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Divergent granulopoiesis at extramedullary sites safeguards antibacterial host defense

  • Carlos Silvestre-Roig* (First Author)
  • , Raphael Chevre
  • , Merieme Farjia
  • , Alexander Bender
  • , Lina M. Vöcking
  • , Mathis Richter
  • , Ali Hageb
  • , Vincent Suerdieck
  • , Francisco J. Arenas Cerro
  • , Quinte Braster
  • , Mauricio Guzman
  • , Jordi Sintes
  • , Samriti Sharma
  • , Patricia Lemnitzer
  • , Claudia Tulotta
  • , Yvonne Börgeling
  • , Andrea Herrero-Cervera
  • , Hannah Flueter
  • , Sara Noemi Reinartz Groba
  • , David Ahern
  • Collins Osei-Sarpong, Ralf Zimmer, Noelia Alonso-Gonzalez, Eduardo Ortega, Stefan Lienenklaus, Ulrich Kalinke, Stephan Ludwig, Daniel R. Engel, Frank Rosenbauer, Claudia Monaco, Petra Dersch, Artur Kibler, Andrea Cerutti, Triantafyllos Chavakis, Rui Benedito, Andres Hidalgo, Jadwiga Jablonska, Miguel Palomino-Segura, Oliver Soehnlein* (Last Author)
*Corresponding author for this work
  • University of Münster
  • University of Extremadura
  • Biolegend
  • Hospital del Mar
  • Roche Diagnostics
  • Charité
  • Kennedy Institute of Rheumatology
  • Ludwig Maximilian University of Munich
  • Hannover Medical School
  • University Hospital Essen
  • Catalan Institution for Research and Advanced Studies
  • University Palliative Center
  • Centro Nacional de Investigaciones Cardiovasculares
  • Max Planck Institute for Molecular Biomedicine
  • Yale University

Research output: Contribution to journalArticlepeer-review

1 Scopus citations

Abstract

Extramedullary organs such as the spleen can assume granulopoiesis as a supportive mechanism to cope with increased demands during persistent inflammation. However, the quantitative output of extramedullary granulopoiesis is limited, and whether the spleen provides neutrophils of a qualitative difference remains unclear. Here, we found that splenic stress granulopoiesis is associated with distinct neutrophil production and differentiation trajectories. Myeloid progenitors in the spleen engaged in accelerated production of neutrophils with an immature phenotype. Yet, neutrophils generated during persistent stress granulopoiesis were fully competent to exert antimicrobial functions and were necessary to contain bacterial invasion in the bladder. Activation of type I interferon signaling in the spleen was required for splenic neutrophil priming, and its loss impaired antibacterial host defense. Thus, the spleen provides an immunological environment for stress-induced rapid production and priming of highly active neutrophils to meet demands during infection.

Original languageEnglish
Article numbereadw7077
JournalScience Immunology
Volume11
Issue number118
DOIs
StatePublished - 1 Apr 2026

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