Salio Mariolina, Palmowski Michael J, Atzberger Ann, Hermans Ian F, Cerundolo Vincenzo
Cancer Research Tumor Immunology Unit, Weatherall Institute of Molecular Medicine, John Radcliffe Hospital, Headley Way, OX3 9DS Oxford, UK.
J Exp Med. 2004 Feb 16;199(4):567-79. doi: 10.1084/jem.20031059.
Plasmacytoid dendritic cells (PDCs) are a unique leukocyte population capable of secreting high levels of type I interferon (IFN) in response to viruses and bacterial stimuli. In vitro experiments have shown that upon maturation, human and murine PDCs develop into potent immunostimulatory cells; however, their ability to prime an immune response in vivo remains to be addressed. We report that CpG-matured murine PDCs are capable of eliciting in naive mice antigen-specific CTLs against endogenous antigens as well as exogenous peptides, but not against an exogenous antigen. Type I IFN is not required for priming, as injection of CpG-matured PDCs into type I IFN receptor-deficient mice elicits functional CTL responses. Mature PDCs prime CTLs that secrete IFN-gamma and protect mice from a tumor challenge. In contrast, immature PDCs are unable to prime antigen-specific CTLs. However, mice injected with immature PDCs are fully responsive to secondary antigenic challenges, suggesting that PDCs have not induced long-lasting tolerance via anergic or regulatory T cells. Our results underline the heterogeneity and plasticity of different antigen-presenting cells, and reveal an important role of mature PDCs in priming CD8 responses to endogenous antigens, in addition to their previously reported ability to modulate antiviral responses via type I IFN.
浆细胞样树突状细胞(pDC)是一种独特的白细胞群体,能够在响应病毒和细菌刺激时分泌高水平的I型干扰素(IFN)。体外实验表明,成熟后,人和小鼠的pDC会发育成强大的免疫刺激细胞;然而,它们在体内引发免疫反应的能力仍有待研究。我们报告称,经CpG成熟的小鼠pDC能够在未免疫小鼠中引发针对内源性抗原以及外源性肽段的抗原特异性CTL,但不能引发针对外源性抗原的CTL。启动过程不需要I型干扰素,因为将经CpG成熟的pDC注射到I型干扰素受体缺陷小鼠中会引发功能性CTL反应。成熟的pDC启动分泌IFN-γ的CTL,并保护小鼠免受肿瘤攻击。相比之下,未成熟的pDC无法启动抗原特异性CTL。然而,注射了未成熟pDC的小鼠对二次抗原刺激有充分反应,这表明pDC并未通过无反应性或调节性T细胞诱导持久的耐受性。我们的结果强调了不同抗原呈递细胞的异质性和可塑性,并揭示了成熟pDC在启动对内源性抗原的CD8反应中的重要作用,此外它们还具有先前报道的通过I型干扰素调节抗病毒反应的能力。