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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >Hierarchical organization in the hemostatic response and its relationship to the platelet-signaling network.
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Hierarchical organization in the hemostatic response and its relationship to the platelet-signaling network.

机译:止血反应中的分层组织及其与血小板信号网络的关系。

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Achieving hemostasis following vascular injury requires the rapid accumulation of platelets and fibrin. Here we used a combination of confocal intravital imaging, genetically engineered mice, and antiplatelet agents to determine how variations in the extent of platelet activation following vascular injury arise from the integration of different elements of the platelet-signaling network. Two forms of penetrating injury were used to evoke the hemostatic response. Both produced a hierarchically organized structure in which a core of fully activated platelets was overlaid with an unstable shell of less-activated platelets. This structure emerged as hemostasis was achieved and persisted for at least 60 minutes following injury, its organization at least partly reflecting agonist concentration gradients. Thrombin activity and fibrin formation were found primarily in the innermost core. As proposed previously, greater packing density in the core facilitated contact-dependent signaling and limited entry of plasma-borne molecules visualized with fluorophores coupled to dextran and albumin. Blocking contact-dependent signaling or inhibiting thrombin reduced the size of the core, while the shell was heavily influenced by adenosine 5'-diphosphate and regulators of G-mediated signaling. Thus, the hemostatic response is shown to produce a hierarchical structure arising, in part, from distinct elements of the platelet-signaling network.
机译:为了在血管损伤后实现止血,需要迅速积聚血小板和纤维蛋白。在这里,我们使用共聚焦活体成像,基因工程小鼠和抗血小板药的组合来确定在血管损伤后血小板活化程度的变化是如何由血小板信号网络不同元素的整合引起的。两种形式的穿透性损伤用于引起止血反应。两者都产生了分层组织的结构,其中完全活化的血小板核心被不稳定的,较少活化的血小板壳覆盖。这种结构随着止血的实现而出现,并在受伤后持续至少60分钟,其组织至少部分反映了激动剂浓度梯度。凝血酶活性和纤维蛋白形成主要在最内层核心。如先前所提出的,核心中更高的堆积密度促进了与接触有关的信号传导,并限制了通过与右旋糖酐和白蛋白偶联的荧光团显现的血浆分子的进入。阻断接触依赖性信号传导或抑制凝血酶可减小核的大小,而壳层则受到5'-二磷酸腺苷和G介导的信号调节剂的严重影响。因此,显示出止血反应产生了部分来自血小板信号网络的不同元件的分层结构。

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