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Neutrophil extracellular traps contribute to immunothrombosis in COVID-19 acute respiratory distress syndrome

Blood · 2020 · Vol. 136(10) · pp. 1169–1179
Elizabeth A. MiddletonXue‐Yan HeFrederik DenormeRobert A. CampbellDavid NgSteven SalvatoreMaria MostykaAmelia Baxter-StoltzfusAlain BorczukMassimo LodaMark J. CodyBhanu Kanth ManneIrina PortierEstelle S. HarrisAaron C. PetreyEllen J. BeswickAleah F. CaulinAnthony J. IovinoLisa M. AbegglenAndrew S. WeyrichMatthew T. RondinaMikala EgebladJoshua D. SchiffmanChristian C. Yost

Abstract

COVID-19 affects millions of patients worldwide, with clinical presentation ranging from isolated thrombosis to acute respiratory distress syndrome (ARDS) requiring ventilator support. Neutrophil extracellular traps (NETs) originate from decondensed chromatin released to immobilize pathogens, and they can trigger immunothrombosis. We studied the connection between NETs and COVID-19 severity and progression. We conducted a prospective cohort study of COVID-19 patients (n = 33) and age- and sex-matched controls (n = 17). We measured plasma myeloperoxidase (MPO)-DNA complexes (NETs), platelet factor 4, RANTES, and selected cytokines. Three COVID-19 lung autopsies were examined for NETs and platelet involvement. We assessed NET formation ex vivo in COVID-19 neutrophils and in healthy neutrophils incubated with COVID-19 plasma. We also tested the ability of neonatal NET-inhibitory factor (nNIF) to block NET formation induced by COVID-19 plasma. Plasma MPO-DNA complexes increased in COVID-19, with intubation (P < .0001) and death (P < .0005) as outcome. Illness severity correlated directly with plasma MPO-DNA complexes (P = .0360), whereas Pao2/fraction of inspired oxygen correlated inversely (P = .0340). Soluble and cellular factors triggering NETs were significantly increased in COVID-19, and pulmonary autopsies confirmed NET-containing microthrombi with neutrophil-platelet infiltration. Finally, COVID-19 neutrophils ex vivo displayed excessive NETs at baseline, and COVID-19 plasma triggered NET formation, which was blocked by nNIF. Thus, NETs triggering immunothrombosis may, in part, explain the prothrombotic clinical presentations in COVID-19, and NETs may represent targets for therapeutic intervention.

Neutrophil, Myeloperoxidase and Oxidative MechanismsCOVID-19 Clinical Research StudiesInflammasome and immune disordersNeutrophil extracellular trapsARDSImmunologyMedicineRespiratory distressPlatelet activationEx vivoPlateletLungInternal medicine

MeSH terms

BetacoronavirusCOVID-19SARS-CoV-2AdultAgedBlood PlateletsBlood ProteinsFemaleHumansMaleMiddle AgedPeroxidaseNeutrophilsPneumonia, ViralProspective Studies

Funding

  • U.S. Department of Veterans Affairs
  • University of Utah
  • Hope Foundation
  • Animal Cancer Foundation
  • Fonds Wetenschappelijk Onderzoek
  • Vlaamse regering
  • National Institutes of Health
  • National Institute on Aging
  • National Heart, Lung, and Blood Institute
  • National Cancer Institute
Citations
1,499
FWCI
93.42
field-weighted impact
References
60
Percentile
100%
vs. same field & year
Citations per year
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