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Development of an engineered extracellular vesicles-based vaccine platform for combined delivery of mRNA and protein to induce functional immunity.

Authors :
Luo, Xin
McAndrews, Kathleen M.
Arian, Kent A.
Morse, Sami J.
Boeker, Viktoria
Kumbhar, Shreyasee V.
Hu, Yingying
Mahadevan, Krishnan K.
Church, Kaira A.
Chitta, Sriram
Ryujin, Nicolas T.
Hensel, Janine
Dai, Jianli
Dowlatshahi, Dara P.
Sugimoto, Hikaru
Kirtley, Michelle L.
LeBleu, Valerie S.
Shalapour, Shabnam
Simmons, Joe H.
Kalluri, Raghu
Source :
Journal of Controlled Release. Oct2024, Vol. 374, p550-562. 13p.
Publication Year :
2024

Abstract

mRNA incorporated in lipid nanoparticles (LNPs) became a new class of vaccine modality for induction of immunity against COVID-19 and ushered in a new era in vaccine development. Here, we report a novel, easy-to-execute, and cost effective engineered extracellular vesicles (EVs)-based combined mRNA and protein vaccine platform (EVX-M+P vaccine) and explore its utility in proof-of-concept immunity studies in the settings of cancer and infectious disease. As a first example, we engineered EVs, natural nanoparticle carriers shed by all cells, to contain ovalbumin mRNA and protein (EVOvaM+P vaccine) to serve as cancer vaccine against ovalbumin-expressing melanoma tumors. EVOvaM+P administration to mice with established melanoma tumors resulted in tumor regression associated with effective humoral and adaptive immune responses. As a second example, we generated engineered EVs that contain Spike (S) mRNA and protein to serve as a combined mRNA and protein vaccine (EVSpikeM+P vaccine) against SARS-CoV-2 infection. EVSpikeM+P vaccine administration in mice and baboons elicited robust production of neutralizing IgG antibodies against RBD (receptor binding domain) of S protein and S protein specific T cell responses. Our proof-of-concept study describes a new platform with an ability for rapid development of combination mRNA and protein vaccines employing EVs for deployment against cancer and other diseases. [Display omitted] [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
01683659
Volume :
374
Database :
Academic Search Index
Journal :
Journal of Controlled Release
Publication Type :
Academic Journal
Accession number :
179733996
Full Text :
https://doi.org/10.1016/j.jconrel.2024.08.017