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Platelet-RBC interaction mediated by FasL/FasR induces procoagulant activity important for thrombosis

Authors :
Martin Schaller
Nina Sarah Gowert
Christoph Klatt
Lena Pfaff
Hubert Schelzig
Hadi Al-Hasani
Irena Krüger
Steffen Massberg
Martina Spelleken
Jürgen Schrader
Kerstin Jurk
Saskia Zey
Kim-Jürgen Krott
Margitta Elvers
Alexander Oberhuber
Malte Kelm
Konstantin Stark
Wiebke Lückstädt
Source :
Journal of Clinical Investigation. 128:3906-3925
Publication Year :
2018
Publisher :
American Society for Clinical Investigation, 2018.

Abstract

Red blood cells (RBCs) influence rheology, and release ADP, ATP, and nitric oxide, suggesting a role for RBCs in hemostasis and thrombosis. Here, we provide evidence for a significant contribution of RBCs to thrombus formation. Anemic mice showed enhanced occlusion times upon injury of the carotid artery. A small population of RBCs was located to platelet thrombi and enhanced platelet activation by a direct cell contact via the FasL/FasR (CD95) pathway known to induce apoptosis. Activation of platelets in the presence of RBCs led to platelet FasL exposure that activated FasR on RBCs responsible for externalization of phosphatidylserine (PS) on the RBC membrane. Inhibition or genetic deletion of either FasL or FasR resulted in reduced PS exposure of RBCs and platelets, decreased thrombin generation, and reduced thrombus formation in vitro and protection against arterial thrombosis in vivo. Direct cell contacts between platelets and RBCs via FasL/FasR were shown after ligation of the inferior vena cava (IVC) and in surgical specimens of patients after thrombectomy. In a flow restriction model of the IVC, reduced thrombus formation was observed in FasL–/– mice. Taken together, our data reveal a significant contribution of RBCs to thrombosis by the FasL/FasR pathway.

Details

ISSN :
15588238 and 00219738
Volume :
128
Database :
OpenAIRE
Journal :
Journal of Clinical Investigation
Accession number :
edsair.doi.dedup.....6feaf93a2349fea3f4b6901b7b4814d7
Full Text :
https://doi.org/10.1172/jci92077