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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >The CXCR1/2 ligand NAP-2 promotes directed intravascular leukocyte migration through platelet thrombi.
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The CXCR1/2 ligand NAP-2 promotes directed intravascular leukocyte migration through platelet thrombi.

机译:CXCR1 / 2配体NAP-2促进通过血小板血栓的定向血管内白细胞迁移。

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摘要

Thrombosis promotes leukocyte infiltration into inflamed tissues, leading to organ injury in a broad range of diseases; however, the mechanisms by which thrombi guide leukocytes to sites of vascular injury remain ill-defined. Using mouse models of endothelial injury (traumatic or ischemia reperfusion), we demonstrate a distinct process of leukocyte recruitment, termed "directed intravascular migration," specifically mediated by platelet thrombi. Single adherent platelets and platelet aggregates stimulated leukocyte shape change at sites of endothelial injury; however, only thrombi were capable of inducing directed intravascular leukocyte migration. Leukocyte recruitment and migration induced by platelet thrombi occurred most prominently in veins but could also occur in arteries following ischemia-reperfusion injury. In vitro studies demonstrated a major role for platelet-derived NAP-2 (CXCL-7) and its CXCR1/2 receptor in regulating leukocyte polarization and motility. In vivo studies demonstrated the presence of an NAP-2 chemotactic gradient within the thrombus body. Pharmacologic blockade of CXCR1/2 as well as genetic deletion of NAP-2 markedly reduced leukocyte shape change and intrathrombus migration. These studies define a distinct process of leukocyte migration that is initiated by homotypic adhesive interactions between platelets, leading to the development of an NAP-2 chemotactic gradient within the thrombus body that guides leukocytes to sites of vascular injury.
机译:血栓形成促进白细胞浸入发炎的组织,导致多种疾病的器官损伤;然而,血栓将白细胞引导至血管损伤部位的机制仍然不清楚。使用内皮损伤(创伤性或缺血性再灌注)的小鼠模型,我们证明了白细胞募集的独特过程,称为“定向血管内迁移”,具体由血小板血栓介导。单黏附血小板和血小板聚集体刺激内皮损伤部位的白细胞形状改变;然而,只有血栓能够诱导定向的血管内白细胞迁移。血小板血栓引起的白细胞募集和迁移在静脉中最为显着,但在缺血再灌注损伤后的动脉中也可能发生。体外研究表明,血小板衍生的NAP-2(CXCL-7)及其CXCR1 / 2受体在调节白细胞极化和运动中起主要作用。体内研究表明,血栓体内存在NAP-2趋化梯度。 CXCR1 / 2的药理学阻断以及NAP-2的基因缺失显着减少了白细胞形状变化和血栓内迁移。这些研究定义了由血小板之间的同型粘附相互作用引发的白细胞迁移的独特过程,导致血栓体内NAP-2趋化梯度的发展,该梯度将白细胞引导至血管损伤部位。

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