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Enhanced Production of Chikungunya Virus-Like Particles Using a High-pH Adapted Spodoptera frugiperda Insect Cell Line

Overview of attention for article published in PLOS ONE, April 2014
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Title
Enhanced Production of Chikungunya Virus-Like Particles Using a High-pH Adapted Spodoptera frugiperda Insect Cell Line
Published in
PLOS ONE, April 2014
DOI 10.1371/journal.pone.0094401
Pubmed ID
Authors

James M. Wagner, J. David Pajerowski, Christopher L. Daniels, Patrick M. McHugh, Jessica A. Flynn, John W. Balliet, Danilo R. Casimiro, Shyamsundar Subramanian

Abstract

Chikungunya virus-like particles (VLPs) have potential to be used as a prophylactic vaccine based on testing in multiple animal models and are currently being evaluated for human use in a Phase I clinical trial. The current method for producing these enveloped alphavirus VLPs by transient gene expression in mammalian cells presents challenges for scalable and robust industrial manufacturing, so the insect cell baculovirus expression vector system was evaluated as an alternative expression technology. Subsequent to recombinant baculovirus infection of Sf21 cells in standard culture media (pH 6.2-6.4), properly processed Chikungunya structural proteins were detected and assembled capsids were observed. However, an increase in culture pH to 6.6-6.8 was necessary to produce detectable concentrations of assembled VLPs. Since this elevated production pH exceeds the optimum for growth medium stability and Sf21 culture, medium modifications were made and a novel insect cell variant (SfBasic) was derived by exposure of Sf21 to elevated culture pH for a prolonged period of time. The high-pH adapted SfBasic insect cell line described herein is capable of maintaining normal cell growth into the typical mammalian cell culture pH range of 7.0-7.2 and produces 11-fold higher Chikungunya VLP yields relative to the parental Sf21 cell line. After scale-up into stirred tank bioreactors, SfBasic derived VLPs were chromatographically purified and shown to be similar in size and structure to a VLP standard derived from transient gene expression in HEK293 cells. Total serum anti-Chikungunya IgG and neutralizing titers from guinea pigs vaccinated with SfBasic derived VLPs or HEK293 derived VLPs were not significantly different with respect to production method, suggesting that this adapted insect cell line and production process could be useful for manufacturing Chikungunya VLPs for use as a vaccine. The adaptation of Sf21 to produce high levels of recombinant protein and VLPs in an elevated pH range may also have applications for other pH-sensitive protein or VLP targets.

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Geographical breakdown

Country Count As %
United Kingdom 1 <1%
United States 1 <1%
India 1 <1%
Portugal 1 <1%
Unknown 120 97%

Demographic breakdown

Readers by professional status Count As %
Student > Ph. D. Student 28 23%
Researcher 22 18%
Student > Bachelor 20 16%
Student > Doctoral Student 11 9%
Student > Master 10 8%
Other 17 14%
Unknown 16 13%
Readers by discipline Count As %
Agricultural and Biological Sciences 37 30%
Biochemistry, Genetics and Molecular Biology 30 24%
Chemical Engineering 7 6%
Immunology and Microbiology 6 5%
Veterinary Science and Veterinary Medicine 3 2%
Other 17 14%
Unknown 24 19%