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S100A8/A9 drives the formation of procoagulant platelets through GPIbα
Martina Colicchia1, Waltraud C Schrottmaier2, Gina Perrella1,3
1Institute of Cardiovascular Sciences, College of Medical and Dental Sciences, University of Birmingham, Birmingham, United Kingdom.
Abstract:
S100A8/A9, also known as "calprotectin" or "MRP8/14," is an alarmin primarily secreted by activated myeloid cells with antimicrobial, proinflammatory, and prothrombotic properties. Increased plasma levels of S100A8/A9 in thrombo-inflammatory diseases are associated with thrombotic complications. We assessed the presence of S100A8/A9 in the plasma and lung autopsies from patients with COVID-19 and investigated the molecular mechanism by which S100A8/A9 affects platelet function and thrombosis. S100A8/A9 plasma levels were increased in patients with COVID-19 and sustained high levels during hospitalization correlated with poor outcomes. Heterodimeric S100A8/A9 was mainly detected in neutrophils and deposited on the vessel wall in COVID-19 lung autopsies. Immobilization of S100A8/A9 with collagen accelerated the formation of a fibrin-rich network after perfusion of recalcified blood at venous shear. In vitro, platelets adhered and partially spread on S100A8/A9, leading to the formation of distinct populations of either P-selectin or phosphatidylserine (PS)-positive platelets. By using washed platelets, soluble S100A8/A9 induced PS exposure but failed to induce platelet aggregation, despite GPIIb/IIIa activation and alpha-granule secretion. We identified GPIbα as the receptor for S100A8/A9 on platelets inducing the formation of procoagulant platelets with a supporting role for CD36. The effect of S100A8/A9 on platelets was abolished by recombinant GPIbα ectodomain, platelets from a patient with Bernard-Soulier syndrome with GPIb-IX-V deficiency, and platelets from mice deficient in the extracellular domain of GPIbα. We identified the S100A8/A9-GPIbα axis as a novel targetable prothrombotic pathway inducing procoagulant platelets and fibrin formation, in particular in diseases associated with high levels of S100A8/A9, such as COVID-19.
Insights
S100A8/A9 (calprotectin) drives thrombosis in COVID-19 by activating platelets via GPIbα, leading to fibrin formation and poor outcomes. Targeting this pathway may prevent thrombotic complications.
Area of Science:
- Immunology
- Hematology
- Pathophysiology
Background:
- S100A8/A9 (calprotectin) is an alarmin linked to thrombosis in inflammatory diseases.
- Elevated S100A8/A9 levels in COVID-19 patients correlate with adverse outcomes.
Purpose of the Study:
- To investigate S100A8/A9's role in COVID-19 pathogenesis.
- To elucidate the molecular mechanisms of S100A8/A9-induced platelet activation and thrombosis.
Main Methods:
- Analysis of S100A8/A9 in patient plasma and lung tissues.
- In vitro studies on platelet function and S100A8/A9 interaction.
- Utilized recombinant proteins and patient-derived platelets for mechanistic studies.
Main Results:
- Increased S100A8/A9 plasma levels and deposition in COVID-19 lungs.
- S100A8/A9 promotes fibrin-rich thrombus formation and activates platelets.
- GPIbα identified as the key receptor for S100A8/A9 on platelets, inducing procoagulant activity.
Conclusions:
- The S100A8/A9-GPIbα axis is a novel prothrombotic pathway.
- This pathway contributes to thrombosis in COVID-19 and other diseases with high S100A8/A9.
- Targeting the S100A8/A9-GPIbα interaction offers a potential therapeutic strategy.
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