T cells exercise their full impact on target cells through a combination of secreted cytokines. The recently described T helper cell subset Th22 is characterized by a combinatorial secretion of IL-22 and TNF-?. Here, we demonstrate that IL-22 increases the TNF-?-dependent induction and secretion of several immune-modulatory molecules such as initial complement factors C1r and C1s, antimicrobial peptides S100A7 and HBD-2 (human ? defensin 2), and antimicrobial chemokines CXCL-9/-10/-11 in primary human keratinocytes. The synergism of IL-22 and TNF-? is transmitted intracellularly by MAP kinases and downstream by transcription factors of the AP-1 family. The induction of innate immunity is relevant in an in vitro infection model, where keratinocytes stimulated with Th22 supernatants or recombinant IL-22 plus TNF-? effectively inhibit the growth of Candida albicans and maintain survival of epithelia. Accordingly, the combinatorial stimulation of keratinocytes with IL-22 and TNF-? most efficiently conserves the integrity of the epidermal barrier in a three-dimensional skin infection model as compared with IFN-?, IL-17, IL-22 or TNF-? alone. In summary, we demonstrate that IL-22 and TNF-? represent a potent, synergistic cytokine combination for cutaneous immunity.
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T cells exercise their full impact on target cells through a combination of secreted cytokines. The recently described T helper cell subset Th22 is characterized by a combinatorial secretion of IL-22 and TNF-?. Here, we demonstrate that IL-22 increases the TNF-?-dependent induction and secretion of several immune-modulatory molecules such as initial complement factors C1r and C1s, antimicrobial peptides S100A7 and HBD-2 (human ? defensin 2), and antimicrobial chemokines CXCL-9/-10/-11 in primary...
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