Studies into improved broadly reactive and protective vaccination strategies for high consequence Bunyaviruses
- Funded by Canadian Institutes of Health Research (CIHR)
- Total publications:0 publications
Grant number: 563949
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Key facts
Disease
Lassa Haemorrhagic Fever, Disease caused by Hantavirus (HPS)…Start & end year
2026Known Financial Commitments (USD)
$856,558.72Funder
Canadian Institutes of Health Research (CIHR)Principal Investigator
Bryce WarnerResearch Location
CanadaLead Research Institution
University of SaskatchewanResearch Priority Alignment
N/A
Research Category
Vaccines research, development and implementationResearch Subcategory
Vaccine design and administrationSpecial Interest Tags
N/AStudy Type
Non-ClinicalClinical Trial Details
N/ABroad Policy Alignment
PendingAge Group
Not ApplicableVulnerable Population
Not applicableOccupations of Interest
Not applicable
Abstract
Bunyaviruses represent a large group of viruses, many of which are zoonotic viruses that have important implications for human and animal health. Within this group are several families of viruses that contain high consequence viral species. Notable Bunyaviruses important for human disease include Lassa virus, South American Hemorrhagic fever-causing viruses, Crimean-Congo Hemorrhagic Fever virus, Rift Valley Fever virus, and Hantaviruses, among others. Viruses such as Cache Valley virus, Rift Valley Fever virus, and Schmallenberg virus are among the Bunyaviruses that can cause severe disease in animals, particularly in livestock species, with a large economic impact. For this project, we have three specific aims: 1) Compare immunogenicity of three current Hantavirus vaccine platforms we have developed in our lab; 2) Computationally design and optimize vaccine antigens for high-consequence Bunyaviruses including Andes virus and Sin Nombre virus (Hantaviruses) and different lineages of Lassa virus (Arenavirus) and to evaluate the immunogenicity of these newly optimized vaccine constructs; and 3) Evaluate the effectiveness of selected vaccine candidates in animal models of disease for each virus. Overall, our goal is to develop a streamlined approach to rapid vaccine development for emerging and re-emerging viruses from the class. Our approach will contribute to faster development of vaccines in the face of emerging pathogens and aid in a critical aspect of epidemic and pandemic preparedness.