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Updated: Jan 4, 2026

Author Spotlight: Quantifying Neutrophil Extracellular Traps in Disease and Drug Screening Using Dual-Color Live-Cell Imaging
Published on: December 1, 2023
First visualization of circulating neutrophil extracellular traps using cell fluorescence during human septic
Laure Stiel1, Caroline Mayeur-Rousse2, Julie Helms3
1Université de Strasbourg (UNISTRA), Faculté de Médecine; Hôpitaux universitaires de Strasbourg, Nouvel Hôpital Civil, Service de Médecine Intensive Réanimation, Strasbourg, France; UMR 1260, Regenerative Nano Medecine, INSERM, Fédération de Médecine Translationnelle de Strasbourg (FMTS), Université de Strasbourg, Strasbourg, France.
Abstract:
Disseminated intravascular coagulation (DIC) is a severe complication of septic shock. Polymorphonuclear neutrophils (PMNs) may play a key role in septic shock-induced DIC via the release of neutrophils extracellular traps (NETs). NETs capture invading pathogens, but also act as a pro-coagulant surface at the interface between immunity and thrombosis. During septic shock-induced DIC, neutrophil activation may result in excessive NET formation. Herein, we originally report the presence of circulating NETs in human blood during septic shock-induced DIC. To investigate NET formation during shock-induced DIC neutrophils were isolated from patients in septic shock associated with (n = 3) or without (n = 3) DIC. Neutrophils from healthy donors (n = 3) were stimulated in vitro with ionomycin as NET formation positive controls. PMNs smears were stained with mouse anti-human FITC anti-myeloperoxidase antibody and the blue-fluorescent DAPI nucleic acid stain. NETs were identified as elongated extracellular DNA fibers associated to myeloperoxidase detected by immunofluorescence. NETs were unambiguously observed in PMNs from septic shock patients with DIC but not from patients without DIC. NETs features in DIC+ patients were undistinguishable from those observed in ionomycin-induced PMNs from healthy donors. Fluorescence images of NETs were associated to extracellular cytoplasmic expansions. Our data report for the first time the direct visualization of circulating NETs in patients with septic shock-induced DIC. The in vivo relevance of previously reported indirect markers of NETosis (neutrophil side fluorescence) is confirmed.
Insights
Circulating neutrophils extracellular traps (NETs) were directly visualized in patients with septic shock-induced disseminated intravascular coagulation (DIC). This confirms the in vivo role of NETs in this severe condition, linking immunity and thrombosis.
Area of Science:
- Immunology
- Hematology
- Critical Care Medicine
Background:
- Disseminated intravascular coagulation (DIC) is a life-threatening complication of septic shock.
- Polymorphonuclear neutrophils (PMNs) and their release of neutrophil extracellular traps (NETs) are implicated in DIC pathogenesis.
- NETs can promote coagulation, potentially exacerbating DIC during sepsis.
Purpose of the Study:
- To investigate the presence and visual confirmation of circulating NETs in human patients experiencing septic shock with DIC.
- To determine if NET formation is associated with the development of DIC in septic shock patients.
Main Methods:
- Neutrophils were isolated from patients with septic shock, with or without DIC, and from healthy donors.
- NET formation was assessed using immunofluorescence staining for extracellular DNA (DAPI) and myeloperoxidase (MPO).
- In vitro stimulation of healthy neutrophils with ionomycin served as a positive control for NET formation.
Main Results:
- Circulating NETs were unambiguously observed in neutrophils from septic shock patients who had DIC.
- NETs were not detected in neutrophils from septic shock patients without DIC.
- The morphology of NETs in DIC patients was similar to those induced in vitro in healthy neutrophils.
Conclusions:
- This study provides the first direct visualization of circulating NETs in human patients with septic shock-induced DIC.
- The findings confirm the in vivo relevance of NETosis in the pathophysiology of septic shock-associated DIC.
- NETs represent a critical link between the immune response and thrombotic complications in severe sepsis.

