Differential CD4 + versus CD8 + T-Cell Responses Elicited by Different Poxvirus-Based Human Immunodeficiency Virus Type 1 Vaccine Candidates Provide Comparable Efficacies in Primates

Author:

Mooij Petra1,Balla-Jhagjhoorsingh Sunita S.1,Koopman Gerrit1,Beenhakker Niels1,van Haaften Patricia1,Baak Ilona1,Nieuwenhuis Ivonne G.1,Kondova Ivanela1,Wagner Ralf2,Wolf Hans2,Gómez Carmen E.3,Nájera José L.3,Jiménez Victoria3,Esteban Mariano3,Heeney Jonathan L.14

Affiliation:

1. Department of Virology, Biomedical Primate Research Center, 2288 GJ Rijswijk, The Netherlands

2. Institut für Medizinische Mikrobiologie und Hygiene der Universität Regensburg 39053, Germany

3. Department of Cell and Molecular Biology, Centro Nacional de Biotecnologia, CSIC, Madrid 28049, Spain

4. the University of Cambridge, Department of Veterinary Medicine, Cambridge CB3 0ES, United Kingdom

Abstract

ABSTRACT Poxvirus vectors have proven to be highly effective for boosting immune responses in diverse vaccine settings. Recent reports reveal marked differences in the gene expression of human dendritic cells infected with two leading poxvirus-based human immunodeficiency virus (HIV) vaccine candidates, New York vaccinia virus (NYVAC) and modified vaccinia virus Ankara (MVA). To understand how complex genomic changes in these two vaccine vectors translate into antigen-specific systemic immune responses, we undertook a head-to-head vaccine immunogenicity and efficacy study in the pathogenic HIV type 1 (HIV-1) model of AIDS in Indian rhesus macaques. Differences in the immune responses in outbred animals were not distinguished by enzyme-linked immunospot assays, but differences were distinguished by multiparameter fluorescence-activated cell sorter analysis, revealing a difference between the number of animals with both CD4 + and CD8 + T-cell responses to vaccine inserts (MVA) and those that elicit a dominant CD4 + T-cell response (NYVAC). Remarkably, vector-induced differences in CD4 + /CD8 + T-cell immune responses persisted for more than a year after challenge and even accompanied antigenic modulation throughout the control of chronic infection. Importantly, strong preexposure HIV-1/simian immunodeficiency virus-specific CD4 + T-cell responses did not prove deleterious with respect to accelerated disease progression. In contrast, in this setting, animals with strong vaccine-induced polyfunctional CD4 + T-cell responses showed efficacies similar to those with stronger CD8 + T-cell responses.

Publisher

American Society for Microbiology

Subject

Virology,Insect Science,Immunology,Microbiology

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