Liver-to-lung microembolic NETs promote gasdermin D–dependent inflammatory lung injury in sickle cell disease

Author:

Vats Ravi12,Kaminski Tomasz W.1,Brzoska Tomasz134,Leech John A.1ORCID,Tutuncuoglu Egemen1,Katoch Omika1,Jonassaint Jude134,Tejero Jesus125ORCID,Novelli Enrico M.134,Pradhan-Sundd Tirthadipa134ORCID,Gladwin Mark T.145,Sundd Prithu1245ORCID

Affiliation:

1. 1Pittsburgh Heart, Lung and Blood Vascular Medicine Institute, University of Pittsburgh School of Medicine, Pittsburgh, PA;

2. 2Department of Bioengineering, University of Pittsburgh, Pittsburgh, PA; and

3. 3Division of Hematology and Oncology,

4. 4Sickle Cell Center of Excellence, and

5. 5Division of Pulmonary Allergy and Critical Care Medicine, University of Pittsburgh School of Medicine, Pittsburgh, PA

Abstract

Abstract Acute lung injury, referred to as the acute chest syndrome, is a major cause of morbidity and mortality in patients with sickle cell disease (SCD), which often occurs in the setting of a vaso-occlusive painful crisis. P-selectin antibody therapy reduces hospitalization of patients with SCD by ∼50%, suggesting that an unknown P-selectin–independent mechanism promotes remaining vaso-occlusive events. In patients with SCD, intraerythrocytic polymerization of mutant hemoglobin promotes ischemia-reperfusion injury and hemolysis, which leads to the development of sterile inflammation. Using intravital microscopy in transgenic, humanized mice with SCD and in vitro studies with blood from patients with SCD, we reveal for the first time that the sterile inflammatory milieu in SCD promotes caspase-4/11–dependent activation of neutrophil–gasdermin D (GSDMD), which triggers P-selectin–independent shedding of neutrophil extracellular traps (NETs) in the liver. Remarkably, these NETs travel intravascularly from liver to lung, where they promote neutrophil-platelet aggregation and the development of acute lung injury. This study introduces a novel paradigm that liver-to-lung embolic translocation of NETs promotes pulmonary vascular vaso-occlusion and identifies a new GSDMD-mediated, P-selectin–independent mechanism of lung injury in SCD.

Publisher

American Society of Hematology

Subject

Cell Biology,Hematology,Immunology,Biochemistry

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