Department of Biochemistry and Biophysics, The University of North Carolina at Chapel Hill, Chapel Hill, NC.
UNC Blood Research Center, The University of North Carolina at Chapel Hill, Chapel Hill, NC.
Blood. 2024 Sep 5;144(10):1116-1126. doi: 10.1182/blood.2023022608.
Interplay between platelets, coagulation factors, endothelial cells (ECs), and fibrinolytic factors is necessary for effective hemostatic plug formation. This study describes a 4-dimensional (4D) imaging platform to visualize and quantify hemostatic plug components in mice with high spatiotemporal resolution. Fibrin accumulation after laser-induced vascular injury was observed at the platelet plug-EC interface, controlled by the antagonistic balance between fibrin generation and breakdown. We observed less fibrin accumulation in mice expressing low levels of tissue factor or F12-/-mice compared with controls, whereas increased fibrin accumulation, including on the vasculature adjacent to the platelet plug, was observed in plasminogen-deficient mice or wild-type mice treated with tranexamic acid. Phosphatidylserine (PS), a membrane lipid critical for the assembly of coagulation factors, was first detected at the platelet plug-EC interface, followed by exposure across the endothelium. Impaired PS exposure resulted in a significant reduction in fibrin accumulation in cyclophilin D-/-mice. Adoptive transfer studies demonstrated a key role for PS exposure on platelets, and to a lesser degree on ECs, in fibrin accumulation during hemostatic plug formation. Together, these studies suggest that (1) platelets are the functionally dominant procoagulant cellular surface, and (2) plasmin is critical for limiting fibrin accumulation at the site of a forming hemostatic plug.
血小板、凝血因子、内皮细胞 (ECs) 和纤维蛋白溶解因子之间的相互作用对于有效的止血塞形成是必要的。本研究描述了一种 4 维 (4D) 成像平台,用于以高时空分辨率可视化和量化小鼠中的止血塞成分。在激光诱导的血管损伤后,在血小板塞 -EC 界面观察到纤维蛋白的积累,其受到纤维蛋白生成和分解之间的拮抗平衡控制。与对照组相比,表达低水平组织因子或 F12-/-的小鼠中观察到的纤维蛋白积累较少,而纤溶酶原缺陷型小鼠或用氨甲环酸处理的野生型小鼠中观察到的纤维蛋白积累增加,包括在血小板塞附近的血管上。磷脂酰丝氨酸 (PS) 是对于凝血因子组装至关重要的膜脂质,首先在血小板塞 -EC 界面检测到,然后暴露于整个内皮细胞。PS 暴露受损导致环孢素 D-/-小鼠中的纤维蛋白积累显著减少。过继转移研究表明,PS 暴露在血小板上(在一定程度上也在 EC 上)在止血塞形成过程中的纤维蛋白积累中起着关键作用。总之,这些研究表明:(1) 血小板是功能上占主导地位的促凝细胞表面;(2) 纤溶酶对于限制形成中的止血塞部位的纤维蛋白积累至关重要。