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细胞间黏附分子-1:炎症、损伤修复和肿瘤发生中细胞反应的主要调节因子。

ICAM-1: A master regulator of cellular responses in inflammation, injury resolution, and tumorigenesis.

机构信息

Department of Pathology, Northwestern University Feinberg School of Medicine, Chicago, Illinois, USA.

出版信息

J Leukoc Biol. 2020 Sep;108(3):787-799. doi: 10.1002/JLB.2MR0220-549R. Epub 2020 Mar 17.

Abstract

ICAM-1 is a cell surface glycoprotein and an adhesion receptor that is best known for regulating leukocyte recruitment from circulation to sites of inflammation. However, in addition to vascular endothelial cells, ICAM-1 expression is also robustly induced on epithelial and immune cells in response to inflammatory stimulation. Importantly, ICAM-1 serves as a biosensor to transduce outside-in-signaling via association of its cytoplasmic domain with the actin cytoskeleton following ligand engagement of the extracellular domain. Thus, ICAM-1 has emerged as a master regulator of many essential cellular functions both at the onset and at the resolution of pathologic conditions. Because the role of ICAM-1 in driving inflammatory responses is well recognized, this review will mainly focus on newly emerging roles of ICAM-1 in epithelial injury-resolution responses, as well as immune cell effector function in inflammation and tumorigenesis. ICAM-1 has been of clinical and therapeutic interest for some time now; however, several attempts at inhibiting its function to improve injury resolution have failed. Perhaps, better understanding of its beneficial roles in resolution of inflammation or its emerging function in tumorigenesis will spark new interest in revisiting the clinical value of ICAM-1 as a potential therapeutic target.

摘要

细胞间黏附分子-1(ICAM-1)是一种细胞表面糖蛋白和黏附受体,其功能主要是调节白细胞从血液循环募集到炎症部位。然而,除了血管内皮细胞,ICAM-1 的表达在受到炎症刺激时也会在上皮细胞和免疫细胞中被强烈诱导。重要的是,ICAM-1 作为一种生物传感器,通过其细胞外结构域与配体结合后与肌动蛋白细胞骨架的胞质结构域结合,从而将外部信号转导到细胞内。因此,ICAM-1 已成为许多基本细胞功能的主要调节剂,无论是在病理条件的起始阶段还是缓解阶段。由于 ICAM-1 在驱动炎症反应中的作用已得到充分认识,因此本综述将主要关注 ICAM-1 在上皮细胞损伤修复反应以及免疫细胞在炎症和肿瘤发生中的效应功能方面的新出现的作用。ICAM-1 一直是临床和治疗学的关注点;然而,几种抑制其功能以改善损伤修复的尝试都失败了。也许,更好地了解其在炎症缓解中的有益作用,或者其在肿瘤发生中的新功能,将重新激发人们对重新评估 ICAM-1 作为潜在治疗靶点的临床价值的兴趣。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/26b7/7977775/fdaf235b7ef3/nihms-1680030-f0001.jpg

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