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Novel mechanistic concept of platelet inhibition.

机译:血小板抑制的新机制概念。

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BACKGROUND: Activation of circulating platelets by exposed vessel wall collagen is a primary step in the pathogenesis of thrombotic diseases such as heart attack and stroke. Drugs that are capable of blocking platelet activation successfully reduce cardiovascular mortality and morbidity. However, despite intensive research efforts in antithrombotic drug discovery and development, uncontrolled hemorrhage still remains the most common side effect associated with antithrombotic drugs that are currently in use. OBJECTIVE: The selective inhibition of glycoprotein VI (GPVI), the central platelet collagen receptor, and/or its signaling may inhibit thrombosis without affecting hemostatic plug formation. However, the mechanism of GPVI signaling is not known, hindering the further development of this promising antithrombotic strategy. Methods: This review focuses on an innovative mechanistic concept of platelet inhibition. RESULTS/CONCLUSION: A novel model of GPVI signaling, the signaling chain homooligomerization (SCHOOL) model, has revealed new therapeutic targets for GPVI inhibition, resulting in the development of novel antithrombotic pharmacological approaches and the invention of new platelet inhibitors.
机译:背景:暴露的血管壁胶原蛋白激活循环血小板是血栓性疾病(如心脏病和中风)发病机理中的第一步。能够阻断血小板活化的药物可成功降低心血管疾病的死亡率和发病率。然而,尽管在抗血栓药物的发现和开发方面进行了深入的研究,但是失控的出血仍然是与当前使用的抗血栓药物相关的最常见的副作用。目的:选择性抑制糖蛋白VI(GPVI),中枢血小板胶原受体和/或其信号传导可能抑制血栓形成而不影响止血栓的形成。但是,GPVI信号传导的机制尚不清楚,这阻碍了这种有希望的抗血栓形成策略的进一步发展。方法:本综述着重于创新的血小板抑制机制概念。结果/结论:GPVI信号传导的新模型,信号链均聚(SCHOOL)模型,揭示了GPVI抑制的新治疗靶点,从而导致了新型抗血栓药理学方法的发展和新血小板抑制剂的发明。

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