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Differential Roles of Dendritic Cells in Expanding CD4 T Cells in Sepsis.

Samuel DarkwahNodoka NagoMichael G AppiahPhyoe Kyawe MyintEiji KawamotoMotomu ShimaokaEun Jeong Park
Published in: Biomedicines (2019)
Sepsis is a systemically dysregulated inflammatory syndrome, in which dendritic cells (DCs) play a critical role in coordinating aberrant immunity. The aim of this study is to shed light on the differential roles played by systemic versus mucosal DCs in regulating immune responses in sepsis. We identified a differential impact of the systemic and mucosal DCs on proliferating allogenic CD4 T cells in a mouse model of sepsis. Despite the fact that the frequency of CD4 T cells was reduced in septic mice, septic mesenteric lymph node (MLN) DCs proved superior to septic spleen (SP) DCs in expanding allogeneic CD4 T cells. Moreover, septic MLN DCs markedly augmented the surface expression of MHC class II and CD40, as well as the messaging of interleukin-1β (IL-1β). Interestingly, IL-1β-treated CD4 T cells expanded in a dose-dependent manner, suggesting that this cytokine acts as a key mediator of MLN DCs in promoting septic inflammation. Thus, mucosal and systemic DCs were found to be functionally different in the way CD4 T cells respond during sepsis. Our study provides a molecular basis for DC activity, which can be differential in nature depending on location, whereby it induces septic inflammation or immune-paralysis.
Keyphrases
  • acute kidney injury
  • dendritic cells
  • immune response
  • septic shock
  • lymph node
  • intensive care unit
  • oxidative stress
  • mouse model
  • regulatory t cells
  • type diabetes
  • early stage
  • insulin resistance
  • high fat diet induced