Platelet-derived integrin- and tetraspanin-enriched tethers exacerbate severe inflammation
- Charly Kusch,
- David Stegner,
- Lukas J. Weiss,
- Paquita Nurden,
- Philipp Burkard,
- Denise Johnson
- University of Würzburg,
- Hôpital Xavier Arnozan,
- University of North Carolina at Chapel Hill,
- Vita-Salute San Raffaele University,
- Division of Genetics and Cell Biology,
Open access
Abstract
Platelet integrin αIIbβ3 is essential for hemostasis, thrombosis, and inflammation. We found that ligation of αIIbβ3 by von Willebrand factor or fibrin under flow triggered its accumulation in plasma membrane extensions or “platelet-derived integrin- and tetraspanin-enriched tethers” (PITTs). PITTs remained anchored to leukocytes or endothelial cells, whereas the partially αIIbβ3-deficient platelet body detached. although still responsive to stimuli, αIIbβ3-deficient platelets did not support thrombus formation. PITTs promoted leukocyte activation and vascular inflammation in mouse models of infection and endotoxemia, and αIIbβ3 blockade reduced immune-mediated tissue damage. In patients with sepsis, COVID-19, or severe infections, PITT formation and platelet αIIbβ3 loss correlated with disease severity and adverse outcomes. We propose that PITTs are proinflammatory structures that amplify immune responses while contributing to platelet dysfunction in thrombo-inflammatory disease.
Publication Information
Output type
Original language
English (US)Journal (Volume, Issue Number)
Science (Volume 391, Issue 6783)Publication milestones
- Published - 01/22/2026
Publication status
ISSN
0036-8075Publication IDs
- Scopus: 105028619679
