Improving AAV vector yield in insect cells by modulating the temperature after infection
- 1 February 2007
- journal article
- research article
- Published by Wiley in Biotechnology & Bioengineering
- Vol. 97 (6) , 1501-1509
- https://doi.org/10.1002/bit.21364
Abstract
Vectors based on adeno‐associated viruses (AAV) are sought for therapeutic gene delivery because of their ability to transduce a variety of tissues with no significant immunological response. Production using the baculovirus expression vector (BEV)/insect cell system has the potential to meet the needs for pre‐clinical and clinical trials. In this co‐infection system, three baculoviruses are used to produce the AAV vector. A strategy aimed at increasing encapsidation/maturation of the viral vector involved varying the temperature over the course of the process. Cultures were subjected to temperature changes at various times pre‐ and post‐infection (up to 24 h post‐infection). It was found that raising the culture temperature to 30°C at the time of infection nearly tripled the infectious titer. In fact, increasing the temperature to 30°C at any time in the process investigated resulted in an increase in titer. Also, raising the culture to 33°C or lowering the temperature to 24° or 21°C resulted in lower titers. The rise in infectious titer was also confirmed by an increase in DNase resistant particles (DRPs). Varying the temperature, however, did not affect the total amount of capsids significantly. Therefore increasing the culture temperature resulted in better encapsidation as determined by the ratio of capsids to DRPs to infectious particles. It is believed that an increase in early proteins and possibly a quicker cascade of baculovirus infection events resulted in this increased packaging efficiency. Biotechnol. Bioeng. 2007;97:1501–1509.Keywords
This publication has 30 references indexed in Scilit:
- Primary recovery and chromatographic purification of adeno-associated virus type 2 produced by baculovirus/insect cell systemJournal of Virological Methods, 2006
- Production of adeno-associated viral vectors in insect cells using triple infection: Optimization of baculovirus concentration ratiosBiotechnology & Bioengineering, 2006
- Successful Production of Pseudotyped rAAV Vectors Using a Modified Baculovirus Expression SystemMolecular Therapy, 2005
- Protein response of insect cells to bioreactor environmental stressesJournal of Biotechnology, 2005
- Parameters that determine virus adsorption kinetics: toward the design of better infection strategies for the insect cell - baculovirus expression systemEnzyme and Microbial Technology, 2001
- Temperature dependent characteristics of a recombinant infectious hematopoietic necrosis virus glycoprotein produced in insect cellsDiseases of Aquatic Organisms, 1999
- Novel Tools for Production and Purification of Recombinant Adenoassociated Virus VectorsHuman Gene Therapy, 1998
- Effect of temperature on recombinant protein production using the Bm5/Bm5.NPV expression systemThe Canadian Journal of Chemical Engineering, 1996
- Optimum infection conditions for recombinant protein production in insect cell (Bm5) suspension cultureBiotechnology Progress, 1994
- Effects of Temperature onEscherichia coli β-Galactosidase Expression in Baculovirus-Insect Cell SystemBioscience, Biotechnology, and Biochemistry, 1993