Interdisciplinary Research Center of Autoimmune Diseases (IRCAD) and Department of Health Sciences, "A. Avogadro" University of Eastern Piedmont, 28100 Novara, Italy.
Cytokine. 2013 Oct;64(1):322-30. doi: 10.1016/j.cyto.2013.05.021. Epub 2013 Jun 15.
ICOS and CD28 are expressed by T cells and are involved in costimulation of cytokine production in T helper (TH) cells. ICOS binds B7h expressed by several cell types, whereas CD28 binds B7.1 and B7.2 expressed by activated antigen presenting cells. This work investigated the role of B7h and B7.1 in TH17 and TH9 cell differentiation by assessing activity of recombinant B7h-Fc and B7.1-Fc on human naïve TH cells activated in the presence of different combinations of exogenous cytokines. In the presence of TGF-β1 and IL-1β (TH17 promoting condition), B7h-Fc was more effective than B7.1-Fc in inducing IL-17A and IL-10 secretion, whereas B7.1-Fc was more effective in inducing IL-17F. Dual costimulation with B7h-Fc and B7.1-Fc displayed an intermediate pattern with predominance of IL-17F over IL-17A, secretion of high levels of IL-10, and secretion of IL-9 levels lower than those induced by B7.1-Fc alone. In the presence of TGF-β1 and IL-4 (TH9 promoting condition), B7h-Fc induced IL-17A only, whereas B7.1-Fc induced also IL-17F, IL-10, and high levels of IL-9. Experiments on memory TH cells showed that B7h-Fc mainly supported secretion of IL-17A and IL-10, whereas B7.1-Fc supported secretion of IL-17A, IL-17F, IL-10, and IL-9. These data indicate that B7h and B7.1 play different roles in modulation of TH17 and TH9 differentiation. This plasticity might be important in the immune response to pathogens and tumors, and in the development of autoimmune diseases, and should be taken in consideration in designing of immunotherapeutic protocols triggering ICOS or CD28.
ICOS 和 CD28 表达于 T 细胞,参与辅助性 T 细胞(TH)细胞细胞因子产生的共刺激。ICOS 结合于几种细胞类型表达的 B7h,而 CD28 结合于活化抗原呈递细胞表达的 B7.1 和 B7.2。本研究通过评估重组 B7h-Fc 和 B7.1-Fc 对不同细胞因子组合激活的人初始 TH 细胞的活性,研究了 B7h 和 B7.1 在 TH17 和 TH9 细胞分化中的作用。在 TGF-β1 和 IL-1β(促进 TH17 分化的条件)存在的情况下,B7h-Fc 比 B7.1-Fc 更有效地诱导 IL-17A 和 IL-10 的分泌,而 B7.1-Fc 更有效地诱导 IL-17F 的分泌。B7h-Fc 和 B7.1-Fc 的双重共刺激显示出一种中间模式,IL-17F 的分泌优于 IL-17A,IL-10 的分泌水平较高,并且 IL-9 的分泌水平低于 B7.1-Fc 单独诱导的水平。在 TGF-β1 和 IL-4(促进 TH9 分化的条件)存在的情况下,B7h-Fc 仅诱导 IL-17A,而 B7.1-Fc 也诱导 IL-17F、IL-10 和高水平的 IL-9。对记忆 TH 细胞的实验表明,B7h-Fc 主要支持 IL-17A 和 IL-10 的分泌,而 B7.1-Fc 支持 IL-17A、IL-17F、IL-10 和 IL-9 的分泌。这些数据表明 B7h 和 B7.1 在调节 TH17 和 TH9 分化中发挥不同的作用。这种可塑性在病原体和肿瘤的免疫反应以及自身免疫性疾病的发展中可能很重要,在设计触发 ICOS 或 CD28 的免疫治疗方案时应予以考虑。