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首页> 外文期刊>Journal of thrombosis and haemostasis: JTH >Fibrinogen counteracts the antiadhesive effect of fibrin-bound plasminogen by preventing its activation by adherent U937 monocytic cells
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Fibrinogen counteracts the antiadhesive effect of fibrin-bound plasminogen by preventing its activation by adherent U937 monocytic cells

机译:纤维蛋白原通过阻止粘附的U937单核细胞激活而抵消了纤维蛋白结合的纤溶酶原的抗粘附作用

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Background: Fibrinogen and plasminogen strongly reduce adhesion of leukocytes and platelets to fibrin clots, highlighting a possible role for these plasma proteins in surface-mediated control of thrombus growth and stability. In particular, adsorption of fibrinogen on fibrin clots renders their surfaces non-adhesive, while the conversion of surface-bound plasminogen to plasmin by transiently adherent blood cells results in degradation of a superficial fibrin layer, leading to cell detachment. Although the mechanisms whereby these proteins exert their antiadhesive effects are different, the outcome is the same: the formation of a mechanically unstable surface that does not allow firm cell attachment. Objectives: Since fibrin clots in circulation are exposed to both fibrinogen and plasminogen, their combined effect on adhesion of monocytic cells was examined. Methods: Fibrin gels were coated with plasminogen and its activation by adherent U937 monocytic cells in the presence of increasing concentrations of fibrinogen was examined by either measuring 125I-labeled fibrin degradation products or plasmin amidolytic activity. Results: Unexpectedly, the antiadhesive effects of two fibrin binding proteins were not additive; in fact, in the presence of fibrinogen, the effect of plasminogen was strongly reduced. An investigation of the underlying mechanism revealed that fibrinogen prevented activation of fibrin-bound plasminogen by cells. Confocal microscopy showed that fibrinogen accumulates in a thin superficial layer of a clot, where it exerts its blocking effect on activation of plasminogen. Conclusion: The results point to a complex interplay between the fibrinogen- and plasminogen-dependent antiadhesive systems, which may contribute to the mechanisms that control the adhesiveness of a fibrin shell on the surface of hemostatic thrombi.
机译:背景:纤维蛋白原和纤维蛋白溶酶原能强烈减少白细胞和血小板与纤维蛋白凝块的粘附,突显了这些血浆蛋白在表面介导的血栓生长和稳定性控制中的可能作用。特别地,纤维蛋白原在纤维蛋白凝块上的吸附使它们的表面不粘附,而通过瞬时粘附的血细胞将表面结合的纤溶酶原转化为纤溶酶导致表面纤维蛋白层的降解,从而导致细胞脱离。尽管这些蛋白质发挥其抗粘附作用的机制不同,但结果是相同的:形成机械不稳定的表面,不允许牢固的细胞附着。目的:由于循环中的纤维蛋白凝块同时暴露于纤维蛋白原和纤溶酶原,因此检查了它们对单核细胞粘附的综合作用。方法:用纤溶酶原包被血纤蛋白凝胶,并通过测量125I标记的血纤蛋白降解产物或纤溶酶的酰胺分解活性,检查在浓度不断增加的纤维蛋白原存在下,粘附的U937单核细胞对其活化的作用。结果:出乎意料的是,两种纤维蛋白结合蛋白的抗粘连作用不是相加的。实际上,在存在纤维蛋白原的情况下,纤维蛋白溶酶原的作用大大降低。对潜在机制的研究表明,纤维蛋白原阻止了细胞激活结合纤维蛋白的纤溶酶原。共聚焦显微镜检查表明,纤维蛋白原积聚在凝块的表层薄层中,在纤维蛋白原中对纤维蛋白溶酶原的激活发挥阻断作用。结论:结果表明,依赖于纤维蛋白原和纤溶酶原的抗粘附系统之间存在复杂的相互作用,这可能有助于控制止血栓表面纤维蛋白外壳的粘附性。

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