Jane S M, Mitchell C A, Hau L, Salem H H
Department of Medicine, Monash Medical School, Prahran, Victoria, Australia.
J Clin Invest. 1989 Jan;83(1):222-6. doi: 10.1172/JCI113862.
Activated protein C (APC), an anticoagulant that acts by inactivating Factors Va and VIIIa, is dependent on a suitable surface for its action. In this study we examined the ability of human platelets to provide this surface and support APC-mediated anticoagulant effects. The activity of APC was examined in three systems: the Factor Xa recalcification time of Al(OH)3 adsorbed plasma, studies of thrombin generation in recalcified plasma, and assessment of the rate of inactivation of purified Factor Va. In comparison with phospholipid, intact platelets required significantly greater concentrations of APC to achieve a similar degree of anticoagulation. When washed platelet membranes were substituted for intact platelets, adequate support of APC was observed and the anticoagulant effect was similar to that obtained with phospholipid. Platelet releasate obtained by stimulation of platelets with thrombin and epinephrine contained an inhibitor that interfered with the ability of phospholipid and washed platelet membranes to catalyze the anticoagulant effects of APC. A noncompetitive inhibition was suggested by Dixon plot analysis of the interaction between platelet releasate and APC. The activity of the platelet APC inhibitor was immediate and was not enhanced by heparin, distinguishing it from the circulating protein C inhibitor. The presence of this inhibitor in the platelet and its release with platelet stimulation emphasizes the procoagulant role of this cell.
活化蛋白C(APC)是一种通过使因子Va和VIIIa失活而起作用的抗凝剂,其作用依赖于合适的表面。在本研究中,我们检测了人血小板提供这种表面并支持APC介导的抗凝作用的能力。在三个系统中检测了APC的活性:氢氧化铝吸附血浆的因子Xa复钙时间、复钙血浆中凝血酶生成的研究以及纯化因子Va失活速率的评估。与磷脂相比,完整血小板需要显著更高浓度的APC才能达到相似程度的抗凝效果。当用洗涤过的血小板膜替代完整血小板时,观察到对APC有足够的支持,并且抗凝效果与用磷脂获得的效果相似。用凝血酶和肾上腺素刺激血小板获得的血小板释放物含有一种抑制剂,该抑制剂干扰了磷脂和洗涤过的血小板膜催化APC抗凝作用的能力。通过对血小板释放物与APC之间相互作用的Dixon图分析提示存在非竞争性抑制。血小板APC抑制剂的活性是即时的,并且不受肝素增强,这使其与循环蛋白C抑制剂不同。这种抑制剂在血小板中的存在及其随血小板刺激的释放强调了该细胞的促凝作用。