Issue 15, 2022

Bio-mineralization of virus-like particles by metal–organic framework nanoparticles enhances the thermostability and immune responses of the vaccines

Abstract

Virus-like particle (VLPs) vaccines have been extensively studied due to their good immunogenicity and safety; however, they highly rely on cold-chain storage and transportation. Nanotechnology of bio-mineralization as a useful strategy has been employed to improve the thermal stability and immunogenicity of VLPs. A zeolitic imidazole framework (ZIF-8), a core–shell structured nanocomposite, was applied to encapsulate foot-and-mouth disease virus (FMDV) VLPs. It was found that the ZIF-8 shell enhanced the heat resistance of VLPs and promoted their ability to be taken up by cells and escape from lysosomes. The VLPs-ZIF-8 easily activated antigen-presenting cells (APCs), triggered higher secretion levels of cytokines, and elicited stronger immune responses than VLPs alone even after being treated at 37 °C for 7 days. This platform has good potential in the development of VLP-based vaccine products without transportation.

Graphical abstract: Bio-mineralization of virus-like particles by metal–organic framework nanoparticles enhances the thermostability and immune responses of the vaccines

Supplementary files

Article information

Article type
Paper
Submitted
10 Dec 2021
Accepted
09 Mar 2022
First published
23 Mar 2022

J. Mater. Chem. B, 2022,10, 2853-2864

Bio-mineralization of virus-like particles by metal–organic framework nanoparticles enhances the thermostability and immune responses of the vaccines

Z. Teng, F. Hou, M. Bai, J. Li, J. Wang, J. Wu, J. Ru, M. Ren, S. Sun and H. Guo, J. Mater. Chem. B, 2022, 10, 2853 DOI: 10.1039/D1TB02719K

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