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Neutrophil dysregulation differentiates pediatric septic shock biomarker-based mortality-risk strata: insights from weighted gene co-expression network and transcriptomic analyses

  • Leland Dunwoodie
  • , Min Huang
  • , Andrew R. Moore
  • , Natalja L. Stanski
  • , Stephen W. Standage
  • , Jennifer M. Kaplan
  • , Basilia Zingarelli
  • , Kelli Harmon
  • , Julie C. Fitzgerald
  • , Scott L. Weiss
  • , Michael T. Bigham
  • , Adam J. Schwarz
  • , Riad Lutfi
  • , Neal J. Thomas
  • , Bereketeab Haileselassie
  • , Parag N. Jain
  • , Timothy E. Sweeney
  • , Rishikesan Kamaleswaran
  • , Mihir R. Atreya
  • , Andrew J. Lautz
  • Cincinnati Children's Hospital Medical Center
  • Emory University
  • Stanford University
  • University of Cincinnati
  • The Children's Hospital of Philadelphia
  • Akron Children's Hospital
  • University of California at Irvine
  • Riley Hospital for Children
  • Pennsylvania State University
  • Lucile Packard Children’s Hospital/Stanford University School of Medicine
  • University of Texas Southwestern Medical Center
  • Duke University

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1 Cita (Scopus)

Resumen

Background: Pediatric sepsis is a leading cause of global mortality, particularly among children, with limited therapeutic options beyond antibiotics and organ support. The Pediatric Sepsis Biomarker Risk Model (PERSEVERE-II) stratifies mortality risk in pediatric septic shock, yet the molecular mechanisms underlying high mortality risk remain incompletely understood. Methods: We analyzed whole blood transcriptomes collected from 81 children with septic shock on day 1 of meeting study criteria. Patients were stratified into high- and low-mortality risk groups according to the PERSEVERE-II biomarker risk model. Using weighted gene co-expression network analysis (WGCNA) and differential gene expression analyses, we identified molecular pathways and transcription factors (TFs) associated with mortality risk. Cell type differences were inferred using CIBERSORTx and using a reference single-cell dataset inclusive of neutrophils and their subsets. Findings: We identified distinct molecular profiles with high-risk patients displaying significant overexpression of genes related to neutrophil degranulation and innate immunity, alongside suppressed adaptive immune responses. The predominance of developing neutrophils underscored a major role of emergency granulopoiesis. Key TFs identified, including LTF, FOXM1, KLF1, and CEBPB, were linked to high-risk gene expression signatures. Our findings indicate a pathological shift toward a dysregulated neutrophil-driven hyperinflammation and adaptive immune suppressive state, which together are associated with adverse outcomes. Interpretation: Our results suggest that neutrophil dysregulation underpins the high mortality risk conferred by the PERSEVERE-II model. The identified transcriptional regulators may provide potential targets to mitigate neutrophil dysregulation and improve outcomes among high-risk patients.

Idioma originalEnglish
Número de artículo1663704
Páginas (desde-hasta)1663704
Número de páginas1
PublicaciónFrontiers in Immunology
Volumen16
DOI
EstadoPublished - 2025

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