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Expression and Purification of Virus-like Particles for Vaccination
Published on: June 2, 2016
Comparative Efficacy of Mayaro Virus-Like Particle Vaccines Produced in Insect or Mammalian Cells
Sandra R Abbo1, Wilson Nguyen2, Marleen H C Abma-Henkens1
1Laboratory of Virology, Wageningen University & Research, Wageningen, the Netherlands.
Abstract:
Mayaro virus (MAYV) is a mosquito-transmitted alphavirus that causes often debilitating rheumatic disease in tropical Central and South America. There are currently no licensed vaccines or antiviral drugs available for MAYV disease. Here, we generated Mayaro virus-like particles (VLPs) using the scalable baculovirus-insect cell expression system. High-level secretion of MAYV VLPs in the culture fluid of Sf9 insect cells was achieved, and particles with a diameter of 64 to 70 nm were obtained after purification. We characterize a C57BL/6J adult wild-type mouse model of MAYV infection and disease and used this model to compare the immunogenicity of VLPs from insect cells with that of VLPs produced in mammalian cells. Mice received two intramuscular immunizations with 1 μg of nonadjuvanted MAYV VLPs. Potent neutralizing antibody responses were generated against the vaccine strain, BeH407, with comparable activity seen against a contemporary 2018 isolate from Brazil (BR-18), whereas neutralizing activity against chikungunya virus was marginal. Sequencing of BR-18 illustrated that this virus segregates with genotype D isolates, whereas MAYV BeH407 belongs to genotype L. The mammalian cell-derived VLPs induced higher mean neutralizing antibody titers than those produced in insect cells. Both VLP vaccines completely protected adult wild-type mice against viremia, myositis, tendonitis, and joint inflammation after MAYV challenge. IMPORTANCE Mayaro virus (MAYV) is associated with acute rheumatic disease that can be debilitating and can evolve into months of chronic arthralgia. MAYV is believed to have the potential to emerge as a tropical public health threat, especially if it develops the ability to be efficiently transmitted by urban mosquito vectors, such as Aedes aegypti and/or Aedes albopictus. Here, we describe a scalable virus-like particle vaccine against MAYV that induced neutralizing antibodies against a historical and a contemporary isolate of MAYV and protected mice against infection and disease, providing a potential new intervention for MAYV epidemic preparedness.
Insights
A new Mayaro virus (MAYV) vaccine using virus-like particles (VLPs) shows promise. This VLP vaccine generated potent neutralizing antibodies and protected mice against MAYV infection and associated rheumatic disease.
Area of Science:
- Virology
- Immunology
- Vaccine Development
Background:
- Mayaro virus (MAYV) causes debilitating rheumatic disease in tropical regions.
- No licensed vaccines or antiviral drugs are currently available for MAYV disease.
- MAYV poses a potential public health threat due to possible adaptation to urban vectors.
Purpose of the Study:
- To develop and evaluate a scalable virus-like particle (VLP) vaccine for Mayaro virus (MAYV).
- To compare the immunogenicity of MAYV VLPs produced in insect cells versus mammalian cells.
- To assess the protective efficacy of MAYV VLPs in a mouse model of infection and disease.
Main Methods:
- Generated Mayaro virus-like particles (VLPs) using a baculovirus-insect cell expression system.
- Characterized MAYV VLPs and purified them from culture fluid.
- Immunized C57BL/6J mice with MAYV VLPs and challenged them with MAYV to assess immune response and protection.
Main Results:
- High-level secretion and purification of MAYV VLPs (64-70 nm) were achieved.
- MAYV VLPs induced potent neutralizing antibody responses against historical and contemporary MAYV isolates.
- Both insect cell- and mammalian cell-derived VLPs provided complete protection against MAYV-induced viremia, myositis, tendonitis, and joint inflammation in mice.
Conclusions:
- A scalable MAYV VLP vaccine candidate has been developed.
- The VLP vaccine elicits robust neutralizing antibody responses and confers complete protection against MAYV infection and disease in a mouse model.
- This VLP vaccine represents a potential intervention for Mayaro virus epidemic preparedness.

