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Engineered EVs with pathogen proteins: promising vaccine alternatives to LNP-mRNA vaccines.


ABSTRACT: Extracellular vesicles (EVs) are tiny, lipid membrane-bound structures that are released by most cells. They play a vital role in facilitating intercellular communication by delivering bioactive cargoes to recipient cells and triggering cellular as well as biological responses. EVs have enormous potential for therapeutic applications as native or engineered exosomes. Native EVs are naturally released by cells without undergoing any modifications to either the exosomes or the cells that secrete them. In contrast, engineered EVs have been deliberately modified post-secretion or through genetic engineering of the secreting cells to alter their composition. Here we propose that engineered EVs displaying pathogen proteins could serve as promising alternatives to lipid nanoparticle (LNP)-mRNA vaccines. By leveraging their unique characteristics, these engineered EVs have the potential to overcome certain limitations associated with LNP-mRNA vaccines.

SUBMITTER: Zhang B 

PROVIDER: S-EPMC10792899 | biostudies-literature | 2024 Jan

REPOSITORIES: biostudies-literature

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Engineered EVs with pathogen proteins: promising vaccine alternatives to LNP-mRNA vaccines.

Zhang Bin B   Sim Wei Kian WK   Shen Tang-Long TL   Lim Sai Kiang SK  

Journal of biomedical science 20240117 1


Extracellular vesicles (EVs) are tiny, lipid membrane-bound structures that are released by most cells. They play a vital role in facilitating intercellular communication by delivering bioactive cargoes to recipient cells and triggering cellular as well as biological responses. EVs have enormous potential for therapeutic applications as native or engineered exosomes. Native EVs are naturally released by cells without undergoing any modifications to either the exosomes or the cells that secrete t  ...[more]

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