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August 14, 2025Nature Immunology17 citationsOpen Access

TNF and type I interferon crosstalk controls the fate and function of plasmacytoid dendritic cells

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RHRebeca Arroyo HorneroRMRaúl Antonio Maqueda‐AlfaroMSMiguel A Solís-Barbosa

Key Points

  • Activated plasmacytoid dendritic cells can switch identity to conventional dendritic cells, which do not secrete type I interferon.
  • Single-cell omics revealed the mechanisms behind the pDC-to-cDC fate-switching process, characterized by changes in transcription and function.
  • The study demonstrates how tumor necrosis factor promotes this transition, while type I interferon inhibits it during inflammatory conditions.
  • This insight into dendritic cell reprogramming could facilitate new therapeutic strategies for managing inflammation and autoimmunity.

Abstract

Plasmacytoid dendritic cells (pDCs) are major producers of type I interferon (IFN-I), an important antiviral cytokine, and activity of these cells must be tightly controlled to prevent harmful inflammation and autoimmunity. Evidence exists that one regulatory mechanism is a fate-switching process from an IFN-I-secreting pDC to a professional antigen-presenting conventional dendritic cell (cDC) that lacks IFN-I-secreting capacity. However, this differentiation process is controversial owing to limitations in tracking the fate of individual cells over time. Here we use single-cell omics and functional experiments to show that activated human pDCs can lose their identity as IFN-I-secreting cells and acquire the transcriptional, epigenetic and functional features of cDCs. This pDC fate-switching process is promoted by tumor necrosis factor but blocked by IFN-I. Importantly, it occurs in vivo during human skin inflammatory diseases and injury, and physiologically in elderly people. This work identifies the pDC-to-cDC reprogramming trajectory and unveils a mechanistic framework for harnessing it therapeutically.

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Cite This Study

Hornero et al. (2025) studied this question.

synapsesocial.com/papers/68a3635e0a429f797332a6adhttps://doi.org/10.1038/s41590-025-02234-3
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