4.6 Article

Pharmacologic Activation of the Innate Immune System to Prevent Respiratory Viral Infections

出版社

AMER THORACIC SOC
DOI: 10.1165/rcmb.2010-0288OC

关键词

innate immunity; interferon; influenza; pneumonia; bronchial epithelium

资金

  1. NCI [PO1 CA 66726 abd 5-T32 HL07748]
  2. Bionorica
  3. Entent Care Inc.
  4. NeilMed Pharmaceuticals
  5. Biogen Idec
  6. Centocor
  7. Astra-Zeneca
  8. GlaxoSmithKline

向作者/读者索取更多资源

Drugs that can rapidly inhibit respiratory infection from influenza or other respiratory pathogens are needed. One approach is to engage primary innate immune defenses against viral infection, such as activating the IFN pathway. In this study, we report that a small, cell-permeable compoundcalled 5,6-di-methylxanthenone-4-acetic acid (DMXAA) can induce protection against vesicular stomatitis virus in vitro and H1N1 influenza A virus in vitro and in vivo through innate immuneactivation. Using the mouse C10 bronchial epithelial cell line and primary cultures of nasal epithelial cells, we demonstrate DMXAA activates the IFN regulatory factor-3 pathway leading to production of IFN-beta and subsequent high-level induction of IFN-beta-dependent proteins, such as myxovirus resistance 1 (Mx1) and 2',5'-oligoadenylate synthetase 1 (OAS1). Mice treated with DMXAA intranasally elevate mRNA/protein expression of Mx1 and OAS1 in the nasal mucosa, trachea, and lung. When challenged intranasally with a lethal dose of H1N1 influenza A virus, DMXAA reduced viral titers in the lungs and protected 80% of mice from death, even when given at 24 hours before infection. These data show that agents, like DMXAA, that can directly activate innate immune pathways, such as the IFN regulatory factor-3/IFN-beta system, in respiratory epithelial cells can be used to protect from influenza pneumonia and potentially in other respiratory viral infections. Development of this approach in humans could be valuable for protecting health care professionals and first responders in the early stages of viral pandemics or bioterror attacks.

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