Burger D R, Ford D, Vetto R M, Hamblin A, Goldstein A, Hubbard M, Dumonde D C
Hum Immunol. 1981 Nov;3(3):209-30. doi: 10.1016/0198-8859(81)90019-7.
Activation of human T cells requires presentation of antigen by Ia (HLA-DR in man) bearing cells of the mononuclear phagocytic series (macrophages, MO, and more recently Langerhans cells, dendritic cells, and vascular endothelial cells. Since T cells must cross endothelial barriers to enter extravascular tissues during immune reactions, we investigated the role of endothelial cells in antigen presentation. Endothelial cells were cultured from human umbilical veins and identified by classic morphology and specific markers (factor VIII related antigen, and so on). Antigen-pulsed endothelial cells were used to present antigen to MO-depleted human T cells; activation was assessed by 3H-thymidine uptake. The HLA-DR compatible endothelial cells were as effective as MO in reconstituting MO-depleted T-cell responses. The endothelial cell reconstituted responses were antigen specific, HLA-DR restricted, and blocked by monoclonal antibodies to HLA-DR framework structures. Moreover, the T-cell responses were clonal with respect to HLA-DR. A monoclonal antibody completely eliminated MO reconstitution of the MO-depleted response without diminution of endothelial cell reconstitution of the same response. Fibroblasts and smooth muscle cells cultured from the same umbilical veins could not reconstitute the MO-depleted T-cell response. These data indicate that endothelial cells play an important and distinctive role in lymphocyte triggering.
人类T细胞的激活需要单核吞噬细胞系(巨噬细胞、单核细胞,以及最近发现的朗格汉斯细胞、树突状细胞和血管内皮细胞)中携带Ia(人类中的HLA-DR)的细胞呈递抗原。由于在免疫反应过程中T细胞必须穿过内皮屏障才能进入血管外组织,我们研究了内皮细胞在抗原呈递中的作用。从人脐静脉培养内皮细胞,并通过经典形态学和特异性标志物(如因子VIII相关抗原等)进行鉴定。用抗原脉冲处理的内皮细胞将抗原呈递给去除单核细胞的人类T细胞;通过3H-胸腺嘧啶核苷摄取来评估激活情况。HLA-DR相容的内皮细胞在重建去除单核细胞的T细胞反应方面与单核细胞一样有效。内皮细胞重建的反应具有抗原特异性、HLA-DR限制性,并被针对HLA-DR构架结构的单克隆抗体所阻断。此外,T细胞反应在HLA-DR方面是克隆性的。一种单克隆抗体完全消除了单核细胞对去除单核细胞反应的重建作用,而对同一反应的内皮细胞重建作用没有减弱。从同一脐静脉培养的成纤维细胞和平滑肌细胞不能重建去除单核细胞的T细胞反应。这些数据表明内皮细胞在淋巴细胞触发中起重要且独特的作用。