Recombinant expression systems for production of stabilised virus-like particles as next-generation polio vaccines
Abstract
Abstract Polioviruses have caused crippling disease in humans for centuries, prior to the successful development of vaccines in the mid-1900’s, which dramatically reduced disease prevalence. Continued use of these vaccines, however, threatens ultimate disease eradication and achievement of a polio-free world. Virus-like particles (VLPs) that lack a viral genome represent a safer potential vaccine, although they require particle stabilization. Using our previously established genetic techniques to stabilize the structural capsid proteins, we demonstrate production of poliovirus VLPs of all three serotypes, from four different recombinant expression systems. We compare the antigenicity, thermostability and immunogenicity of these stabilized VLPs against the current inactivated polio vaccine, demonstrating equivalent or superior immunogenicity in female Wistar rats. Structural analyses of these recombinant VLPs provide a rational understanding of the stabilizing mutations and the role of potential excipients. Collectively, we have established these poliovirus stabilized VLPs as viable next-generation vaccine candidates for the future.
Article Details
Authors (23)
Lee Sherry
Mohammad W. Bahar
Claudine Porta
Helen Fox
Keith Grehan
Veronica Nasta
Helen M. E. Duyvesteyn
Division of Structural Biology, Centre for Human Genetics, Nuffield Department of Medicine, University of Oxford
Luigi De Colibus
Johanna Marsian
Inga Murdoch
Daniel Ponndorf
Seong-Ryong Kim
Sachin Shah
Sarah Carlyle
Jessica J. Swanson
Sue Matthews
Clare Nicol
George P. Lomonossoff
Department of Biochemistry and Metabolism, John Innes Centre
Andrew J. Macadam
Elizabeth E. Fry
Division of Structural Biology, Centre for Human Genetics, Nuffield Department of Medicine, University of Oxford
David I. Stuart
Division of Structural Biology, Centre for Human Genetics, Nuffield Department of Medicine, University of Oxford
Nicola J. Stonehouse
David J. Rowlands