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聚四氟乙烯表面的血栓形成:血管性血友病因子的重要性。

Thrombus formation on polytetrafluoroethylene surfaces: the importance of von Willebrand factor.

作者信息

Cho J S, Ouriel K, DeWeese J A, Green R M, Chen G Y, Stoughton J

机构信息

Department of Surgery, University of Rochester School of Medicine and Dentistry, New York, USA.

出版信息

Cardiovasc Surg. 1995 Dec;3(6):645-51. doi: 10.1016/0967-2109(96)82864-x.

Abstract

The importance of von Willebrand factor (vWf) in the formation of platelet-fibrin thrombi on expanded polytetrafluoroethylene (ePTFE) surfaces was studied in an in vitro system, perfusing non-anticoagulated human blood over ePTFE grafts for 3 min at varying shear rates (100, 500 and 1500/s shear). Platelet (111In) and fibrin (125I) deposition was assessed on ePTFE surfaces in the presence and relative absence of vWf, achieved by use of polyclonal anti-vWf antibody (anti-vWf Ab). A total of 29 perfusions were performed. Increasing shear rate was associated with greater platelet deposition in the presence of vWf (p < 0.001). This shear-dependent rise in platelet deposition was not observed when vWf was blocked by anti-vWf Ab (P < 0.1), confirming the role of vWf in platelet deposition at high shear rates. Fibrin deposition increased with increasing shear rate in the presence of vWf (P < 0.01). Inhibiting vWf abolished the shear-dependent increase in fibrin deposition. These data suggest that vWf plays a critical role in platelet and fibrin thrombus formation on ePTFE surfaces. These effects are particularly important under conditions of high shear rate. These mechanisms may lead to the observed pathologic thrombus formation and platelet-dependent neointimal processes occurring at areas of high shear rate within the anastomotic regions of ePTFE grafts.

摘要

在体外系统中研究了血管性血友病因子(vWf)在聚四氟乙烯(ePTFE)表面血小板 - 纤维蛋白血栓形成中的重要性,在不同剪切速率(100、500和1500/s剪切)下,将未抗凝的人血灌注到ePTFE移植物上3分钟。通过使用多克隆抗vWf抗体(抗vWf Ab),在有和相对缺乏vWf的情况下评估ePTFE表面上血小板(111In)和纤维蛋白(125I)的沉积。总共进行了29次灌注。在存在vWf的情况下,剪切速率增加与更多的血小板沉积相关(p < 0.001)。当vWf被抗vWf Ab阻断时,未观察到这种剪切依赖性血小板沉积增加(P < 0.1),证实了vWf在高剪切速率下血小板沉积中的作用。在存在vWf的情况下,纤维蛋白沉积随着剪切速率的增加而增加(P < 0.01)。抑制vWf消除了纤维蛋白沉积的剪切依赖性增加。这些数据表明,vWf在ePTFE表面的血小板和纤维蛋白血栓形成中起关键作用。在高剪切速率条件下,这些作用尤为重要。这些机制可能导致在ePTFE移植物吻合区域内高剪切速率区域观察到的病理性血栓形成和血小板依赖性新生内膜过程。

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