Affecting HEK293 Cell Growth and Production Performance by Modifying the Expression of Specific Genes

Влияние на рост и продуктивность клеток HEK293 посредством модификации экспрессии специфических генов
Laura Abaandou, David N. Quan, Joseph Shiloach
2021-07-02

HEK293 cell linebiotherapeutic productioncell line engineeringfunctional genomic toolsgene expression modification
The HEK293 cell line has earned its place as a producer of biotherapeutics. In addition to its ease of growth in serum-free suspension culture and its amenability to transfection, this cell line's most important attribute is its human origin, which makes it suitable to produce biologics intended for human use. At the present time, the growth and production properties of the HEK293 cell line are inferior to those of non-human cell lines, such as the Chinese hamster ovary (CHO) and the murine myeloma NSO cell lines. However, the modification of genes involved in cellular processes, such as cell proliferation, apoptosis, metabolism, glycosylation, secretion, and protein folding, in addition to bioprocess, media, and vector optimization, have greatly improved the performance of this cell line. This review provides a comprehensive summary of important achievements in HEK293 cell line engineering and on the global engineering approaches and functional genomic tools that have been employed to identify relevant genes for targeted engineering.
1
Combining cell-line engineering with bioprocess, medium, and vector optimization further enhances HEK293 suitability for biotherapeutic manufacturing.
2
Engineering genes regulating proliferation, apoptosis, metabolism, glycosylation, secretion, and protein folding has substantially improved HEK293 production performance.
3
Global engineering strategies and functional genomic tools have enabled identification of genes suitable for targeted modification of HEK293 cells.
4
HEK293 cells are valuable biotherapeutic production hosts because they grow readily in serum-free suspension culture, are highly transfectable, and have human origin.
5
HEK293 growth and production performance remains inferior to that of CHO and NSO cell lines.

HEK293 cell line

Effects of modifying specific genes on HEK293 cell growth and biotherapeutic production performance

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2021-07-02
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Laura Abaandou
David N. Quan
Joseph Shiloach
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