Sim Derek S, Merrill-Skoloff Glenn, Furie Barbara C, Furie Bruce, Flaumenhaft Robert
Center for Hemostasis and Thrombosis Research, Beth Israel Deaconess Medical Center, 41 Ave Louis Pasteur, Boston, MA 02115, USA.
Blood. 2004 Mar 15;103(6):2127-34. doi: 10.1182/blood-2003-04-1133. Epub 2003 Nov 26.
Platelet accumulation at sites of vascular injury is the primary event in arterial thrombosis. Initial platelet accrual into thrombi is mediated by interactions of platelet adhesion receptors with ligands on the injured endothelium or in the sub-endothelial matrix. The role of intracellular signals in initial platelet accumulation at sites of endothelial injury, however, is the subject of debate. We have used a newly discovered inhibitor of phosphodiesterase 3A (PDE3A) and the well-characterized PDE3A inhibitor, cilostazol, to modulate 3',5'-cyclic adenosine monophosphate (cAMP) levels in an in vivo model that enables the kinetic analysis of platelet accumulation. These studies demonstrate that elevation of basal cAMP levels results in an overall decline in platelet accumulation at the site of vascular injury. In particular, the initial rate of accumulation of platelets is inhibited by elevation of cAMP. Analysis of the kinetics of individual platelets at injury sites using intravital microscopy demonstrates that cAMP directs the rate at which platelets attach to and detach from thrombi. These studies demonstrate that cAMP in circulating platelets controls attachment to and detachment from sites of arteriolar injury. Thus, the status of the intracellular signaling machinery prior to engagement of platelet receptors influences the rate of platelet accumulation during thrombus formation.
血小板在血管损伤部位的聚集是动脉血栓形成的首要事件。最初血小板聚集到血栓中是由血小板黏附受体与受损内皮或内皮下基质中的配体相互作用介导的。然而,细胞内信号在内皮损伤部位最初血小板聚集中的作用仍存在争议。我们使用了一种新发现的磷酸二酯酶3A(PDE3A)抑制剂以及特性明确的PDE3A抑制剂西洛他唑,来调节体内模型中的3',5'-环磷酸腺苷(cAMP)水平,该模型能够对血小板聚集进行动力学分析。这些研究表明,基础cAMP水平的升高会导致血管损伤部位血小板聚集总体下降。特别是,血小板聚集的初始速率会受到cAMP升高的抑制。使用活体显微镜对损伤部位单个血小板的动力学分析表明,cAMP决定了血小板与血栓附着和脱离的速率。这些研究表明,循环血小板中的cAMP控制着与小动脉损伤部位的附着和脱离。因此,血小板受体激活之前细胞内信号传导机制的状态会影响血栓形成过程中血小板聚集的速率。