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凝血酶生成:我们了解到了什么?

Thrombin generation: what have we learned?

机构信息

Synapse BV, CARIM School for Cardiovascular Diseases, Maastricht University, The Netherlands.

出版信息

Blood Rev. 2012 Sep;26(5):197-203. doi: 10.1016/j.blre.2012.06.001. Epub 2012 Jul 2.

Abstract

Thrombin is a pivotal player in the coagulation system. In clotting blood a transient wave of thrombin appears after a lag time. Clotting occurs at the start of the wave. The amount of thrombin formed reflects the function of the hemostatic system much better than the clotting time does: "The more thrombin the less bleeding but the more thrombosis, the less thrombin the more bleeding but the less thrombosis" has been shown to hold for congenital and acquired tendencies to venous thrombosis and bleeding and under all variants of antithrombotic treatment. The situation with arterial thrombosis is less clear. Calibrated automated thrombinography (CAT) allows quantitative assessment of the thrombin generation (TG) curve in platelet poor as well as in platelet rich plasma. Procedures to measure TG in whole blood and at the point of care are under development. TG measurement in platelet rich plasma underlines the close cooperation between platelets and the clotting system and challenges the traditional division between primary and secondary hemostases.

摘要

凝血酶是凝血系统中的关键因子。在血液凝固过程中,凝血酶会在延迟时间后出现短暂的波峰。凝血发生在波峰的起始处。形成的凝血酶量比凝血时间更能反映止血系统的功能:“形成的凝血酶越多,出血越少,但血栓形成越多;形成的凝血酶越少,出血越多,但血栓形成越少”,这一现象已被证明适用于先天性和获得性静脉血栓形成和出血倾向,以及所有抗血栓治疗的变异情况。动脉血栓形成的情况则不那么明确。校准的自动化凝血酶生成(CAT)试验允许对血小板缺乏和富含血小板的血浆中的凝血酶生成(TG)曲线进行定量评估。在全血和即时检测点测量 TG 的程序正在开发中。富含血小板的血浆中的 TG 测量强调了血小板与凝血系统之间的密切合作,并挑战了传统的初级和次级止血之间的划分。

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