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凝血酶诱导的血小板聚集体具有动态结构。糖蛋白IIb-IIIa复合物和分泌的粘附蛋白随时间的重新分布。

Thrombin-induced platelet aggregates have a dynamic structure. Time-dependent redistribution of glycoprotein IIb-IIIa complexes and secreted adhesive proteins.

作者信息

Heilmann E, Hourdillé P, Pruvost A, Paponneau A, Nurden A T

机构信息

URA 1464 CNRS, Pathologie Cellulaire de l'Hémostase, Hôpital Cardiologique, Pessac, France.

出版信息

Arterioscler Thromb. 1991 May-Jun;11(3):704-18. doi: 10.1161/01.atv.11.3.704.

Abstract

The role of glycoprotein (GP) IIb-IIIa complexes and of adhesive proteins in mediating platelet aggregation is now well defined. However, less is known of the changes that occur once aggregation has begun. We report immunogold staining of thin sections of platelets or platelet aggregates, embedded in Lowicryl K4M, after the use of polyclonal antibodies to GP IIb or GP IIIa, fibrinogen (Fg), von Willebrand factor (vWF), and thrombospondin (TSP). Bound immunoglobulin G (IgG) was located by species-specific anti-IgG coupled to 5-nm gold particles and by electron microscopy. Initial experiments with platelet-rich plasma confirmed the feasibility of visualizing adhesive proteins between platelets in aggregates. Experiments then continued, using stirred suspensions of washed platelets incubated with alpha-thrombin. After 20 seconds, platelets were in contact without detectable release, although giant secretory vesicles containing adhesive proteins were seen. Internal pools of GP IIb-IIIa were progressively externalized within the aggregate. Secreted Fg was readily detected between platelets at 40 seconds. After 3 minutes, when most of the secretion had occurred, Fg had a patchwork-like distribution within the aggregate. After 6 minutes, zones with closely interspaced surface membranes, usually representing pseudopods, were dominant and Fg free. Results for vWF and TSP were similar to those for Fg. Nonetheless, GP IIb-IIIa complexes continued to be located between adjacent surface membranes throughout the aggregate. Thrombin-induced platelet aggregates were isolated, and sodium dodecyl sulfate-soluble extracts were obtained. Western blot experiments showed that, although fibrinopeptide A had been cleaved, degradation of adhesive proteins by platelet proteases had not occurred. These results emphasize that a platelet aggregate is a dynamic structure and suggest that not all surface-contact interactions are mediated by Fg or the other adhesive proteins tested in this study.

摘要

糖蛋白(GP)IIb-IIIa复合物和黏附蛋白在介导血小板聚集过程中的作用现已明确。然而,对于聚集开始后发生的变化却知之甚少。我们报告了在使用针对GP IIb或GP IIIa、纤维蛋白原(Fg)、血管性血友病因子(vWF)和血小板反应蛋白(TSP)的多克隆抗体后,对包埋在Lowicryl K4M中的血小板或血小板聚集体薄片进行免疫金染色的结果。通过与5纳米金颗粒偶联的种属特异性抗免疫球蛋白G(IgG)以及电子显微镜来定位结合的IgG。富含血小板血浆的初步实验证实了可视化聚集体中血小板间黏附蛋白的可行性。然后继续进行实验,使用与α-凝血酶孵育的洗涤血小板搅拌悬浮液。20秒后,血小板相互接触但未检测到释放,尽管可见含有黏附蛋白的巨大分泌囊泡。GP IIb-IIIa的内部池在聚集体内逐渐外化。40秒时在血小板之间很容易检测到分泌的Fg。3分钟后,当大部分分泌发生时,Fg在聚集体内呈拼接样分布。6分钟后,具有紧密间隔表面膜的区域(通常代表伪足)占主导且无Fg。vWF和TSP的结果与Fg相似。尽管如此,GP IIb-IIIa复合物在整个聚集体中仍持续位于相邻表面膜之间。分离出凝血酶诱导的血小板聚集体,并获得十二烷基硫酸钠可溶提取物。蛋白质印迹实验表明,尽管纤维蛋白肽A已被裂解,但血小板蛋白酶并未对黏附蛋白进行降解。这些结果强调血小板聚集体是一种动态结构,并表明并非所有表面接触相互作用都由Fg或本研究中测试的其他黏附蛋白介导。

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