4.6 Article

Activated NKT Cells Can Condition Different Splenic Dendritic Cell Subsets To Respond More Effectively to TLR Engagement and Enhance Cross-Priming

期刊

JOURNAL OF IMMUNOLOGY
卷 195, 期 3, 页码 821-831

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AMER ASSOC IMMUNOLOGISTS
DOI: 10.4049/jimmunol.1401751

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资金

  1. New Zealand Health Research Council Project Grant [09/105D]
  2. National Medical Research Council Grant [NMMR/1253/2010]
  3. Cancer Society of New Zealand Training Scholarship
  4. New Zealand Health Research Council Sir Charles Hercus Fellowship

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The function of dendritic cells (DCs) can be modulated through multiple signals, including recognition of pathogen-associated molecular patterns, as well as signals provided by rapidly activated leukocytes in the local environment, such as innate-like T cells. In this article, we addressed the possibility that the roles of different murine DC subsets in cross-priming CD8(+) T cells can change with the nature and timing of activatory stimuli. We show that CD8 alpha(+) DCs play a critical role in cross-priming CD8(+) T cell responses to circulating proteins that enter the spleen in close temporal association with ligands for TLRs and/or compounds that activate NKT cells. However, if NKT cells are activated first, then CD8 alpha(-) DCs become conditioned to respond more vigorously to TLR ligation, and if triggered directly, these cells can also contribute to priming of CD8(+) T cell responses. In fact, the initial activation of NKT cells can condition multiple DC subsets to respond more effectively to TLR ligation, with plasmacytoid DCs making more IFN-alpha and both CD8 alpha(+) and CD8 alpha(-) DCs manufacturing more IL-12. These results suggest that different DC subsets can contribute to T cell priming if provided appropriately phased activatory stimuli, an observation that could be factored into the design of more effective vaccines.

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