4.7 Article

Annexin A1 mimetic peptide controls the inflammatory and fibrotic effects of silica particles in mice

Journal

BRITISH JOURNAL OF PHARMACOLOGY
Volume 172, Issue 12, Pages 3058-3071

Publisher

WILEY
DOI: 10.1111/bph.13109

Keywords

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Funding

  1. Conselho Nacional de Desenvolvimento Cientifico e Tecnologico [CNPq- 476470/2009-9]
  2. Fundacao Carlos Chagas de Apoio a Pesquisa do Estado do Rio de Janeiro [FAPERJ- E-26/110.314/2010, E-26/102.853/2012]
  3. European Community [HEALTH-F4-2011-281608]
  4. CNPq
  5. CNPq/FIOCRUZ
  6. FAPERJ/CAPES

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Background and PurposeEndogenous glucocorticoids are pro-resolving mediators, an example of which is the endogenous glucocorticoid-regulated protein annexin A1 (ANXA1). Because silicosis is an occupational lung disease characterized by unabated inflammation and fibrosis, in this study we tested the therapeutic properties of the N-terminal ANXA1-derived peptide annexin 1-(2-26) (Ac2-26) on experimental silicosis. Experimental ApproachSwiss-Webster mice were administered silica particles intranasally and were subsequently treated with intranasal peptide Ac2-26 (200g per mouse) or dexamethasone (25g per mouse) for 7 days, starting 6h post-challenge. Ac2-26 abolished the leukocyte infiltration, collagen deposition, granuloma formation and generation of pro-inflammatory cytokines evoked by silica; these variables were only partially inhibited by dexamethasone. Key ResultsA clear exacerbation of the silica-induced pathological changes was observed in ANXA1 knockout mice as compared with their wild-type (WT) littermate controls. Incubation of lung fibroblasts from WT mice with Ac2-26 in vitro reduced IL-13 or TGF--induced production of CCL2 (MCP-1) and collagen, but this peptide did not affect the production of CCL2 (MCP-1) by stimulated fibroblasts from formyl peptide receptor type 1 (FPR1) knockout mice. Ac2-26 also inhibited the production of CCL2 (MCP-1) from fibroblasts of FPR2 knockout mice. Conclusions and ImplicationsCollectively, our findings reveal novel protective properties of the ANXA1 derived peptide Ac2-26 on the inflammatory and fibrotic responses induced by silica, and suggest that ANXA1 mimetic agents might be a promising strategy as innovative anti-fibrotic approaches for the treatment of silicosis.

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