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Role of factor VIII-von Willebrand factor and fibronectin in the interaction of platelets in flowing blood with monomeric and fibrillar human collagen types I and III.

机译:VIII因子-血管性血友病因子和纤连蛋白在流动的血小板与I型和III型单体和原纤维人类胶原蛋白相互作用中的作用。

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摘要

Platelet adhesion to monomeric collagen types I and III, which were purified from human umbilical arteries, was studied in a perfusion chamber under well defined flow conditions. For this purpose, glass coverslips were coated with 20-30 micrograms/cm2 of collagen types I and III by spraying a solution of these collagens with a retouching air brush. Platelet deposition increased with the time of perfusion. Adhesion to both collagen types was similar in the first 3 min, but increased platelet deposition occurred on collagen type III after 3 min due to thrombus formation. Adhesion at a shear rate of 800 s-1 was strongly impaired with plasma of a patient with von Willebrand's disease or with fibronectin-free plasma. Addition of purified fibronectin to fibronectin-free plasma restored adhesion to the level obtained with normal plasma. Platelet deposition in normal plasma increased with increasing shear rates. Platelet deposition in VWD-plasma was normal at 490 s-1, but there was no increase at higher shear rates. Platelet deposition in fibronectin-free plasma was diminished at all shear rates studied from 490 to 1,300 s-1. Perfusion with a human albumin solution (HAS) to which purified Factor VIII-von Willebrand factor complex (FVIII-VWF) and fibronectin had been added gave similar platelet deposition as with normal plasma. Preincubation of collagen with FVIII-VWF and perfusion with HAS containing fibronectin, or, conversely, preincubation with fibronectin and perfusion with HAS containing FVIII-VWF, also resulted in adhesion similar to that observed in normal plasma. Similar adhesion was also observed after preincubation with both FVIII-VWF and fibronectin and subsequent perfusion with HAS alone. Sequential preincubations with first FVIII-VWF and then fibronectin, or with first fibronectin and then FVIII-VWF followed by perfusion with HAS, also gave a similar adhesion as observed with normal plasma. These data indicate that platelet adhesion to monomeric collagen types I and III is dependent on both FVIII-VWF and fibronectin. FVIII-VWF is only required at relatively high shear rates; fibronectin also at relatively low shear rates. Their complementary role in platelet adhesion suggests separate binding sites for FVIII-VWF and fibronectin on collagen. Platelet deposition on performed fibrils of collagen types I and III was also studied. Initial adhesion expressed as percentage surface coverage was similar to that found with monomeric collagen, but thrombus formation was much enhanced. Adhesion on fibrillar collagen at 800 s(-1) was impaired in VWD-plasma and fibronectin-free plasma, and was restored by addition of purified fibronectin to fibronectin-free plasma. When perfusions were performed with HAS, only addition of FVIII-VWF was required for optimal adhesion to fibrillar collagen; addition of fibronectin had no effect. These data are in contrast to the studies with monomeric collagens described above, in which the addition of both FVIII-VWF and fibronectin was required. These data are also in contrast to the observation that in plasma both FVIII-VWF and fibronectin are required for optimal adhesion to fibrillar collagen.
机译:在明确定义的流动条件下,在灌注室中研究了血小板与从人脐动脉中纯化出的I型和III型单体胶原蛋白的粘附性。为此,通过用润饰气刷将这些胶原蛋白溶液喷洒在玻璃盖玻片上,涂覆20-30微克/ cm2的I和III型胶原蛋白。血小板沉积随着灌注时间的增加而增加。在开始的3分钟内,两种胶原蛋白的粘附力相似,但由于血栓形成,在3型胶原蛋白上,血小板沉积增加了3分钟。 von Willebrand病患者的血浆或无纤连蛋白的血浆会严重损害剪切速率为800 s-1的粘附力。将纯化的纤连蛋白添加到无纤连蛋白的血浆中,使粘附力恢复到正常血浆所能达到的水平。正常血浆中的血小板沉积随着剪切速率的增加而增加。 VWD-血浆中的血小板沉积在490 s-1时是正常的,但是在较高的剪切速率下没有增加。在从490到1300 s-1的所有剪切速率下,无纤连蛋白血浆中的血小板沉积都减少了。向其中添加了纯化的凝血因子VIII-von Willebrand因子复合物(FVIII-VWF)和纤连蛋白的人白蛋白溶液(HAS)灌注,血小板沉积与正常血浆相似。将胶原蛋白与FVIII-VWF预孵育并与含纤连蛋白的HAS灌注,或者相反,与纤连蛋白预孵育并与含FVIII-VWF的HAS灌注,也会产生与正常血浆相似的粘附力。在与FVIII-VWF和纤连蛋白预温育并随后与HAS单独灌注后,也观察到类似的粘附。先用FVIII-VWF再用纤连蛋白或先用纤连蛋白再用FVIII-VWF顺序预孵育,再用HAS灌注,也产生了与正常血浆相似的粘附力。这些数据表明血小板对I型和III型胶原蛋白的粘附依赖于FVIII-VWF和纤连蛋白。仅在较高的剪切速率下才需要FVIII-VWF。纤连蛋白也在相对较低的剪切速率下。它们在血小板粘附中的互补作用提示FVIII-VWF和纤连蛋白在胶原蛋白上具有独立的结合位点。还研究了在I型和III型胶原蛋白的原纤维上的血小板沉积。以表面覆盖率百分比表示的初始粘附力与单体胶原蛋白相似,但血栓形成大大增强。在VWD-血浆和无纤连蛋白的血浆中,在800 s(-1)时对原纤维胶原的粘附力受损,并且通过向无纤连蛋白的血浆中添加纯化的纤连蛋白来恢复。用HAS灌注时,仅需添加FVIII-VWF即可最佳地粘附至纤维状胶原。添加纤连蛋白无作用。这些数据与上述单体胶原的研究相反,在单体胶原中既需要添加FVIII-VWF,又需要添加纤连蛋白。这些数据还与以下观察结果相反:在血浆中,FVIII-VWF和纤连蛋白都需要与纤维状胶原蛋白最佳粘附。

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