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Live-attenuated RNA hybrid vaccine technology provides single-dose protection against Chikungunya virus.


ABSTRACT: We present a live-attenuated RNA hybrid vaccine technology that uses an RNA vaccine delivery vehicle to deliver in vitro-transcribed, full-length, live-attenuated viral genomes to the site of vaccination. This technology allows ready manufacturing in a cell-free environment, regardless of viral attenuation level, and it promises to avoid many safety and manufacturing challenges of traditional live-attenuated vaccines. We demonstrate this technology through development and testing of a live-attenuated RNA hybrid vaccine against Chikungunya virus (CHIKV), comprised of an in vitro-transcribed, highly attenuated CHIKV genome delivered by a highly stable nanostructured lipid carrier (NLC) formulation as an intramuscular injection. We demonstrate that single-dose immunization of immunocompetent C57BL/6 mice results in induction of high CHIKV-neutralizing antibody titers and protection against mortality and footpad swelling after lethal CHIKV challenge.

SUBMITTER: Voigt EA 

PROVIDER: S-EPMC8417506 | biostudies-literature | 2021 Sep

REPOSITORIES: biostudies-literature

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Live-attenuated RNA hybrid vaccine technology provides single-dose protection against Chikungunya virus.

Voigt Emily A EA   Fuerte-Stone Jasmine J   Granger Brian B   Archer Jacob J   Van Hoeven Neal N  

Molecular therapy : the journal of the American Society of Gene Therapy 20210529 9


We present a live-attenuated RNA hybrid vaccine technology that uses an RNA vaccine delivery vehicle to deliver in vitro-transcribed, full-length, live-attenuated viral genomes to the site of vaccination. This technology allows ready manufacturing in a cell-free environment, regardless of viral attenuation level, and it promises to avoid many safety and manufacturing challenges of traditional live-attenuated vaccines. We demonstrate this technology through development and testing of a live-atten  ...[more]

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