T Cell-Dependence of Lassa Fever Pathogenesis
Author(s) -
Lukas Flatz,
Toni Rieger,
Doron Merkler,
Andreas Bergthaler,
Tommy Regen,
Mariann Schedensack,
Lukas Bestmann,
Admar Verschoor,
Mario Kreutzfeldt,
Wolfgang Brück,
UweKarsten Hanisch,
Stephan Günther,
Daniel D. Pinschewer
Publication year - 2010
Publication title -
plos pathogens
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 3.719
H-Index - 206
eISSN - 1553-7374
pISSN - 1553-7366
DOI - 10.1371/journal.ppat.1000836
Subject(s) - lassa fever , t cell , lassa virus , immunology , biology , pathogenesis , viremia , immune system , major histocompatibility complex , virology , macrophage , virus , biochemistry , in vitro
Lassa virus (LASV), the causative agent of Lassa fever (LF), is endemic in West Africa, accounting for substantial morbidity and mortality. In spite of ongoing research efforts, LF pathogenesis and mechanisms of LASV immune control remain poorly understood. While normal laboratory mice are resistant to LASV, we report that mice expressing humanized instead of murine MHC class I (MHC-I) failed to control LASV infection and develop severe LF. Infection of MHC-I knockout mice confirmed a key role for MHC-I-restricted T cell responses in controlling LASV. Intriguingly we found that T cell depletion in LASV-infected HHD mice prevented disease, irrespective of high-level viremia. Widespread activation of monocyte/macrophage lineage cells, manifest through inducible NO synthase expression, and elevated IL-12p40 serum levels indicated a systemic inflammatory condition. The absence of extensive monocyte/macrophage activation in T cell-depleted mice suggested that T cell responses contribute to deleterious innate inflammatory reactions and LF pathogenesis. Our observations in mice indicate a dual role for T cells, not only protecting from LASV, but also enhancing LF pathogenesis. The possibility of T cell-driven enhancement and immunopathogenesis should be given consideration in future LF vaccine development.
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