Nanoscale characterization coupled to multi-parametric optimization of Hi5 cell transient gene expression
Autor/a
Puente-Massaguer, Eduard
Lecina i Veciana, Martí
Gòdia, Francesc
Altres autors/es
Universitat Ramon Llull. IQS
Data de publicació
2018-10-13ISSN
1432-0614
Resum
Polyethylenimine (PEI)-based transient gene expression (TGE) is nowadays a well-established methodology for rapid protein production in mammalian cells, but it has been used to a much lower extent in insect cell lines. A fast and robust TGE methodology for suspension Hi5 (Trichoplusia ni) cells is presented. Significant differences in size and morphology of DNA:PEI polyplexes were observed in the different incubation solutions tested. Moreover, minimal complexing time (< 1 min) between DNA and PEI in 150 mM NaCl solution provided the highest transfection efficiency. Nanoscopic characterization by means of cryo-EM revealed that DNA:PEI polyplexes up to 300–400 nm were the most efficient for transfection. TGE optimization was performed using eGFP as model protein by means of the combination of advanced statistical designs. A global optimal condition of 1.5 × 106 cell/mL, 2.1 μg/mL of DNA, and 9.3 μg/mL PEI was achieved through weighted-based optimization of transfection, production, and viability responses. Under these conditions, a 60% transfection and 0.8 μg/106 transfected cell·day specific productivity were achieved. The TGE protocol developed for Hi5 cells provides a promising baculovirus-free and worthwhile approach to produce a wide variety of recombinant proteins in a short period of time.
Tipus de document
Article
Versió del document
Versió acceptada
Llengua
English
Matèries (CDU)
577 - Bioquímica. Biologia molecular. Biofísica
Paraules clau
High Five cells
Polyethylenimine
Transient gene expression
Cryo-electronmicroscopy
Dynamic light scattering
Design of experiments
Pàgines
16 p.
Publicat per
Springer
Publicat a
Applied Microbiology and Biotechnology
Número de l'acord de la subvenció
info:eu-repo/grantAgreement/MINECO/FPU15/03577
info:eu-repo/grantAgreement/SUR del DEC/SGR/2017 SGR 898
Aquest element apareix en la col·lecció o col·leccions següent(s)
Drets
© Springer
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