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Production of Recombinant Proteins with Pichia pastoris in Integrated Processing

Identifieur interne : 000198 ( Main/Exploration ); précédent : 000197; suivant : 000199

Production of Recombinant Proteins with Pichia pastoris in Integrated Processing

Auteurs : G. Cornelissen [Allemagne] ; H. Bertelsen [Allemagne] ; K. Lenz [Allemagne] ; B. Hahn [Allemagne] ; M. Schultz [Allemagne] ; U. Scheffler [Allemagne] ; E. Werner [Allemagne] ; H. Leptien [Allemagne] ; S. Krü [Allemagne] ; A. Jansen [Allemagne] ; O. Elsholz [Allemagne] ; T. Gliem [Allemagne] ; B. Wilhelm [Allemagne] ; E. Sowa [Allemagne] ; H. H. Radeke [Allemagne] ; R. Luttman [Allemagne]

Source :

RBID : ISTEX:68D31EFF90DF56E27CAB6DF0C350D54A3CDD5A19

Mots-clés :

Abstract

Devices and methods for Integrated Bioprocessing have been developed for production of recombinant proteins with the yeast Pichia pastoris. In doing so cross flow filtration techniques for cell separation and product concentration are connected directly to high instrumented cultivation processes. These are equipped with on‐line measuring techniques for substrates and products, e.g., glycerol, methanol and pyruvate as well as recombinant proteins, e.g., the chemokines 1–8del MCP‐1 and vMIP‐II. Complex automation structures allow for process development at virtual plants which can be used as the basis for establishing and implementing fully automated real processes. Experiments for determination of reaction kinetics, optimization of productivity in high‐cell density cultures and Integrated Bioprocessing are outlined, along with detailed illustration of the realization of the methods at industrial pilot plant scale.


Url:
DOI: 10.1002/elsc.200300033


Affiliations:


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Le document en format XML

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<div type="abstract" xml:lang="en">Devices and methods for Integrated Bioprocessing have been developed for production of recombinant proteins with the yeast Pichia pastoris. In doing so cross flow filtration techniques for cell separation and product concentration are connected directly to high instrumented cultivation processes. These are equipped with on‐line measuring techniques for substrates and products, e.g., glycerol, methanol and pyruvate as well as recombinant proteins, e.g., the chemokines 1–8del MCP‐1 and vMIP‐II. Complex automation structures allow for process development at virtual plants which can be used as the basis for establishing and implementing fully automated real processes. Experiments for determination of reaction kinetics, optimization of productivity in high‐cell density cultures and Integrated Bioprocessing are outlined, along with detailed illustration of the realization of the methods at industrial pilot plant scale.</div>
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