4.8 Article

Epithelial HMGB1 Delays Skin Wound Healing and Drives Tumor Initiation by Priming Neutrophils for NET Formation

Journal

CELL REPORTS
Volume 29, Issue 9, Pages 2689-2701

Publisher

CELL PRESS
DOI: 10.1016/j.celrep.2019.10.104

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Funding

  1. FWO postdoctoral fellowship
  2. FWO FR fellowship
  3. FWO
  4. Concerted Research Actions (GOA) of Ghent University
  5. Geneeskundige Stichting Koningin Elisabeth (GSKE)
  6. Stichting tegen Kanker
  7. CBC Banque prize
  8. Charcot Foundation
  9. Belgian Foundation against Cancer
  10. Kom op tegen Kanker
  11. German Research Foundation (DFG) [MA 7770/1-1]
  12. Methusalem grant [BOF16/MET_V/007]
  13. Stichting tegen Kanker [FAF-F/2016/868]
  14. FONDECYT [1181093]
  15. Odysseus grant
  16. ERC

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Regenerative responses predispose tissues to tumor formation by largely unknown mechanisms. High-mobility group box 1 (HMGB1) is a danger-associated molecular pattern contributing to inflammatory pathologies. We show that HMGB1 derived from keratinocytes, but not myeloid cells, delays cutaneous wound healing and drives tumor formation. In wounds of mice lacking HMGB1 selectively in keratinocytes, a marked reduction in neutrophil extracellular trap (NET) formation is observed. Pharmacological targeting of HMGB1 or NETs prevents skin tumorigenesis and accelerates wound regeneration. HMGB1-dependent NET formation and skin tumorigenesis is orchestrated by tumor necrosis factor (TNF) and requires RIPK1 kinase activity. NETs are present in the microenvironment of keratinocyte-derived tumors in mice and lesional and tumor skin of patients suffering from recessive dystrophic epidermolysis bullosa, a disease in which skin blistering predisposes to tumorigenesis. We conclude that tumorigenicity of the wound microenvironment depends on epithelial-derived HMGB1 regulating NET formation, thereby establishing a mechanism linking reparative inflammation to tumor initiation.

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