bioRxiv · 10.1101/2020.02.12.941369
The human small intestine comprises two subsets of regulatory Foxp3+ CD4 T cells with very different life span and functional properties.
Abstract
BackgroundRegulatory CD4 T cells (Tregs) in the mice gut are mainly specific for intestinal antigens and play an important role in the suppression of immune responses against harmless dietary antigens and members of the microbiota. However, information about the phenotype and function of Tregs in the human gut is limited. ObjectiveHere, we performed a detailed characterization of Foxp3+ CD4 Tregs in the human small intestine. MethodsTregs and conventional CD4 T cells derived from normal intestine as well as from transplanted duodenum and celiac disease lesions were subjected to extensive immunophenotyping and their suppressive activity and ability to produce cytokines were assessed. ResultsSmall intestinal Foxp3+ CD4 T cells were CD45RA- CD127- CTLA4+ and suppressed proliferation of autologous T cells. Approximately 60% of the Tregs expressed the transcription factor Helios. When stimulated, Helios- Tregs produced IL-17, IFN-{gamma} and IL-10, whereas Helios+ Tregs produced very low levels of these cytokines. By sampling mucosal tissue from transplanted human duodenum we demonstrated that donor Helios+ Tregs have a short life span whereas Helios- Tregs persisted for at least 1 year post-transplantation. In normal small intestine, Foxp3+ Tregs constituted only 2% of all CD4 T cells, while in active celiac disease both subsets expanded 5-10-fold. ConclusionThe small intestine contains two subsets of Tregs with different functional capacities and very different life span. Both subsets are scarce in the normal situation but increase dramatically in a chronic inflammatory setting.
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Chauhan, S. K., Casado, R. B., Landsverk, O. J. B., Jahnsen, J., Horneland, R., Yaqub, S., Aandahl, E. M., Lundin, K. E. A., Baekkevold, E. S., Jahnsen, F. L.. 2020-02-12. The human small intestine comprises two subsets of regulatory Foxp3+ CD4 T cells with very different life span and functional properties.. https://doi.org/10.1101/2020.02.12.941369
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