Modulating the innate immune response to influenza A virus: Potential therapeutic use of anti-inflammatory drugs

Irene Ramos, Ana Fernandez-Sesma

Research output: Contribution to journalReview articlepeer-review

87 Scopus citations

Abstract

Infection by influenza A viruses (IAV) is frequently characterized by robust inflammation that is usually more pronounced in the case of avian influenza. It is becoming clearer that the morbidity and pathogenesis caused by IAV are consequences of this inflammatory response, with several components of the innate immune system acting as the main players. It has been postulated that using a therapeutic approach to limit the innate immune response in combination with antiviral drugs has the potential to diminish symptoms and tissue damage caused by IAV infection. Indeed, some anti-inflammatory agents have been shown to be effective in animal models in reducing IAV pathology as a proof of principle. The main challenge in developing such therapies is to selectively modulate signaling pathways that contribute to lung injury while maintaining the ability of the host cells to mount an antiviral response to control virus replication. However, the dissection of those pathways is very complex given the numerous components regulated by the same factors (i.e., NF kappa B transcription factors) and the large number of players involved in this regulation, some of which may be undescribed or unknown. This article provides a comprehensive review of the current knowledge regarding the innate immune responses associated with tissue damage by IAV infection, the understanding of which is essential for the development of effective immunomodulatory drugs. Furthermore, we summarize the recent advances on the development and evaluation of such drugs as well as the lessons learned from those studies.

Original languageEnglish
Article number361
JournalFrontiers in Immunology
Volume6
Issue numberJUL
DOIs
StatePublished - 2015

Keywords

  • ARDS
  • Anti-inflammatory therapy
  • Cytokines
  • Inflammation
  • Influenza virus
  • Innate immunity

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