| Literature DB >> 24700466 |
Virginie Rabolli1, Laurent Wallemme1, Sandra Lo Re1, Francine Uwambayinema1, Mihaly Palmai-Pallag1, Leen Thomassen2, Donatienne Tyteca3, Jean-Noel Octave4, Etienne Marbaix3, Dominique Lison1, Olivier Devuyst5, François Huaux6.
Abstract
Rapid changes in cell volume characterize macrophage activation, but the role of water channels in inflammation remains unclear. We show here that, in vitro, aquaporin (AQP) blockade or deficiency results in reduced IL-1β release by macrophages activated with a variety of NLRP3 activators. Inhibition of AQP specifically during the regulatory volume decrease process is sufficient to limit IL-1β release by macrophages through the NLRP3 inflammasome axis. The immune-related activity of AQP was confirmed in vivo in a model of acute lung inflammation induced by crystals. AQP1 deficiency is associated with a marked reduction of both lung IL-1β release and neutrophilic inflammation. We conclude that AQP-mediated water transport in macrophages constitutes a general danger signal required for NLRP3-related inflammation. Our findings reveal a new function of AQP in the inflammatory process and suggest a novel therapeutic target for anti-inflammatory therapy.Entities:
Keywords: Aquaporin; Caspase; Cell Swelling; Inflammasome; Inflammation; Interleukin; RVD; Water Channel
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Year: 2014 PMID: 24700466 PMCID: PMC4022865 DOI: 10.1074/jbc.M113.534594
Source DB: PubMed Journal: J Biol Chem ISSN: 0021-9258 Impact factor: 5.157