Gold Nanoparticle Virus-like Particles Presenting SARS-CoV-2 Spike Protein: Synthesis, Biophysical Properties and Immunogenicity in BALB/c Mice
Author
Date
2024-07-23Permanent link
https://hdl.handle.net/11351/12643DOI
10.3390/vaccines12080829
ISSN
2076-393X
WOS
001307535500001
PMID
39203954
Abstract
Gold nanoparticles (AuNPs) decorated with antigens have recently emerged as promising tools for vaccine development due to their innate ability to provide stability to antigens and modulate immune responses. In this study, we have engineered deactivated virus-like particles (VLPs) by precisely functionalizing gold cores with coronas comprising the full SARS-CoV-2 spike protein (S). Using BALB/c mice as a model, we investigated the immunogenicity of these S-AuNPs-VLPs. Our results demonstrate that S-AuNPs-VLPs consistently enhanced antigen-specific antibody responses compared to the S protein free in solution. This enhancement included higher binding antibody titers, higher neutralizing capacity of antibodies, and stronger T-cell responses. Compared to the mRNA COVID-19 vaccine, where the S protein is synthesized in situ, S-AuNPs-VLPs induced comparable binding and neutralizing antibody responses, but substantially superior T-cell responses. In conclusion, our study highlights the potential of conjugated AuNPs as an effective antigen-delivery system for protein-based vaccines targeting a broad spectrum of infectious diseases and other emergent viruses.
Keywords
SARS-CoV-2 vaccine; Gold nanoparticles; Virus-like particlesBibliographic citation
Salazar VA, Comenge J, Suárez-López R, Burger JA, Sanders RW, Bastús NG, et al. Gold Nanoparticle Virus-like Particles Presenting SARS-CoV-2 Spike Protein: Synthesis, Biophysical Properties and Immunogenicity in BALB/c Mice. Vaccines (Basel). 2024 Jul 23;12(8):829.
Audience
Professionals
This item appears in following collections
- HVH - Articles científics [4476]
- VHIR - Articles científics [1751]
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