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IL-33 Augments Virus-Specific Memory T Cell Inflation and Potentiates the Efficacy of an Attenuated Cytomegalovirus-Based Vaccine
Author(s) -
James E. McLaren,
Mathew Clement,
Morgan Marsden,
Kelly L. Miners,
Sian LlewellynLacey,
Emma J. Grant,
Anzelika Rubina,
Silvia Gimeno Brias,
Emma Gostick,
Maria A. Stacey,
Selinda J. Orr,
Richard J. Stanton,
Kristin Ladell,
David A. Price,
Ian R. Humphreys
Publication year - 2019
Publication title -
the journal of immunology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.737
H-Index - 372
eISSN - 1550-6606
pISSN - 0022-1767
DOI - 10.4049/jimmunol.1701757
Subject(s) - adjuvant , immunogenicity , heterologous , virology , cytomegalovirus , immunology , biology , t cell , memory t cell , viral vector , effector , virus , immune system , recombinant dna , herpesviridae , gene , viral disease , biochemistry
Candidate vaccines designed to generate T cell-based immunity are typically vectored by nonpersistent viruses, which largely fail to elicit durable effector memory T cell responses. This limitation can be overcome using recombinant strains of CMV. Proof-of-principle studies have demonstrated the potential benefits of this approach, most notably in the SIV model, but safety concerns require the development of nonreplicating alternatives with comparable immunogenicity. In this study, we show that IL-33 promotes the accumulation and recall kinetics of circulating and tissue-resident memory T cells in mice infected with murine CMV. Using a replication-deficient murine CMV vector, we further show that exogenous IL-33 boosts vaccine-induced memory T cell responses, which protect against subsequent heterologous viral challenge. These data suggest that IL-33 could serve as a useful adjuvant to improve the efficacy of vaccines based on attenuated derivatives of CMV.

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