
ABSTRACT We previously reported that mice lacking alpha/beta and gamma interferon receptors (IFN-α/βR and -γR) uniformly exhibit paralysis following infection with the dengue virus (DENV) clinical isolate PL046, while only a subset of mice lacking the IFN-γR alone and virtually no mice lacking the IFN-α/βR alone develop paralysis. Here, using a mouse-passaged variant of PL046, strain S221, we show that in the absence of the IFN-α/βR, signaling through the IFN-γR confers approximately 140-fold greater resistance against systemic vascular leakage-associated dengue disease and virtually complete protection from dengue-induced paralysis. Viral replication in the spleen was assessed by immunohistochemistry and flow cytometry, which revealed a reduction in the number of infected cells due to IFN-γR signaling by 2 days after infection, coincident with elevated levels of IFN-γ in the spleen and serum. By 4 days after infection, IFN-γR signaling was found to restrict DENV replication systemically. Clearance of DENV, on the other hand, occurred in the absence of IFN-γR, except in the central nervous system (CNS) (brain and spinal cord), where clearance relied on IFN-γ from CD8 + T cells. These results demonstrate the roles of IFN-γR signaling in protection from initial systemic and subsequent CNS disease following DENV infection and demonstrate the importance of CD8 + T cells in preventing DENV-induced CNS disease.
Central Nervous System, Analysis of Variance, Enzyme-Linked Immunosorbent Assay, Receptor, Interferon alpha-beta, CD8-Positive T-Lymphocytes, Dengue Virus, Flow Cytometry, Real-Time Polymerase Chain Reaction, Adoptive Transfer, Immunohistochemistry, Mice, Mutant Strains, Cell Line, Dengue, Interferon-gamma, Mice, Animals, Paralysis, Regression Analysis, Disease Susceptibility, Receptors, Interferon
Central Nervous System, Analysis of Variance, Enzyme-Linked Immunosorbent Assay, Receptor, Interferon alpha-beta, CD8-Positive T-Lymphocytes, Dengue Virus, Flow Cytometry, Real-Time Polymerase Chain Reaction, Adoptive Transfer, Immunohistochemistry, Mice, Mutant Strains, Cell Line, Dengue, Interferon-gamma, Mice, Animals, Paralysis, Regression Analysis, Disease Susceptibility, Receptors, Interferon
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