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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >The glycoprotein Ib-IX-V complex contributes to tissue factor-independent thrombin generation by recombinant factor VIIa on the activated platelet surface.
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The glycoprotein Ib-IX-V complex contributes to tissue factor-independent thrombin generation by recombinant factor VIIa on the activated platelet surface.

机译:糖蛋白Ib-IX-V复合物通过活化的血小板表面上的重组因子VIIa促进了组织因子非依赖性凝血酶的产生。

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摘要

Several lines of evidence suggest that recombinant factor VIIa (rFVIIa) is able to activate factor X on an activated platelet, in a tissue factor-independent manner. We hypothesized that, besides the anionic surface, a receptor on the activated platelet surface is involved in this process. Here, we showed that, in an ELISA setup, a purified extracellular fragment of GPIbalpha bound to immobilized rFVIIa. Surface plasmon resonance established a affinity constant (K(d)) of approximately 20 nM for this interaction. In addition, CHO cells transfected with the GPIb-IX-V complex could adhere to immobilized rFVIIa, whereas wild-type CHO cells could not. Furthermore, platelets sti-mulated with a combination of collagen and thrombin adhered to immobilized rFVIIa under static conditions. Platelet adhesion was inhibited by treatment with O-sialoglycoprotein endopeptidase, which specifically cleaves GPIbalpha from the platelet surface. In addition, rFVIIa-mediated thrombin generation on the activated platelet surface was inhibited by cleaving GPIbalpha from its surface. In summary, 3 lines of evidence showed that rFVIIa interacts with the GPIb-IX-V complex, and this interaction enhanced tissue factor-independent thrombin generation mediated by rFVIIa on the activated platelet surface. The rFVIIa-GPIbalpha interaction could contribute to cessation of bleeding after administration of rFVIIa to patients with bleeding disorders.
机译:有几条证据表明,重组因子VIIa(rFVIIa)能够以组织因子非依赖性的方式激活活化血小板上的X因子。我们假设,除阴离子表面外,活化血小板表面上的受体也参与该过程。在这里,我们显示,在ELISA设置中,GPIbalpha的纯化细胞外片段与固定的rFVIIa结合。表面等离振子共振为此相互作用建立了大约20 nM的亲和常数(K(d))。此外,转染了GPIb-IX-V复合物的CHO细胞可以粘附在固定的rFVIIa上,而野生型CHO细胞则不能。此外,用胶原蛋白和凝血酶的组合刺激的血小板在静态条件下粘附在固定的rFVIIa上。通过用O-唾液酸糖蛋白内肽酶处理可抑制血小板粘附,O-唾液酸糖蛋白内肽酶可特异性地从血小板表面切割GPIbalpha。此外,rFVIIa介导的凝血酶在活化的血小板表面上的生成通过从其表面切割GPIbalpha受到抑制。总之,有3条证据表明rFVIIa与GPIb-IX-V复合物相互作用,并且这种相互作用增强了rFVIIa在活化的血小板表面上介导的与组织因子无关的凝血酶生成。 rFVIIa-GPIbalpha相互作用可能有助于出血性疾病患者服用rFVIIa后停止出血。

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