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Platelets and platelet adhesion molecules: novel mechanisms of thrombosis and anti-thrombotic therapies

止血 全球生产总值 医学 血小板 血栓形成 凝结 血小板活化 凝血酶 药理学 内科学 免疫学
作者
Xiaohong Xu,Naadiya Carrim,Miguel A. D. Neves,Thomas McKeown,Tyler W. Stratton,Rodrigo Coelho,Xi Lei,Pingguo Chen,Jianhua Xu,Xiangrong Dai,Benjamin Xiaoyi Li,Heyu Ni
出处
期刊:Thrombosis Journal [Springer Nature]
卷期号:14 (S1) 被引量:176
标识
DOI:10.1186/s12959-016-0100-6
摘要

Platelets are central mediators of thrombosis and hemostasis. At the site of vascular injury, platelet accumulation (i.e. adhesion and aggregation) constitutes the first wave of hemostasis. Blood coagulation, initiated by the coagulation cascades, is the second wave of thrombin generation and enhance phosphatidylserine exposure, can markedly potentiate cell-based thrombin generation and enhance blood coagulation. Recently, deposition of plasma fibronectin and other proteins onto the injured vessel wall has been identified as a new "protein wave of hemostasis" that occurs prior to platelet accumulation (i.e. the classical first wave of hemostasis). These three waves of hemostasis, in the event of atherosclerotic plaque rupture, may turn pathogenic, and cause uncontrolled vessel occlusion and thrombotic disorders (e.g. heart attack and stroke). Current anti-platelet therapies have significantly reduced cardiovascular mortality, however, on-treatment thrombotic events, thrombocytopenia, and bleeding complications are still major concerns that continue to motivate innovation and drive therapeutic advances. Emerging evidence has brought platelet adhesion molecules back into the spotlight as targets for the development of novel anti-thrombotic agents. These potential antiplatelet targets mainly include the platelet receptors glycoprotein (GP) Ib-IX-V complex, β3 integrins (αIIb subunit and PSI domain of β3 subunit) and GPVI. Numerous efforts have been made aiming to balance the efficacy of inhibiting thrombosis without compromising hemostasis. This mini-review will update the mechanisms of thrombosis and the current state of antiplatelet therapies, and will focus on platelet adhesion molecules and the novel anti-thrombotic therapies that target them.
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