Lim Y C, Snapp K, Kansas G S, Camphausen R, Ding H, Luscinskas F W
Department of Pathology, Brigham and Women's Hospital, Boston, MA 02115, USA.
J Immunol. 1998 Sep 1;161(5):2501-8.
In this study, an in vitro flow model and a blocking mAb to P-selectin glycoprotein ligand-1 (PSGL-1) were used to define the role of PSGL-1 in monocyte attachment and rolling on E- and P-selectin and in attachment and accumulation on 6-h TNF-alpha-activated HUVEC. KPL1, an adhesion-blocking mAb directed against the tyrosine sulfate motif of PSGL-1, abolished monocyte-adhesive interactions with P-selectin, but only partially blocked monocyte interaction with E-selectin. Further analysis showed that on E-selectin, KPL1 blocked only secondary (i.e., monocyte/monocyte) interactions, but did not block primary (i.e., monocyte/E-selectin) interactions, with secondary adhesion accounting for 90% of the total adhesive interactions on either E- or P-selectin. On cytokine-activated HUVEC, monocytes initially attached and formed linear strings of adherent cells, which involved both primary and secondary adhesion. PSGL-1 or L-selectin mAb reduced string formation, and the combination of PSGL-1 and L-selectin mAb prevented monocyte strings and inhibited 86% of accumulation. Monocyte attachment and rolling on purified adherent monocytes were also critically dependent on PSGL-1 on the adherent monocytes. These studies document that secondary interactions between monocytes, mediated by PSGL-1, are crucial for monocyte initial attachment, rolling, and accumulation on activated endothelium under laminar shear flow.
在本研究中,使用体外流动模型和针对P-选择素糖蛋白配体-1(PSGL-1)的阻断性单克隆抗体来确定PSGL-1在单核细胞与E-选择素和P-选择素的黏附及滚动,以及在6小时肿瘤坏死因子-α激活的人脐静脉内皮细胞(HUVEC)上的黏附及聚集过程中的作用。KPL1是一种针对PSGL-1酪氨酸硫酸化基序的黏附阻断性单克隆抗体,它消除了单核细胞与P-选择素的黏附相互作用,但仅部分阻断了单核细胞与E-选择素的相互作用。进一步分析表明,在E-选择素上,KPL1仅阻断次级(即单核细胞/单核细胞)相互作用,但不阻断初级(即单核细胞/E-选择素)相互作用,在E-选择素或P-选择素上,次级黏附占总黏附相互作用的90%。在细胞因子激活的HUVEC上,单核细胞最初黏附并形成黏附细胞的线性链,这涉及初级和次级黏附。PSGL-1或L-选择素单克隆抗体减少了链的形成,PSGL-1和L-选择素单克隆抗体的组合阻止了单核细胞链的形成,并抑制了86%的聚集。单核细胞在纯化的黏附单核细胞上的黏附及滚动也严重依赖于黏附单核细胞上的PSGL-1。这些研究证明,由PSGL-1介导的单核细胞之间的次级相互作用对于层流剪切力作用下单核细胞在活化内皮细胞上的初始黏附、滚动及聚集至关重要。