Dieli F, Asherson G L, Romano G C, Sireci G, Gervasi F, Salerno A
Institute of General Pathology, University of Palermo, Italy.
J Immunol. 1994 Mar 15;152(6):2698-704.
Hapten (trinitrophenyl)-specific T cell lines were obtained by repeated stimulation of lymph node cells from immune mice with Ag in vitro. These T cell lines show phenotypic properties and a pattern of cytokine production typical of Th1 cells and consisted of more than 90% V beta 8.2+ T lymphocytes and 6 to 9% gamma/delta + T lymphocytes. The lines mediate a local passive transfer of DTH when injected at the site of Ag challenge but fail to mediate a systemic passive transfer of DTH when injected i.v. However, a successful systemic passive transfer of DTH was observed when IL-4 was given to recipient mice together with the T cell lines or when the T cell lines were incubated in vitro with IL-4. IL-4 enables systemic, specific passive transfer of DTH at a dose of 10 pg/ml in vitro and at a dose of 10 pg/mouse in vivo; it is effective when injected 4 h before cell transfer but not when given 1 to 5 days earlier. Cytofluorimetric analysis shows that the gamma/delta + cells and not the V beta 8.2+ cells of the line express IL-4R and a good systemic transfer of DTH is observed when gamma/delta + cells are incubated in vitro with IL-4 and then injected together with V beta 8.2+ cells into recipient mice. In contrast, injection of V beta 8.2+ cells treated with IL-4 together with gamma/delta + cells fails to transfer DTH. Overall, the present results show that IL-4 is an important mediator in the DTH reaction and that gamma/delta + cells are one of the targets of its action.
通过用抗原在体外反复刺激免疫小鼠的淋巴结细胞,获得了对半抗原(三硝基苯基)特异的T细胞系。这些T细胞系表现出Th1细胞典型的表型特性和细胞因子产生模式,由超过90%的Vβ8.2 + T淋巴细胞和6%至9%的γ/δ + T淋巴细胞组成。当将这些细胞系注射到抗原攻击部位时,它们介导迟发型超敏反应(DTH)的局部被动转移,但静脉注射时不能介导DTH的全身被动转移。然而,当将白细胞介素-4(IL-4)与T细胞系一起给予受体小鼠时,或者当T细胞系在体外与IL-4孵育时,观察到了成功的DTH全身被动转移。IL-4在体外剂量为10 pg/ml、体内剂量为10 pg/小鼠时能够实现DTH的全身特异性被动转移;在细胞转移前4小时注射有效,但提前1至5天给予则无效。细胞荧光分析表明,该细胞系的γ/δ +细胞而非Vβ8.2 +细胞表达IL-4受体,当γ/δ +细胞在体外与IL-4孵育,然后与Vβ8.2 +细胞一起注射到受体小鼠体内时,观察到良好的DTH全身转移。相反,将用IL-4处理的Vβ8.2 +细胞与γ/δ +细胞一起注射不能转移DTH。总体而言,目前的结果表明IL-4是DTH反应中的重要介质,γ/δ +细胞是其作用靶点之一。