Imanishi T, Hano T, Nishio I, Han D K, Schwartz S M, Karsan A
Department of Medicine, Wakayama Medical College, Wakayama City, Japan.
Jpn Circ J. 2001 Jun;65(6):556-60. doi: 10.1253/jcj.65.556.
Although Fas-mediated cell death may play a role in atherogenesis, causal data in support of this hypothesis are lacking. The present study investigated the possibility that endothelial cells are involved in vascular smooth muscle cell (VSMC) apoptosis via the Fas-FasL pathway, and hence in atherogenesis. FACS analysis detected FasL on the surface of human umbilical vein endothelial cells (HUVECs) and immunofluorescence staining of the HUVECs demonstrated high levels of FasL in the intracellular compartment. FasL was down-regulated 4 h after tumor necrosis factor (TNFalpha) treatment, coinciding with maximal surface expression of the adhesion molecules vascular cell adhesion molecule-1 and E-selectin. However, the down-regulation of FasL expression was transient, as surface expression returned within 24 h of TNFalpha treatment. When cocultured with VSMCs, the FasL-expressing EC could kill the VSMCs in a manner that could be blocked by recombinant Fas-Fc, deployed as a soluble receptor for Fas. Moreover, when human coronary arteries were studied with immunohistochemistry using G247-4 monoclonal antibody for the detection of FasL, few FasL positive EC were observed in diffuse intimal thickening. In contrast, endothelium overlying the plaque showed prominent and uniform expression of FasL. These findings suggest that the Fas/FasL pathway can be used by EC to induce VSMC apoptosis in the atherosclerotic lesion.
尽管Fas介导的细胞死亡可能在动脉粥样硬化形成中起作用,但缺乏支持这一假说的因果关系数据。本研究探讨了内皮细胞是否通过Fas-FasL途径参与血管平滑肌细胞(VSMC)凋亡,进而参与动脉粥样硬化形成的可能性。流式细胞术分析检测到人脐静脉内皮细胞(HUVECs)表面存在FasL,对HUVECs进行免疫荧光染色显示细胞内区室中FasL水平很高。肿瘤坏死因子(TNFα)处理4小时后FasL下调,这与黏附分子血管细胞黏附分子-1和E-选择素的最大表面表达同时发生。然而,FasL表达的下调是短暂的,因为TNFα处理24小时内表面表达又恢复了。当与VSMCs共培养时,表达FasL的内皮细胞能够以一种可被重组Fas-Fc阻断的方式杀死VSMCs,重组Fas-Fc用作Fas的可溶性受体。此外,当使用G247-4单克隆抗体通过免疫组织化学研究人冠状动脉以检测FasL时,在弥漫性内膜增厚中几乎未观察到FasL阳性内皮细胞。相反,斑块上方的内皮显示FasL有突出且均匀的表达。这些发现表明,Fas/FasL途径可被内皮细胞用于在动脉粥样硬化病变中诱导VSMC凋亡。