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April 26, 2026Nature Immunology2 citationsOpen Access

A spatially coordinated keratinocyte–fibroblast circuit recruits MMP9⁺ myeloid cells to drive type I interferon-driven inflammation in photosensitive autoimmunity

YWYuqing WangKAKhashayar AfshariNHNazgol-Sadat Haddadi

Key Points

  • This research aims to elucidate the mechanisms of UVB-induced photosensitivity in cutaneous autoimmune conditions and identify key cell types involved.
  • Utilized single-cell RNA sequencing and spatial transcriptomics to analyze lesional skin samples.
  • Employed proteomics, UVB provocation, and in vitro models to study cellular responses.
  • Conducted a clinical proof-of-concept trial using anti-type I interferon treatment with anifrolumab.
  • MMP9⁺CD14⁺ myeloid cells significantly expanded in lesional skin, producing interferon-β (IFNβ) and colocalizing with CD4⁺ T cells.
  • UVB exposure induced rapid recruitment of MMP9⁺CD14⁺ cells in non-lesional skin of patients with DM.
  • Anifrolumab treatment prevented UVB-induced myeloid cell infiltration, suggesting a therapeutic approach.

Abstract

Photosensitivity is central to cutaneous lupus erythematosus and dermatomyositis (DM), but the mechanisms linking UVB exposure to tissue-specific autoimmunity are poorly defined. Using single-cell RNA sequencing, spatial transcriptomics, proteomics, UVB provocation and in vitro modeling, we identify MMP9⁺CD14⁺ myeloid cells as critical mediators of photosensitivity. These cells expand significantly in lesional skin, produce interferon-β (IFNβ) and colocalize with cytotoxic CD4⁺ T cells at the dermal–epidermal junction. Keratinocytes activate fibroblasts in the superficial dermis, prompting them to release chemokines (CCL2, CCL19, CCL7, CCL8) that recruit MMP9⁺CD14⁺ cells. In vitro, type I interferon-primed keratinocytes exposed to UVB release cytokines activating dendritic cells, mirroring in vivo responses. UVB irradiation of non-lesional skin of patients with DM rapidly recruits these myeloid cells. In a clinical proof-of-concept study, anti-type I interferon treatment with anifrolumab prevented UVB-induced myeloid infiltration and reduced photosensitivity. Therefore, targeting MMP9⁺CD14⁺ cells may offer therapeutic potential for managing photosensitive autoimmune skin conditions. Wang, Afshari, Haddadi and colleagues compare UVB-sensitive and insensitive human skin diseases and show that photosensitive conditions, including cutaneous lupus erythematosus and dermatomyositis, have increased type I interferon activity and an expanded MMP9⁺CD14⁺ myeloid population that drives inflammation.

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Cite This Study

Wang et al. (2026) studied this question.

synapsesocial.com/papers/69edadba4a46254e215b5456https://doi.org/10.1038/s41590-026-02502-w
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