miR-2861 as novel HDAC5 inhibitor in CHO cells enhances productivity while maintaining product quality
Author:
Affiliation:
1. Institute of Applied Biotechnology; University of Applied Sciences Biberach; Biberach Germany
2. Faculty of Medicine; University of Ulm; Albert-Einstein-Allee 11; 89081 Ulm Germany
3. Faculty of Natural Sciences; University of Ulm; Ulm Germany
Funder
Postgraduate Scholarships Act of the Ministry for Science, Research and Arts Baden Wuerttemberg
Publisher
Wiley
Subject
Applied Microbiology and Biotechnology,Bioengineering,Biotechnology
Reference51 articles.
1. Aggregation mechanism of an IgG2 and two IgG1 monoclonal antibodies at low pH: From oligomers to larger aggregates;Arosio;Pharm Res,2013
2. Valproic acid: A viable alternative to sodium butyrate for enhancing protein expression in mammalian cell cultures;Backliwal;Biotechnol Bioeng,2008
3. Engineering CHO cell growth and recombinant protein productivity by overexpression of miR-7;Barron;J Biotechnol,2011
4. Evolution of microRNA diversity and regulation in animals;Berezikov;Nat Rev Genet,2011
5. Functional divergence between histone deacetylases in fission yeast by distinct cellular localization and in vivo specificity;Bjerling;Mol Cell Biol,2002
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