首页> 外文期刊>The Journal of Immunology: Official Journal of the American Association of Immunologists >Adhesion molecule mechanisms mediating monocyte migration through synovial fibroblast and endothelium barriers: role for CD11/CD18, very late antigen-4 (CD49d/CD29), very late antigen-5 (CD49e/CD29), and vascular cell adhesion molecule-1 (CD106).
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Adhesion molecule mechanisms mediating monocyte migration through synovial fibroblast and endothelium barriers: role for CD11/CD18, very late antigen-4 (CD49d/CD29), very late antigen-5 (CD49e/CD29), and vascular cell adhesion molecule-1 (CD106).

机译:粘附分子机制介导单核细胞通过滑膜成纤维细胞和内皮屏障的迁移:对CD11 / CD18,晚期抗原4(CD49d / CD29),晚期抗原5(CD49e / CD29)和血管细胞粘附分子1(CD106)的作用)。

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摘要

Monocytes migrate through vascular endothelium, and then in connective tissue. As a model of this process, we investigated adhesion molecules involved in monocyte migration through HUVEC and a barrier of human synovial fibroblasts (HSF). Minimal spontaneous monocyte migration (6-7%) occurred through either cell barrier, but this increased markedly (27-35% of added monocytes) when a C5a chemotactic gradient was present. Migration across unstimulated HUVEC was partially inhibited (40%) by mAb to CD18 (beta2 integrin) and completely blocked by anti-CD18 plus anti-alpha4 (CD49d; very late Ag-4 (VLA-4)) mAbs. In contrast, migration across HSF induced by C5a or monocyte chemoattractant protein-1 was not inhibited by mAb to CD18 and was only partially inhibited (33%) in combination with anti-alpha4 mAb. The CD18- and VLA-4-independent migration across HSF was completely inhibited by mAb to alpha5 of VLA-5. The inhibitory effect of mAbs to VLA-4 and VLA-5 was on the monocyte and required blockade of CD11/CD18 to be observed. In contrast to HSF, no role for VLA-5 in monocyte transendothelial migration was detected. Both HSF and IL-1-stimulated HUVEC expressed vascular cell adhesion molecule-1 (VCAM-1). However, VLA-4-mediated monocyte migration across HSF was only partially dependent on VCAM-1, in contrast to transendothelial migration, which was completely blocked by anti-VCAM-1 mAbs. In conclusion, unlike transendothelial migration, for which VLA-4 is the alternative mechanism to CD11/CD18 on monocytes, both VLA-4 and VLA-5 can mediate monocyte migration through fibroblast barriers. In addition to VCAM-1, other ligand(s) on HSF are also involved in the VLA-4-mediated migration.
机译:单核细胞通过血管内皮迁移,然后在结缔组织中迁移。作为此过程的模型,我们研究了通过HUVEC和人滑膜成纤维细胞(HSF)屏障参与单核细胞迁移的粘附分子。最小的自发单核细胞迁移(6-7%)通过任一细胞屏障发生,但是当存在C5a趋化梯度时,这种迁移显着增加(占添加单核细胞的27-35%)。单克隆抗体部分抑制(40%)跨未刺激HUVEC的迁移至CD18(β2整联蛋白),并被抗CD18加抗α4(CD49d;非常晚期的Ag-4(VLA-4))mAb完全阻断。相比之下,由C5a或单核细胞趋化蛋白1诱导的跨HSF的迁移不会被mAb抑制至CD18,而与抗α4mAb结合只能被部分抑制(33%)。单克隆抗体完全抑制了HSF的CD18和VLA-4独立迁移,使其迁移至VLA-5的alpha5。 mAb对VLA-4和VLA-5的抑制作用是对单核细胞的抑制作用,需要观察到CD11 / CD18的阻断作用。与HSF相比,未检测到VLA-5在单核细胞跨内皮迁移中的作用。 HSF和IL-1刺激的HUVEC均表达了血管细胞粘附分子1(VCAM-1)。然而,与跨内皮迁移相反,跨VSF的VLA-4介导的单核细胞迁移仅部分依赖于VCAM-1,而跨内皮迁移则完全被抗VCAM-1 mAb阻断。总之,与跨内皮迁移不同,VLA-4是单核细胞上CD11 / CD18的替代机制,VLA-4和VLA-5均可介导单核细胞通过成纤维细胞屏障迁移。除了VCAM-1,HSF上的其他配体也参与VLA-4介导的迁移。

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