Hickey Michael J, Bullard Daniel C, Issekutz Andrew, James Will G
Center for Inflammatory Diseases, Monash University, Clayton, Victoria, Australia.
J Immunol. 2002 May 1;168(9):4728-36. doi: 10.4049/jimmunol.168.9.4728.
MRL/fas(lpr) mice are affected by a systemic autoimmune disease that results in widespread leukocytic infiltration of the vasculature, including in the skin. The molecular pathways responsible for this leukocyte recruitment are poorly understood. Therefore, the aim of these experiments was to examine the mechanisms of leukocyte trafficking in the dermal microvasculature of MRL/fas(lpr) mice. Intravital microscopy was used to examine leukocyte rolling and adhesion in dermal postcapillary venules of MRL/fas(lpr) mice at 8, 12, and 16 wk of age. When compared with age-matched BALB/c and MRL(+/+) (nondiseased) mice, leukocyte rolling and adhesion in MRL/fas(lpr) mice were significantly enhanced at 12 wk of age, and remained elevated at 16 wk of age. At 8 and 12 wk, leukocyte rolling in all three strains was almost entirely inhibited by an anti-P-selectin mAb. In contrast, at 16 wk some (approximately 10%) leukocyte rolling persisted following P-selectin blockade. This residual rolling was predominantly inhibitable with an anti-E-selectin mAb; however, treatment with anti-E-selectin mAb alone had a minimal effect. P-selectin-deficient MRL/fas(lpr) mice also displayed leukocyte rolling that was significantly lower than in wild-type MRL/fas(lpr) mice. However, in these mice, leukocyte adhesion remained at the elevated levels observed in wild-type MRL/fas(lpr) mice. This adhesion was eliminated by chronic treatment with anti-E-selectin mAb. These findings indicate that leukocyte-endothelial cell interactions are enhanced in the dermal microvasculature of MRL/fas(lpr) mice above the age of 12 wk. Furthermore, the data suggest that the endothelial selectins share overlapping roles in mediating this enhanced leukocyte recruitment.
MRL/fas(lpr)小鼠受一种全身性自身免疫疾病影响,该疾病导致包括皮肤血管在内的全身血管出现广泛的白细胞浸润。导致这种白细胞募集的分子途径尚不清楚。因此,这些实验的目的是研究MRL/fas(lpr)小鼠真皮微血管中白细胞迁移的机制。采用活体显微镜检查8周、12周和16周龄MRL/fas(lpr)小鼠真皮毛细血管后微静脉中的白细胞滚动和黏附情况。与年龄匹配的BALB/c和MRL(+/+)(未患病)小鼠相比,MRL/fas(lpr)小鼠在12周龄时白细胞滚动和黏附显著增强,并在16周龄时仍维持在较高水平。在8周和12周时,抗P-选择素单克隆抗体几乎完全抑制了所有三个品系中的白细胞滚动。相比之下,在1周时,P-选择素阻断后仍有一些(约10%)白细胞滚动持续存在。这种残余滚动主要可被抗E-选择素单克隆抗体抑制;然而,单独使用抗E-选择素单克隆抗体治疗效果甚微。P-选择素缺陷的MRL/fas(lpr)小鼠也表现出白细胞滚动,显著低于野生型MRL/fas(lpr)小鼠。然而,在这些小鼠中,白细胞黏附仍维持在野生型MRL/fas(lpr)小鼠中观察到的较高水平。这种黏附通过抗E-选择素单克隆抗体的长期治疗得以消除。这些发现表明,12周龄以上的MRL/fas(lpr)小鼠真皮微血管中白细胞与内皮细胞的相互作用增强。此外,数据表明内皮选择素在介导这种增强的白细胞募集中具有重叠作用。