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PMID: 26627732 Published · epublish English

Loss of CARD9-mediated innate activation attenuates severe influenza pneumonia without compromising host viral immunity.

Scientific reports ·Vol. 5 ·2016-09-28

Uematsu Takayuki, Iizasa Ei'ichi, Kobayashi Noritada, Yoshida Hiroki, Hara Hiromitsu

Abstract

Influenza virus (IFV) infection is a common cause of severe viral pneumonia associated with acute respiratory distress syndrome (ARDS), which is difficult to control with general immunosuppressive therapy including corticosteroids due to the unfavorable effect on viral replication. Studies have suggested that the excessive activation of the innate immunity by IFV is responsible for severe pathologies. In this study, we focused on CARD9, a signaling adaptor known to regulate innate immune activation through multiple innate sensor proteins, and investigated its role in anti-IFV defense and lung pathogenesis in a mouse model recapitulating severe influenza pneumonia with ARDS. We found that influenza pneumonia was dramatically attenuated in Card9-deficient mice, which showed improved mortality with reduced inflammatory cytokines and chemokines in the infected lungs. However, viral clearance, type-I interferon production, and the development of anti-viral B and T cell immunity were not compromised by CARD9 deficiency. Syk or CARD9-deficient DCs but not macrophages showed impaired cytokine but not type-I interferon production in response to IFV in vitro, indicating a possible role for the Syk-CARD9 pathway in DCs in excessive inflammation of IFV-infected lungs. Therefore, inhibition of this pathway is an ideal therapeutic target for severe influenza pneumonia without affecting viral clearance.

Article Info
Journal
Scientific reports
Abbr.
Sci Rep
Published
2016-09-28
Indexed
2015-12-02
Updated
2016-11-26
Language
English
Country/Region
England
NLM ID
101563288
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