[1] Protagen Prot Serv GmbH, Biotherapeut Analyt, Dortmund, Germany
[2] Analyt Chem, San Francisco, CA USA
[3] Boehringer Ingelheim Pharma GmbH & Co KG, Dept Analyt Dev Biol, Analyt Dev Biol, Birkendorfer Str 65, D-88397 Biberach, Germany
[4] European Assoc Predict Prevent & Personalised Med, Dept European Affairs, Vienna, Austria
[5] Boehringer Ingelheim Pharma GmbH & Co KG, Dept Bioproc Dev Biol, Bioproc Dev Biol, Biberach, Germany
关键词
biopharmaceuticals; ELISA; host cell protein; mass spectrometry; proteomics; DYNAMICS; IDENTIFICATION; SUPERNATANT; IMPURITIES;
D O I
10.1002/btpr.2788
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
For production of different monoclonal antibodies (mAbs), biopharmaceutical companies often use related upstream and downstream manufacturing processes. Such platforms are typically characterized regarding influence of upstream and downstream process (DSP) parameters on critical quality attributes (CQAs). CQAs must be monitored strictly by an adequate control strategy. One such process-related CQA is the content of host cell protein (HCP) which is typically analyzed by immunoassay methods (e.g., HCP-ELISA). The capacity of the immunoassay to detect a broad range of HCPs, relevant for the individual mAb-production process should be proven by orthogonal proteomic methods such as 2D gel electrophoresis or mass spectrometry (MS). In particular MS has become a valuable tool to identify and quantify HCP in complex mixtures. We evaluate up- and DSP parameters of four different biopharmaceutical products, two different process variants, and one mock fermentation on the HCP pattern by shotgun MS analysis and ELISA. We obtained a similar HCP pattern in different cell culture fluid harvests compared to the starting material from the downstream process. During the downstream purification process of the mAbs, the HCP level and the number of HCP species significantly decreased, accompanied by an increase in diversity of the residual HCP pattern. Based on this knowledge, we suggest a control strategy that combines multi product ELISA for in-process control and release analytics, and MS testing for orthogonal HCP characterization, to attain knowledge on the HCP level, clusters and species. This combination supports a control strategy for HCPs addressing safety and efficacy of biopharmaceutical products.
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页数:12
相关论文
共 32 条
[1]   Proteomics in biomanufacturing control: Protein dynamics of CHO-K1 cells and conditioned media during apoptosis and necrosis [J].
Albrecht, Simone ;
Kaisermayer, Christian ;
Gallagher, Clair ;
Farrell, Amy ;
Lindeberg, Anna ;
Bones, Jonathan .
BIOTECHNOLOGY AND BIOENGINEERING, 2018, 115 (06) :1509-1520
[2]   Multiple reaction monitoring targeted LC-MS analysis of potential cell death marker proteins for increased bioprocess control [J].
Albrecht, Simone ;
Kaisermayer, Christian ;
Reinhart, David ;
Ambrose, Monica ;
Kunert, Renate ;
Lindeberg, Anna ;
Bones, Jonathan .
ANALYTICAL AND BIOANALYTICAL CHEMISTRY, 2018, 410 (13) :3197-3207
[3]  
[Anonymous], 2016, US PHARMACOPEA MONOG
[4]   CHOPPI: A Web Tool for the Analysis of Immunogenicity Risk from Host Cell Proteins in CHO-Based Protein Production [J].
Bailey-Kellogg, Chris ;
Gutierrez, Andres H. ;
Moise, Leonard ;
Terry, Frances ;
Martin, William D. ;
De Groot, Anne S. .
BIOTECHNOLOGY AND BIOENGINEERING, 2014, 111 (11) :2170-2182
[5]   Transforming Growth Factor-β1 is Constitutively Secreted by Chinese Hamster Ovary Cells and is Functional in Human Cells [J].
Beatson, Richard ;
Sproviero, Daisy ;
Maher, John ;
Wilkie, Scott ;
Taylor-Papadimitriou, Joyce ;
Burchell, Joy M. .
BIOTECHNOLOGY AND BIOENGINEERING, 2011, 108 (11) :2759-2764
[6]   Identification of an IgG CDR sequence contributing to co-purification of the host cell protease cathepsin D [J].
Bee, Jared S. ;
Machiesky, LeeAnn M. ;
Peng, Li ;
Jusino, Kristin C. ;
Dickson, Matthew ;
Gill, Jeffrey ;
Johnson, Douglas ;
Lin, Hung-Yu ;
Miller, Kenneth ;
Thompson, Jenny Heidbrink ;
Remmele, Richard L., Jr. .
BIOTECHNOLOGY PROGRESS, 2017, 33 (01) :140-145
[7]   Dynamic mass spectrometry probe for electrospray ionization mass spectrometry monitoring of bioreactors for therapeutic cell manufacturing [J].
Chilmonczyk, Mason A. ;
Kottke, Peter A. ;
Stevens, Hazel Y. ;
Guldberg, Robert E. ;
Fedorov, Andrei G. .
BIOTECHNOLOGY AND BIOENGINEERING, 2019, 116 (01) :121-131
[8]   Knockout of a difficult-to-remove CHO host cell protein, lipoprotein lipase, for improved polysorbate stability in monoclonal antibody formulations [J].
Chiu, Josephine ;
Valente, Kristin N. ;
Levy, Nicholas E. ;
Min, Lie ;
Lenhoff, Abraham M. ;
Lee, Kelvin H. .
BIOTECHNOLOGY AND BIOENGINEERING, 2017, 114 (05) :1006-1015
[9]   Manufacturing recombinant proteins in kg-ton quantities using animal cells in bioreactors [J].
De Jesus, Maria ;
Wurm, Florian M. .
EUROPEAN JOURNAL OF PHARMACEUTICS AND BIOPHARMACEUTICS, 2011, 78 (02) :184-188
[10]   Residual Host Cell Protein Promotes Polysorbate 20 Degradation in a Sulfatase Drug Product Leading to Free Fatty Acid Particles [J].
Dixit, Nitin ;
Salamat-Miller, Nazila ;
Salinas, Paul A. ;
Taylor, Katherine D. ;
Basu, Sujit K. .
JOURNAL OF PHARMACEUTICAL SCIENCES, 2016, 105 (05) :1657-1666