Literature DB >> 23879627

Rapid generation of stable cell lines expressing high levels of erythropoietin, factor VIII, and an antihuman CD20 antibody using lentiviral vectors.

Lajos Baranyi1, Christopher B Doering, Gabriella Denning, Richard E Gautney, Kyle T Harris, H Trent Spencer, Andre Roy, Hatem Zayed, Boro Dropulic.   

Abstract

Lentiviral vectors (LVs) are widely recognized as the most efficient method for the stable delivery of nucleic acid sequences into mammalian cells. Using erythropoietin (EPO), recombinant factor VIII (fVIII), and an anti-CD20 antibody as model proteins, we demonstrate advantages of LV-based gene delivery to achieve high production levels by transduced cells. Highly productive cell clones were able to incorporate up to 100 vector copies per cellular genome, without selection or gene amplification, and were isolated without extensive screening of a large number of clones. The LV transgenes were shown to be distributed throughout the genome, as visualized by fluorescent in situ hybridization. High-expressing clones producing 100-200 pg/cell/day of EPO were isolated and characterized. EPO production was demonstrated for at least 5½ months of continuous culture without selection, during which all the clones displayed high levels of glycosylation despite production levels at 10-20 g/liter. To demonstrate the utility of LV technology for multiple classes of proteins, cell lines producing fVIII and an anti-CD20 antibody were also developed. Cell clones demonstrating high levels of fVIII (100 clot units/ml and anti-CD20 antibody as high as 40-100 pg/cell/day) were isolated and characterized. LV-transduced cells and plasmid-transfected cells were compared for protein production per transgene copy. LV-transduced cells produced significantly higher levels of protein per copy of transgene than plasmid-transfected cells did. This study demonstrates the utility of LV technology for rapid generation of highly productive and stable cell lines over conventional plasmid transfection methods, significantly decreasing the time, cost, and risk of the manufacture of proteins and other complex biological molecules.

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Year:  2013        PMID: 23879627     DOI: 10.1089/hgtb.2013.002

Source DB:  PubMed          Journal:  Hum Gene Ther Methods        ISSN: 1946-6536            Impact factor:   2.396


  2 in total

1.  Eliminating HIV-1 Packaging Sequences from Lentiviral Vector Proviruses Enhances Safety and Expedites Gene Transfer for Gene Therapy.

Authors:  Conrad A Vink; John R Counsell; Dany P Perocheau; Rajvinder Karda; Suzanne M K Buckley; Martijn H Brugman; Melanie Galla; Axel Schambach; Tristan R McKay; Simon N Waddington; Steven J Howe
Journal:  Mol Ther       Date:  2017-05-24       Impact factor: 11.454

2.  Vaccine Development Against COVID-19 Prior to Pandemic Outbreaks, Using in vitro Evolution and Reverse Genetics.

Authors:  Hatem Zayed
Journal:  Front Immunol       Date:  2020-08-14       Impact factor: 7.561

  2 in total

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