Evolution of inflammation and immunity in a dengue virus 1 human infection model

Author:

Waickman Adam T.12ORCID,Lu Joseph Q.12,Fang HengSheng1ORCID,Waldran Mitchell J.1ORCID,Gebo Chad1,Currier Jeffrey R.3ORCID,Ware Lisa2ORCID,Van Wesenbeeck Liesbeth4ORCID,Verpoorten Nathalie4,Lenz Oliver4,Tambuyzer Lotke4ORCID,Herrera-Taracena Guillermo5,Van Loock Marnix4ORCID,Endy Timothy P.1ORCID,Thomas Stephen J.12ORCID

Affiliation:

1. Department of Microbiology and Immunology, State University of New York Upstate Medical University, Syracuse, NY 13210, USA.

2. Institute for Global Health and Translational Sciences, State University of New York Upstate Medical University, Syracuse, NY 13210, USA.

3. Viral Diseases Branch, Walter Reed Army Institute of Research, Silver Spring, MD 20910, USA.

4. Janssen Pharmaceutica, NV, Beerse, Belgium.

5. Janssen Global Public Health, Janssen Research and Development, Horsham, PA 19044, USA.

Abstract

Dengue virus (DENV) infections are major causes of morbidity and mortality throughout the tropics and subtropics. More than 400 million infections are estimated to occur every year, resulting in nearly 100 million symptomatic infections and more than 20,000 deaths. Early immune response kinetics to infection remain unclear, in large part due to the variable incubation period exhibited by the DENVs after introduction into a susceptible host. To fill this knowledge gap, we performed a comprehensive virologic and immunologic analysis of individuals experimentally infected with the underattenuated DENV-1 strain 45AZ5. This analysis captured both the kinetics and composition of the innate, humoral, and cellular immune responses elicited by experimental DENV-1 infection, as well as virologic and clinical features. We observed a robust DENV-specific immunoglobulin A (IgA) antibody response that manifested between the appearance of DENV-specific IgM and IgG in all challenged individuals, as well as the presence of a non-neutralizing/NS1-specific antibody response that was delayed relative to the appearance of DENV virion–specific humoral immunity. RNA sequencing analysis revealed discrete and temporally restricted gene modules that correlated with acute viremia and the induction of adaptive immunity. Our analysis provides a detailed description, in time and space, of the evolving matrix of DENV-elicited human inflammation and immunity and reveals several previously unappreciated immunological aspects of primary DENV-1 infection that can inform countermeasure development and evaluation.

Publisher

American Association for the Advancement of Science (AAAS)

Subject

General Medicine

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