Expression of Recombinant Antibodies

Экспрессия рекомбинантных антител
Michael Hust, André Frenzel, Thomas Schirrmann
2013-01-01

antibody production systemsbispecific antibody fragmentsglycosylation engineeringphage displayrecombinant antibodies
Recombinant antibodies are highly specific detection probes in research, diagnostics, and have emerged over the last two decades as the fastest growing class of therapeutic proteins. Antibody generation has been dramatically accelerated by in vitro selection systems, particularly phage display. An increasing variety of recombinant production systems have been developed, ranging from Gram-negative and positive bacteria, yeasts and filamentous fungi, insect cell lines, mammalian cells to transgenic plants and animals. Currently, almost all therapeutic antibodies are still produced in mammalian cell lines in order to reduce the risk of immunogenicity due to altered, non-human glycosylation patterns. However, recent developments of glycosylation-engineered yeast, insect cell lines, and transgenic plants are promising to obtain antibodies with "human-like" post-translational modifications. Furthermore, smaller antibody fragments including bispecific antibodies without any glycosylation are successfully produced in bacteria and have advanced to clinical testing. The first therapeutic antibody products from a non-mammalian source can be expected in coming next years. In this review, we focus on current antibody production systems including their usability for different applications.
1
Glycosylation-engineered yeasts, insect cells, and transgenic plants show promise for producing antibodies with human-like post-translational modifications.
2
Nearly all therapeutic antibodies remain manufactured in mammalian cells because non-human glycosylation can increase immunogenicity risk.
3
Production systems span bacteria, yeasts, fungi, insect and mammalian cells, transgenic plants, and transgenic animals, supporting diverse applications.
4
Recombinant antibody generation has been substantially accelerated by in vitro selection technologies, especially phage display.
5
Unglycosylated antibody fragments, including bispecific antibodies, can be produced successfully in bacteria and have reached clinical testing; non-mammalian therapeutic products are anticipated soon.

Recombinant antibodies and antibody fragments produced in various expression systems

the suitability of different recombinant antibody production systems for research, diagnostic, and therapeutic applications, including glycosylation and immunogenicity considerations

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2013-01-01
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Michael Hust
André Frenzel
Thomas Schirrmann
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