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Expression and Purification of Virus-like Particles for Vaccination
Published on: June 2, 2016
Comparison of Vaccine Platforms for Machupo Virus
Rachel Erickson1, Hiromi Muramatsu1, Sachchidanand Tiwari1
1Department of Microbiology, Perelman School of Medicine, University of Pennsylvania, Philadelphia, PA 19104, USA.
Background/Objectives:
Pathogenic mammarenaviruses cause severe hemorrhagic and neurologic disease in humans. Machupo virus (MACV), a New World (NW) mammarenavirus, causes Bolivian hemorrhagic fever in humans, and there are no approved vaccines.
Methods:
Here, we describe and compare the immunogenicity of three vaccines expressing the MACV glycoprotein complex (GPC) in C57BL/6 mice: a recombinant vesicular stomatitis virus (rVSV) and two different lipid nanoparticle (LNP)-encapsulated nucleoside-modified mRNA (mRNA-LNP) vaccines. The first mRNA-LNP vaccine, designated MACV mRNA, expresses the full-length MACV GPC. The second mRNA-LNP vaccine, called MACV VLP mRNA, encodes MACV GPC with appended sequences that induce the budding of virus-like particles (VLPs) with MACV GPC on the surface. This is the first description of any mRNA-LNP vaccine for MACV and the first comparison of mRNA and rVSVs as vaccine candidates for MACV.
Results:
We find that two doses of either MACV mRNA or MACV VLP mRNA are required for the induction of robust humoral and cellular immune responses including total MACV GPC IgG, neutralizing antibodies, cross-reactive antibodies that bind the related Junín virus GPC, and MACV-specific T-cell responses. To further investigate vaccination strategies for MACV, we also evaluated a heterologous prime-boost regimen involving the MACV mRNA vaccine coupled with the rVSV-based MACV vaccine. We find that the highest levels of MACV GPC-specific IgG and neutralizing titers were achieved when heterologous mRNA and rVSV prime-boost regimens were employed.
Conclusions:
These results elucidate differences in the immune response to different vaccine platforms for MACV and can inform future vaccine development for NW arenaviruses.
Insights
Developing vaccines against Machupo virus (MACV) is crucial. This study compared mRNA and rVSV vaccine platforms, finding heterologous prime-boost strategies induced the strongest immune responses against this New World arenavirus.
Area of Science:
- Virology
- Immunology
- Vaccinology
Background:
- Pathogenic mammarenaviruses, including Machupo virus (MACV), cause severe human diseases like Bolivian hemorrhagic fever.
- There are currently no approved vaccines available for MACV, a significant New World arenavirus.
Purpose of the Study:
- To compare the immunogenicity of novel vaccine candidates for Machupo virus (MACV).
- To evaluate recombinant vesicular stomatitis virus (rVSV) and two distinct mRNA-LNP vaccine platforms expressing the MACV glycoprotein complex (GPC).
- To investigate the efficacy of heterologous prime-boost vaccination strategies for MACV.
Main Methods:
- Three vaccine candidates were tested in C57BL/6 mice: rVSV-GPC, full-length MACV mRNA-GPC, and MACV VLP mRNA-GPC.
- Immunogenicity was assessed by measuring humoral (IgG, neutralizing antibodies) and cellular (T-cell) responses.
- Heterologous prime-boost regimens combining mRNA and rVSV vaccines were evaluated.
Main Results:
- Two doses of either MACV mRNA or MACV VLP mRNA vaccine induced robust humoral and cellular immune responses.
- Cross-reactive antibodies targeting the related Junín virus GPC were observed.
- The highest levels of MACV GPC-specific IgG and neutralizing titers were achieved using a heterologous mRNA and rVSV prime-boost regimen.
Conclusions:
- Different vaccine platforms elicit distinct immune responses against MACV.
- Heterologous prime-boost vaccination strategies show promise for enhancing MACV vaccine efficacy.
- These findings can guide future vaccine development for New World arenaviruses.
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