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Evaluation of Zika Virus-specific T-cell Responses in Immunoprivileged Organs of Infected Ifnar1-/- Mice
Published on: October 17, 2018
Systemic and Mucosal Immune Responses From Serotype-Switched Viral-Vectored Ebola Vaccines
Joshua Wiggins1,2, Adthakorn Madapong1,2, Eric Weaver1,2
1Nebraska Center for Virology, University of Nebraska-Lincoln, Lincoln, Nebraska, USA.
Abstract:
Ebola virus is a highly virulent pathogen causing severe hemorrhagic fever with 25%-90% mortality. The 2014 outbreak infected over 28,000 people, causing 11,325 deaths. Although there is one FDA-approved vaccine available for limited use, additional vaccines are needed. We developed adenoviral-vectored vaccines expressing the ebolavirus glycoprotein (GP), the sole viral surface protein and primary immunogen. Vaccine constructs spanned three species and five human adenovirus subtypes, including low-seroprevalent serotypes to minimize pre-existing immunity. We compared single-dose and prime-boost regimens, intramuscular versus needle-free intranasal delivery, and serotype-switching strategies. Immunogenicity was assessed by quantifying GP-specific antibodies and T cell responses in BALB/c mice. Species C vectors (Ad5 and Ad6) elicited strong antibody responses and promoted rapid class switching to IgG compared to species B and D vectors. Serotype-switched regimens further enhanced antibody levels via intramuscular or intranasal routes and generated robust T cell responses when delivered intramuscularly. Intranasal vaccination induced detectable IgA but no measurable T cell responses, indicating route-dependent immune compartmentalization. Sera partially inhibited viral entry in a dose-dependent manner, with the greatest reduction observed in the Ad5/Ad6 regimen. Collectively, adenoviral species selection, serotype switching, and route of administration significantly influence GP-specific immunity and warrant further evaluation in protective challenge models.
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