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RESEARCH PRODUCT
Interruption of Macrophage-Derived IL-27(p28) Production by IL-10 during Sepsis Requires STAT3 but Not SOCS3
Nico Van RooijenMathias MüllerJulian RoeweBirgit StroblMarkus P. RadsakMarkus BosmannGabriel NúñezLiza BalouzianJ. Vidya SarmaPeter A. WardFiras S. ZetouneNorman F. RusskampPeter J. MurrayFlorence Pachesubject
MaleSTAT3 Transcription Factormedicine.medical_treatmentImmunologySuppressor of Cytokine Signaling ProteinsInflammationSpleenBiologyArticleSepsisMiceSepsismedicineAnimalsHumansImmunology and AllergyReceptors CytokineAntibodies BlockingCecumCells CulturedMice KnockoutSeptic shockInterleukinsMacrophagesReceptors Interleukinmedicine.diseaseBacterial LoadInterleukin-10Mice Inbred C57BLToll-Like Receptor 4Adaptor Proteins Vesicular TransportDisease Models AnimalOxidative StressInterleukin 10Cytokinemedicine.anatomical_structureIntegrin alpha MSuppressor of Cytokine Signaling 3 ProteinMyeloid Differentiation Factor 88ImmunologyTLR4biology.proteinmedicine.symptomdescription
Abstract Severe sepsis and septic shock are leading causes of morbidity and mortality worldwide. Infection-associated inflammation promotes the development and progression of adverse outcomes in sepsis. The effects of heterodimeric IL-27 (p28/EBI3) have been implicated in the natural course of sepsis, whereas the molecular mechanisms underlying the regulation of gene expression and release of IL-27 in sepsis are poorly understood. We studied the events regulating the p28 subunit of IL-27 in endotoxic shock and polymicrobial sepsis following cecal ligation and puncture. Neutralizing Abs to IL-27(p28) improved survival rates, restricted cytokine release, and reduced bacterial burden in C57BL/6 mice during sepsis. Genetic disruption of IL-27 signaling enhanced the respiratory burst of macrophages. Experiments using splenectomized mice or treatment with clodronate liposomes suggested that macrophages in the spleen may be a significant source of IL-27(p28) during sepsis. In cultures of TLR4-activated macrophages, the frequency of F4/80+CD11b+IL-27(p28)+ cells was reduced by the addition of IL-10. IL-10 antagonized both MyD88-dependent and TRIF-dependent release of IL-27(p28). Genetic deletion of STAT3 in Tie2-Cre/STAT3flox macrophages completely interrupted the inhibition of IL-27(p28) by IL-10 after TLR4 activation. In contrast, IL-10 remained fully active to suppress IL-27(p28) with deletion of SOCS3 in Tie2-Cre/SOCS3flox macrophages. Blockade of IL-10R by Ab or genetic deficiency of IL-10 resulted in 3–5-fold higher concentrations of IL-27(p28) in endotoxic shock and polymicrobial sepsis. Our studies identify IL-10 as a critical suppressing factor for IL-27(p28) production during infection-associated inflammation. These findings may be helpful for a beneficial manipulation of adverse IL-27(p28) release during sepsis.
year | journal | country | edition | language |
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2014-01-01 | Journal of Immunology |