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Molecular Drivers of Platelet Activation: Unraveling Novel Targets for Anti-Thrombotic and Anti-Thrombo-Inflammatory Therapy

机译:血小板激活的分子驱动器:解开抗血栓形成和抗血栓炎症治疗的新靶

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摘要

Cardiovascular diseases (CVDs) are the leading cause of death globally—partly a consequence of increased population size and ageing—and are major contributors to reduced quality of life. Platelets play a major role in hemostasis and thrombosis. While platelet activation and aggregation are essential for hemostasis at sites of vascular injury, uncontrolled platelet activation leads to pathological thrombus formation and provokes thrombosis leading to myocardial infarction or stroke. Platelet activation and thrombus formation is a multistage process with different signaling pathways involved to trigger platelet shape change, integrin activation, stable platelet adhesion, aggregation, and degranulation. Apart from thrombotic events, thrombo-inflammation contributes to organ damage and dysfunction in CVDs and is mediated by platelets and inflammatory cells. Therefore, in the past, many efforts have been made to investigate specific signaling pathways in platelets to identify innovative and promising approaches for novel antithrombotic and anti-thrombo-inflammatory strategies that do not interfere with hemostasis. In this review, we focus on some of the most recent data reported on different platelet receptors, including GPIb-vWF interactions, GPVI activation, platelet chemokine receptors, regulation of integrin signaling, and channel homeostasis of NMDAR and PANX1.
机译:心血管疾病(CVDS)是全球性死亡原因 - 部分原因是人口规模和老龄化增加的后果 - 是降低生活质量的主要贡献者。血小板在止血和血栓形成中发挥着重要作用。虽然血小板活化和聚集对于血管损伤部位的止血是必不可少的,但不受控制的血小板活化导致病理血栓形成,并且引发血栓形成导致心肌梗塞或中风。血小板活化和血栓形成是一种多级过程,具有不同的信号通路,涉及触发血小板形状变化,整联素激活,稳定的血小板粘附,聚集和脱粒。除了血栓形成事件外,血栓炎症有助于CVDS的器官损伤和功能障碍,并被血小板和炎症细胞介导。因此,在过去,已经努力研究血小板中的特定信号通路,以确定不干扰止血的新型抗血栓形成和抗血栓炎症策略的创新和有希望的方法。在该综述中,我们专注于不同血小板受体上报告的一些最新数据,包括GPIB-VWF相互作用,GPVI活化,血小板趋化因子受体,整联素信号传导的调节,以及NMDAR和PANX1的通道稳态。

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