Smith C W, Kishimoto T K, Abbassi O, Hughes B, Rothlein R, McIntire L V, Butcher E, Anderson D C
Department of Pediatrics, Baylor College of Medicine, Houston, Texas 77030.
J Clin Invest. 1991 Feb;87(2):609-18. doi: 10.1172/JCI115037.
Monoclonal antibodies recognizing CD18, CD11a, CD11b, and neutrophil lectin adhesion molecule 1 (LECAM-1), i.e., the human homologue of the murine MEL-14 antigen, were used to assess the relative contribution of these glycoproteins to neutrophil-endothelial adhesion. Under static conditions, the adhesion of neutrophils to IL-1-stimulated human umbilical vein endothelial cell (HUVEC) monolayers was inhibited by antibodies to CD18, CD11a, and the neutrophil LECAM-1, and the effect of combining anti-LECAM-1 and anti-CD11a was almost additive. Under flow at a wall shear stress 1.85 dyn/cm2, a condition where CD18-dependent adhesion is minimal, anti-LECAM-1 inhibited adhesion by greater than 50%. Chemotactic stimulation of neutrophils induced a rapid loss of LECAM-1 from the neutrophil surface, and the level of neutrophil surface LECAM-1 was closely correlated with adhesion under flow. Neutrophils contacting the activated endothelial cells for 30 min lost much of their surface LECAM-1, a phenomenon induced by a soluble factor or factors released into the medium by the stimulated monolayers, and a high percentage migrated through the HUVEC monolayer. This migration was almost completely inhibited by anti-CD18, but was unaffected by antibodies to neutrophil LECAM-1. These results support the concept that LECAM-1 is a neutrophil adhesion molecule that participates in the adherence of unstimulated neutrophils to cytokine-stimulated endothelial cells under conditions of flow, and is then lost from the neutrophil surface coincident with the engagement of CD18-dependent mechanisms leading to transendothelial migration.
识别CD18、CD11a、CD11b和中性粒细胞凝集素粘附分子1(LECAM-1,即小鼠MEL-14抗原的人同源物)的单克隆抗体被用于评估这些糖蛋白对中性粒细胞与内皮细胞粘附的相对贡献。在静态条件下,中性粒细胞与白细胞介素-1刺激的人脐静脉内皮细胞(HUVEC)单层的粘附受到抗CD18、抗CD11a和抗中性粒细胞LECAM-1抗体的抑制,抗LECAM-1和抗CD11a联合使用的效果几乎是相加的。在壁面剪应力为1.85达因/平方厘米的流动条件下(一种CD18依赖性粘附最小的条件),抗LECAM-1抑制粘附超过50%。中性粒细胞的趋化刺激导致LECAM-1从细胞表面迅速丢失,中性粒细胞表面LECAM-1的水平与流动条件下的粘附密切相关。与活化内皮细胞接触30分钟的中性粒细胞失去了大部分表面LECAM-1,这一现象是由刺激单层释放到培养基中的一种或多种可溶性因子诱导的,并且高比例的中性粒细胞迁移穿过HUVEC单层。这种迁移几乎完全被抗CD18抑制,但不受抗中性粒细胞LECAM-1抗体的影响。这些结果支持这样一种概念,即LECAM-1是一种中性粒细胞粘附分子,在流动条件下参与未刺激的中性粒细胞与细胞因子刺激的内皮细胞的粘附,然后在导致跨内皮迁移的CD18依赖性机制启动时从细胞表面丢失。