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Generation of Immature, Mature and Tolerogenic Dendritic Cells with Differing Metabolic Phenotypes
Published on: June 22, 2016
Survival, maturation, and function of CD11c- and CD11c+ peripheral blood dendritic cells are differentially regulated
N Kohrgruber1, N Halanek, M Gröger
1Division of Immunology, Department of Dermatology, University of Vienna Medical School, Austria.
Insights
Two distinct dendritic cell (DC) types in human blood, CD11c- and CD11c+, exhibit differential responses to cytokines like IL-4 and GM-CSF, impacting immune responses.
Area of Science:
- Immunology
- Cell Biology
Background:
- Human blood contains two main dendritic cell (DC) types, distinguished by CD11c expression.
- These DC subsets possess unique surface antigen profiles and ultramorphology.
Purpose of the Study:
- To investigate the differential responses of CD11c- and CD11c+ peripheral blood DCs to cytokines.
- To elucidate the functional consequences of these differential responses on T cell priming.
Main Methods:
- Flow cytometry for surface antigen analysis.
- Cytokine treatment (IL-3, TNF-alpha, IL-4, GM-CSF) and viability assessment.
- Morphological and ultrastructural analysis.
- Antigen presentation assays to naive CD4+ T cells.
Main Results:
- CD11c- DCs require IL-3 for survival and TNF-alpha for maturation, exhibiting enhanced antigen presentation capabilities.
- IL-4 is cytotoxic to CD11c- DCs but promotes maturation of CD11c+ DCs with GM-CSF.
- Both DC subsets, upon maturation, can prime naive antigen-specific CD4+ T cells, with CD11c- DCs being more effective.
Conclusions:
- Two functionally diverse DC subsets in human blood respond differentially to T cell-derived cytokines.
- Differential cytokine responsiveness suggests a novel regulatory mechanism for immune responses by modulating DC subset activity.
Abstract:
Two types of dendritic cells (DC) are circulating in human blood and can be identified by their differential expression of the myeloid Ag CD11c. In this study, we show that CD11c- peripheral blood (PB)-DC correspond to plasmacytoid DC of lymphoid tissue not only by their surface Ag expression profile but, more impressively, by their peculiar ultramorphology. We also demonstrate that CD11c- and CD11c+ DC differ in the quality of their response to and in their requirement for certain cytokines. Freshly isolated CD11c- cells depend on IL-3 for survival and use autocrine or exogenous TNF-alpha as maturation signal, leading to the appearance of a highly dendritic phenotype, the up-regulation and redistribution of MHC class II from lysosomal compartments to the plasma membrane, the increased expression of costimulatory molecules, and the switch from a high Ag-processing to a low Ag-processing/potent accessory cell mode. Surprisingly, IL-4 efficiently killed freshly isolated CD11c- PB-DC, but did not impair the viability of CD11c+ PB-DC and, together with GM-CSF, induced maturation of these cells. A direct functional comparison revealed that neo-Ag-modified and subsequently matured CD11c- but to a lesser extent CD11c+ DC were able to prime naive Ag-specific CD4+ T cells. Our findings show that two diverse DC types respond to certain T cell-derived cytokines in a differential manner and, thus, suggest that suppression or activation of functionally diverse DC types may be a novel mechanism for the regulation of the quantity and quality of immune responses.
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