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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >RAGE and ICAM-1 cooperate in mediating leukocyte recruitment during acute inflammation in vivo.
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RAGE and ICAM-1 cooperate in mediating leukocyte recruitment during acute inflammation in vivo.

机译:RAGE和ICAM-1在体内急性炎症过程中协同介导白细胞募集。

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The receptor for advanced glycation end products (RAGE) contributes to the inflammatory response in many acute and chronic diseases. In this context, RAGE has been identified as a ligand for the beta(2)-integrin Mac-1 under static in vitro conditions. Because intercellular adhesion molecule (ICAM)-1 also binds beta(2)-integrins, we studied RAGE(-/-), Icam1(-/-), and RAGE(-/-) Icam1(-/-) mice to define the relative contribution of each ligand for leukocyte adhesion in vivo. We show that trauma-induced leukocyte adhesion in cremaster muscle venules is strongly dependent on RAGE and ICAM-1 acting together in an overlapping fashion. Additional in vivo experiments in chimeric mice lacking endothelium-expressed RAGE and ICAM-1 located the adhesion defect to the endothelial compartment. Using microflow chambers coated with P-selectin, CXCL1, and soluble RAGE (sRAGE) demonstrated that sRAGE supports leukocyte adhesion under flow conditions in a Mac-1- but not LFA-1-dependent fashion. A static adhesion assay revealed that wild-type and RAGE(-/-) neutrophil adhesion and spreading were similar on immobilized sRAGE or fibrinogen. These observations indicate a crucial role of endothelium-expressed RAGE as Mac-1 ligand and uncover RAGE and ICAM-1 as a new set of functionally linked adhesion molecules, which closely cooperate in mediating leukocyte adhesion during the acute trauma-induced inflammatory response in vivo.
机译:晚期糖基化终产物的受体(RAGE)有助于许多急性和慢性疾病的炎症反应。在这种情况下,RAGE已被确定为在静态体外条件下β(2)-整合素Mac-1的配体。由于细胞间粘附分子(ICAM)-1也结合beta(2)-整合素,我们研究了RAGE(-/-),Icam1(-/-)和RAGE(-/-)Icam1(-/-)小鼠的定义每种配体在体内对白细胞粘附的相对贡献。我们表明,在提睾肌小静脉中由创伤引起的白细胞粘附强烈依赖于RAGE和ICAM-1以重叠的方式共同起作用。在缺乏内皮表达的RAGE和ICAM-1的嵌合小鼠中进行的其他体内实验将粘附缺陷定位于内皮区室。使用涂有P-选择素,CXCL1和可溶性RAGE(sRAGE)的微流室证明,sRAGE在流动条件下以Mac-1而非LFA-1依赖性方式支持白细胞粘附。静态粘附测定表明,固定型sRAGE或纤维蛋白原的野生型和RAGE(-/-)中性粒细胞粘附和扩散相似。这些观察结果表明内皮表达的RAGE作为Mac-1配体的关键作用,并发现RAGE和ICAM-1作为一组新的功能连接的粘附分子,在急性创伤诱导的体内炎症反应过程中,它们紧密协作介导白细胞粘附。

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