Therapeutic glycoprotein production in mammalian cells

Производство терапевтических гликопротеинов в клетках млекопитающих
Marie‐Eve Lalonde, Yves Durocher
2017-04-29

CHO cellsglycosylation engineeringmammalian cell expression systemsmonoclonal antibodiestherapeutic glycoprotein production
Over the last years, the biopharmaceutical industry has significantly turned its biologics production towards mammalian cell expression systems. The presence of glycosylation machineries within these systems, and the fact that monoclonal antibodies represent today the vast majority of new therapeutic candidates, has largely influenced this new direction. Recombinant glycoproteins, including monoclonal antibodies, have shown different biological properties based on their glycan profiles. Thus, the industry has developed cell engineering strategies not only to improve cell's specific productivity, but also to adapt their glycosylation profiles for increased therapeutic activity. Additionally, the advance of "omics" technologies has recently given rise to new possibilities in improving these expression platforms and will significantly help developing new strategies, in particular for CHO (Chinese Hamster Ovary) cells.
1
Biopharmaceutical production has increasingly shifted toward mammalian expression systems, partly because they provide cellular glycosylation machinery.
2
Cell-engineering strategies target both higher cell-specific productivity and customized glycosylation profiles to enhance therapeutic activity.
3
Glycan profiles alter the biological properties of recombinant glycoproteins, including monoclonal antibodies.
4
Omics technologies are creating new opportunities to improve mammalian expression platforms, particularly Chinese Hamster Ovary cell systems.

therapeutic recombinant glycoproteins, including monoclonal antibodies, produced in mammalian cell expression systems

cell-engineering strategies for improving production productivity and tailoring glycosylation profiles to enhance therapeutic activity

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2017-04-29
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Marie‐Eve Lalonde
Yves Durocher
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