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Junctional adhesion molecule-C mediates leukocyte infiltration in response to ischemia reperfusion injury.

机译:结粘附分子C介导缺血再灌注损伤白细胞浸润。

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OBJECTIVE: Junctional adhesion molecule-C (JAM-C) is an adhesion molecule that has multiple roles in inflammation and vascular biology, but many aspects of its functions under pathological conditions are unknown. Here we investigated the role of JAM-C in leukocyte migration in response to ischemia reperfusion (I/R) injury. METHODS AND RESULTS: Pretreatment of mice with soluble JAM-C (sJAM-C), used as a pharmacological blocker of JAM-C-mediated reactions, significantly suppressed leukocyte migration in models of kidney and cremaster muscle I/R injury (39 and 51% inhibition, respectively). Furthermore, in the cremaster muscle model (studied by intravital microscopy), both leukocyte adhesion and transmigration were suppressed in JAM-C-deficient mice (JAM-C(-/-)) and enhanced in mice overexpressing JAM-C in their endothelial cells (ECs). Analysis of JAM-C subcellular expression by immunoelectron microscopy indicated that in I/R-injured tissues, EC JAM-C was redistributed from cytoplasmic vesicles and EC junctional sites to nonjunctional plasma membranes, a response that may account for the role of JAM-C in both leukocyte adhesion and transmigration under conditions of I/R injury. CONCLUSIONS: The findings demonstrate a role for EC JAM-C in mediating leukocyte adhesion and transmigration in response to I/R injury and indicate the existence of a novel regulatory mechanism for redistribution and hence function of EC JAM-C in vivo.
机译:目的:连接黏附分子C(JAM-C)是在炎症和血管生物学中具有多种作用的黏附分子,但在病理条件下其功能的许多方面尚不清楚。在这里,我们调查了JAM-C在响应缺血再灌注(I / R)损伤的白细胞迁移中的作用。方法和结果:可溶性JAM-C(sJAM-C)用作JAM-C介导的反应的药理阻断剂,对小鼠进行了预处理,从而显着抑制了肾脏和提睾肌I / R损伤模型中的白细胞迁移(39和51)抑制百分比)。此外,在提睾肌模型(通过活体显微镜研究)中,JAM-C缺陷型小鼠(JAM-C(-/-))的白细胞粘附和转运均被抑制,内皮细胞中过表达JAM-C的小鼠白细胞粘附和转运被抑制(EC)。通过免疫电子显微镜对JAM-C亚细胞表达的分析表明,在I / R损伤的组织中,EC JAM-C从细胞质囊泡和EC连接位点重新分布到非结质膜​​,这种应答可能解释了JAM-C的作用I / R损伤条件下白细胞的粘附和转运都受到影响。结论:该发现证明了EC JAM-C在介导I / R损伤中介导白细胞粘附和转运方面的作用,并表明了EC JAM-C在体内重新分布及其功能的新型调控机制的存在。

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