Procoagulant platelets in haemostasis and thrombosis

Procoagulant platelets are characterized by sustained high cytosolic Ca2+, surface exposure of phosphatidylserine (PS) and P-selectin, and a balloon-shaped morphological transformation. These features strongly facilitate the generation of coagulation factor Xa and thrombin on the platelet membrane. Here, we provide a referenced summary of 136 mouse and human genes and proteins, implicated in the formation of procoagulant, PS-exposing platelets. A much smaller set of mouse genes and proteins is reported to be involved in thrombin-induced clot retraction. Based on this literature inventory, we generated an integrated signalling scheme of the multiple membrane receptors and channels, cytosolic, mitochondrial and plasma proteins contributing to platelet procoagulant activity and PS exposure. In the second part of this review, we describe the formation and roles of procoagulant platelets as published for mouse models of haemostasis, thrombosis and thrombo-inflammation. We also overview the evidence for procoagulant platelet formation in human arterial thrombosis, stroke, venous thromboembolism, trauma, COVID-19, and immunemediated thrombotic disorders. Finally, we define potential therapeutic targets that, once clinically validated, can serve as tailored treatment options to selectively suppress the thrombogenic activity of procoagulant platelets.

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Publication Details

Journal
Haematologica
Published
2026-09-17
DOI
https://doi.org/10.3324/haematol.2026.301360
Primary Topic
Platelet Disorders and Treatments
Type
article
Field-Weighted Citation Impact
0.00

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article

Procoagulant platelets in haemostasis and thrombosis

Leo Nicolai, Siyu Sun, Rainer Kaiser, Johan W.M. Heemskerk
Haematologica
Platelet Disorders and Treatments
article

Procoagulant platelets in haemostasis and thrombosis

Leo Nicolai, Siyu Sun, Rainer Kaiser, Johan W.M. Heemskerk
article en

Abstract

Procoagulant platelets are characterized by sustained high cytosolic Ca2+, surface exposure of phosphatidylserine (PS) and P-selectin, and a balloon-shaped morphological transformation. These features strongly facilitate the generation of coagulation factor Xa and thrombin on the platelet membrane. Here, we provide a referenced summary of 136 mouse and human genes and proteins, implicated in the formation of procoagulant, PS-exposing platelets. A much smaller set of mouse genes and proteins is reported to be involved in thrombin-induced clot retraction. Based on this literature inventory, we generated an integrated signalling scheme of the multiple membrane receptors and channels, cytosolic, mitochondrial and plasma proteins contributing to platelet procoagulant activity and PS exposure. In the second part of this review, we describe the formation and roles of procoagulant platelets as published for mouse models of haemostasis, thrombosis and thrombo-inflammation. We also overview the evidence for procoagulant platelet formation in human arterial thrombosis, stroke, venous thromboembolism, trauma, COVID-19, and immunemediated thrombotic disorders. Finally, we define potential therapeutic targets that, once clinically validated, can serve as tailored treatment options to selectively suppress the thrombogenic activity of procoagulant platelets.

Haematologica
LMU Klinikum (DE), German Centre for Cardiovascular Research (DE), Synapse (Netherlands) (NL), Ludwig-Maximilians-Universität München (DE)
Deutsches Zentrum für Herz-Kreislaufforschung, Deutsche Forschungsgemeinschaft, China Scholarship Council, Deutsche Herzstiftung
Good health and well-being
Openalex Percentile: Top 10%
Platelet Disorders and Treatments
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Procoagulant platelets in haemostasis and thrombosis — Leo Nicolai, Siyu Sun, et al. · Haematologica (2026) | TGRS Research Map | TGRS