Fenoglio Daniela, Ferrera Francesca, Fravega Marco, Balestra Piercesare, Battaglia Florinda, Proietti Michele, Andrei Cristina, Olive Daniel, Antonio La Cava, Indiveri Francesco, Filaci Gilberto
Centre of Excellence for Biomedical Research, University of Genoa, Genoa, Italy.
Hum Immunol. 2008 Nov;69(11):745-50. doi: 10.1016/j.humimm.2008.08.282. Epub 2008 Sep 29.
Among the different regulatory T lymphocyte (Treg) subpopulations, non-antigen-specific CD8+CD28- Treg (CD8+CD28- Treg) have been characterized for being involved in the pathogenesis of autoimmune diseases and cancer. A better phenotypic and functional characterization of this regulatory T-cell subset could help in identifying modulators of their activity with therapeutic finalities. The results of the present work show that Foxp3, a transcriptional marker of natural CD4+CD25+ Treg, is not expressed by CD8+CD28- Treg, thus indicating different origin and pathways of function for the latter with respect to the former regulatory cell type. Moreover, the results underline that the glucocorticoid induced TNF receptor is involved in generation processes but not in suppressor function of CD8+CD28- Treg. Phenotypic analyses demonstrate that, during their commitment from circulating nonregulatory CD8+CD28- T lymphocytes to Treg (an interleukin-10-dependent process), these cells downmodulate the IL7-receptor, thus differentiating them from long-lived, memory CD8+ T lymphocytes. Interestingly, CD8+CD28- Treg have been found to be resistant to the inhibitory effects of methylprednisolone, one of the most frequently administered corticosteroid drug used in therapy for immunosuppressive purposes.
在不同的调节性T淋巴细胞(Treg)亚群中,非抗原特异性CD8⁺CD28⁻ Treg(CD8⁺CD28⁻ Treg)已被证实参与自身免疫性疾病和癌症的发病机制。对这一调节性T细胞亚群进行更好的表型和功能特征描述,有助于识别具有治疗目的的其活性调节剂。本研究结果表明,天然CD4⁺CD25⁺ Treg的转录标志物Foxp3在CD8⁺CD28⁻ Treg中不表达,这表明后者相对于前者调节性细胞类型具有不同的起源和功能途径。此外,结果强调糖皮质激素诱导的TNF受体参与CD8⁺CD28⁻ Treg的生成过程,但不参与其抑制功能。表型分析表明,在它们从循环的非调节性CD8⁺CD28⁻ T淋巴细胞向Treg(一个白细胞介素-10依赖的过程)转变期间,这些细胞下调IL7受体,从而将它们与长寿的记忆性CD8⁺ T淋巴细胞区分开来。有趣的是,已发现CD8⁺CD28⁻ Treg对甲基强的松龙的抑制作用具有抗性,甲基强的松龙是治疗中最常用的用于免疫抑制目的的皮质类固醇药物之一。