2020
DOI: 10.1002/btpr.3061
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Generation of FX−/− and Gmds−/−CHOZN host cell lines for the production of afucosylated therapeutic antibodies

Abstract: Antibody-dependent cellular cytotoxicity (ADCC) is the primary mechanism of actions for several marketed therapeutic antibodies (mAbs) and for many more in clinical trials. The ADCC efficacy is highly dependent on the ability of therapeutic mAbs to recruit effector cells such as natural killer cells, which induce the apoptosis of targeted cells. The recruitment of effector cells by mAbs is negatively affected by fucose modification of N-Glycans on the Fc; thus, utilization of afucosylated mAbs has been a trend… Show more

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Cited by 4 publications
(1 citation statement)
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“…Protein expression regulation reduces the cell line's ability to conduct fucosylation by targeting genes associated with core fucosylation. Several proteins in the fucosylation metabolic pathway are popular targets for down regulation or knockout including GDP‐mannose 4,6‐dehydratase (GMD), [ 27–29 ] GDP‐L‐fucose synthase (GFS), [ 17,28 ] and FUT8 [ 29,30 ] to generate products with reduced or negligible levels of fucosylation. Genetic engineering can target proteins either individually or in combination to improve inhibition of core fucosylation and increase levels of afucosylation.…”
Section: Cell Line/genetic Engineeringmentioning
confidence: 99%
“…Protein expression regulation reduces the cell line's ability to conduct fucosylation by targeting genes associated with core fucosylation. Several proteins in the fucosylation metabolic pathway are popular targets for down regulation or knockout including GDP‐mannose 4,6‐dehydratase (GMD), [ 27–29 ] GDP‐L‐fucose synthase (GFS), [ 17,28 ] and FUT8 [ 29,30 ] to generate products with reduced or negligible levels of fucosylation. Genetic engineering can target proteins either individually or in combination to improve inhibition of core fucosylation and increase levels of afucosylation.…”
Section: Cell Line/genetic Engineeringmentioning
confidence: 99%