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Nikolas Zeh

Showing results (1-10 of 17) with videos related to

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Methods in Molecular Biology (Clifton, N.J.)|June 26, 2024
Development of Responsive Promoters and their Utilization for Stable CHO Sensor Cell LinesNikolas Zeh, Kerstin Otte
Biotechnology Advances|July 1, 2024
The new frontier in CHO cell line development: From random to targeted transgene integration technologiesNikolas Zeh, Moritz Schmidt, Patrick Schulz, et al.
Scientific Reports|February 11, 2022
Exploring synthetic biology for the development of a sensor cell line for automated bioprocess controlNikolas Zeh, Melina Bräuer, Nadja Raab, et al.
Trends in Biotechnology|May 29, 2025
Without a trace: multiple knockout of CHO host cell hydrolases to prevent polysorbate degradation in biologicsLinus Weiß, Nikolas Zeh, Melanie Maier, et al.
Applied Microbiology and Biotechnology|August 29, 2022
Life at the periphery: what makes CHO cells survival talentsTobias Jerabek, Florian Klingler, Nadja Raab, et al.
Metabolic Engineering Communications|August 17, 2021
Cell line development for continuous high cell density biomanufacturing: Exploiting hypoxia for improved productivityNikolas Zeh, Patrick Schlossbauer, Nadja Raab, et al.
New Biotechnology|December 28, 2023
In pursuit of a minimal CHO genome: Establishment of large-scale genome deletionsTobias Jerabek, Linus Weiß, Hannah Fahrion, et al.
Molecular & Cellular Proteomics : MCP|August 7, 2022
Spatial Proteomics Reveals Differences in the Cellular Architecture of Antibody-Producing CHO and Plasma Cell-Derived CellsRobin Kretz, Larissa Walter, Nadja Raab, et al.
New Biotechnology|June 26, 2026
Cell Culture Medium Formulation can be a Driver of Lipoprotein Lipase Release and Polysorbate Degradation Risk in CHO Cell-based Manufacturing ProcessesLinus Weiss, Elena Bollgoenn, Nikolas Zeh, et al.
Metabolic Engineering|April 1, 2024
Nature as blueprint: Global phenotype engineering of CHO production cells based on a multi-omics comparison with plasma cellsNadja Raab, Nikolas Zeh, Robin Kretz, et al.
Pageof 2

Showing results (1-10 of 17) with videos related to

Sort By:
Pageof 2
Methods in Molecular Biology (Clifton, N.J.)|June 26, 2024
Development of Responsive Promoters and their Utilization for Stable CHO Sensor Cell LinesNikolas Zeh, Kerstin Otte
Biotechnology Advances|July 1, 2024
The new frontier in CHO cell line development: From random to targeted transgene integration technologiesNikolas Zeh, Moritz Schmidt, Patrick Schulz, et al.
Scientific Reports|February 11, 2022
Exploring synthetic biology for the development of a sensor cell line for automated bioprocess controlNikolas Zeh, Melina Bräuer, Nadja Raab, et al.
Trends in Biotechnology|May 29, 2025
Without a trace: multiple knockout of CHO host cell hydrolases to prevent polysorbate degradation in biologicsLinus Weiß, Nikolas Zeh, Melanie Maier, et al.
Applied Microbiology and Biotechnology|August 29, 2022
Life at the periphery: what makes CHO cells survival talentsTobias Jerabek, Florian Klingler, Nadja Raab, et al.
Metabolic Engineering Communications|August 17, 2021
Cell line development for continuous high cell density biomanufacturing: Exploiting hypoxia for improved productivityNikolas Zeh, Patrick Schlossbauer, Nadja Raab, et al.
New Biotechnology|December 28, 2023
In pursuit of a minimal CHO genome: Establishment of large-scale genome deletionsTobias Jerabek, Linus Weiß, Hannah Fahrion, et al.
Molecular & Cellular Proteomics : MCP|August 7, 2022
Spatial Proteomics Reveals Differences in the Cellular Architecture of Antibody-Producing CHO and Plasma Cell-Derived CellsRobin Kretz, Larissa Walter, Nadja Raab, et al.
New Biotechnology|June 26, 2026
Cell Culture Medium Formulation can be a Driver of Lipoprotein Lipase Release and Polysorbate Degradation Risk in CHO Cell-based Manufacturing ProcessesLinus Weiss, Elena Bollgoenn, Nikolas Zeh, et al.
Metabolic Engineering|April 1, 2024
Nature as blueprint: Global phenotype engineering of CHO production cells based on a multi-omics comparison with plasma cellsNadja Raab, Nikolas Zeh, Robin Kretz, et al.
Pageof 2