4.8 Article

A Lassa virus mRNA vaccine confers protection but does not require neutralizing antibody in a guinea pig model of infection

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NATURE COMMUNICATIONS
卷 14, 期 1, 页码 -

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NATURE PORTFOLIO
DOI: 10.1038/s41467-023-41376-6

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The study presents an mRNA-based Lassa virus vaccine that provides protection against lethal infection in a guinea pig model without the need for neutralizing antibodies. Vaccination induced strong binding antibody responses and demonstrated the potential of mRNA vaccines as a platform against Lassa virus.
Lassa virus is a member of the Arenaviridae family, which causes human infections ranging from asymptomatic to severe hemorrhagic disease with a high case fatality rate. We have designed and generated lipid nanoparticle encapsulated, modified mRNA vaccines that encode for the wild-type Lassa virus strain Josiah glycoprotein complex or the prefusion stabilized conformation of the Lassa virus glycoprotein complex. Hartley guinea pigs were vaccinated with two 10 & mu;g doses, 28 days apart, of either construct. Vaccination induced strong binding antibody responses, specific to the prefusion conformation of glycoprotein complex, which were significantly higher in the prefusion stabilized glycoprotein complex construct group and displayed strong Fc-mediated effects. However, Lassa virus-neutralizing antibody activity was detected in some but not all animals. Following the challenge with a lethal dose of the Lassa virus, all vaccinated animals were protected from death and severe disease. Although the definitive mechanism of protection is still unknown, and assessment of the cell-mediated immune response was not investigated in this study, these data demonstrate the promise of mRNA as a vaccine platform against the Lassa virus and that protection against Lassa virus can be achieved in the absence of virus-neutralizing antibodies. Lassa virus infections in humans can result in severe disease, including hemorrhagic fever. Here the authors describe an mRNA-based Lassa virus vaccine that shows protection without requirement for neutralizing antibody in a guinea pig model of infection.

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