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.

Thrombosis Research
|November 4, 2019
PubMed

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.

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