0000000001054291

AUTHOR

Daniel J. Cua

showing 1 related works from this author

IL-23-mediated mononuclear phagocyte crosstalk protects mice from Citrobacter rodentium-induced colon immunopathology.

2014

Gut homeostasis and mucosal immune defense rely on the differential contributions of dendritic cells (DC) and macrophages. Here we show that colonic CX3CR1+ mononuclear phagocytes are critical inducers of the innate response to Citrobacter rodentium infection. Specifically, the absence of IL-23 expression in macrophages or CD11b+ DC results in the impairment of IL-22 production and in acute lethality. Highlighting immunopathology as a death cause, infected animals are rescued by the neutralization of IL-12 or IFNγ. Moreover, mice are also protected when the CD103+ CD11b− DC compartment is rendered deficient for IL-12 production. We show that IL-12 production by colonic CD103+ CD11b− DC is r…

ChemokineColonCX3C Chemokine Receptor 1General Physics and Astronomychemical and pharmacologic phenomenaMice TransgenicInterleukin-23General Biochemistry Genetics and Molecular BiologyMonocytesArticleMicrobiologyInterferon-gammaMiceIntestinal mucosaAntigens CDImmunopathologyCitrobacter rodentiummedicineAnimalsHomeostasisInterferon gammaIntestinal MucosaImmunity MucosalMultidisciplinaryCD11b AntigenbiologyInterleukinsMacrophagesEnterobacteriaceae InfectionsGeneral ChemistryMononuclear phagocyte systemDendritic CellsInterleukin-12Survival AnalysisImmunity InnateIntegrin alpha MGene Expression RegulationImmunologyInterleukin 12biology.proteinCitrobacter rodentiumTh17 CellsReceptors ChemokineIntegrin alpha Chainsmedicine.drugSignal TransductionNature communications
researchProduct