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Recombinant expression systems for production of stabilised virus-like particles as next-generation polio vaccines

Nature Communications. 2025-01; 
Lee Sherry, Mohammad W. Bahar, Claudine Porta, Helen Fox, Keith Grehan, Veronica Nasta, Helen M. E. Duyvesteyn, 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, Andrew J. Macadam, Elizabeth E. Fry, David I. Stuart, Nicola J. Stonehouse & David J. Rowlands Astbury Centre for Structural Molecular Biology, School of Molecular and Cellular Biology, Faculty of Biological Sciences, University of Leeds
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摘要

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 ... More

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