Department of Tumor Immunology, , Nijmegen Centre for Molecular Life Sciences, Radboud University Nijmegen Medical Centre, Nijmegen, The Netherlands.
J Immunol. 2010 Apr 15;184(8):4276-83. doi: 10.4049/jimmunol.0903286. Epub 2010 Mar 19.
Plasmacytoid dendritic cells (pDCs) play a major role in shaping both innate and adaptive immune responses, mainly via their production of large amounts of type I IFNs. pDCs are considered to primarily present endogenous Ags and are thought not to participate in the uptake and presentation of Ags from the extracellular environment, in contrast to their myeloid counterparts, which efficiently endocytose extracellular particulates. In this study, we show that human pDCs are able to phagocytose and process particulate forms of Ag entrapped in poly(lactic-coglycolic acid) microparticles. Furthermore, pDCs were also able to sense TLR ligands (TLR-Ls) incorporated in these particles, resulting in rapid pDC activation and high IFN-alpha secretion. Combining a tetanus toxoid peptide and TLR-Ls (CpG C and R848) in these microparticles resulted in efficient pDC activation and concomitant Ag-specific T cell stimulation. Moreover, particulate Ag was phagocytosed and presented more efficiently than soluble Ag, indicating that microparticles can be exploited to facilitate efficient delivery of antigenic cargo and immunostimulatory molecules to pDCs. Together, our results show that in addition to their potency to stimulate innate immunity, pDCs can polarize adaptive immune responses against exogenous particulate Ag. These results may have important consequences for the development of new immunotherapeutic strategies exploiting Ag and TLR-Ls encapsulated in microparticles to target APC subsets.
浆细胞样树突状细胞 (pDCs) 通过大量产生 I 型干扰素在先天和适应性免疫反应的形成中发挥主要作用。pDCs 被认为主要呈递内源性 Ag,并且被认为不参与从细胞外环境摄取和呈递 Ag,这与它们的髓样细胞不同,后者能够有效地内吞细胞外颗粒。在这项研究中,我们表明人 pDC 能够吞噬和处理包埋在聚(乳酸-乙醇酸)微球中的颗粒形式的 Ag。此外,pDC 还能够感知包含在这些颗粒中的 TLR 配体 (TLR-L),导致 pDC 的快速激活和高 IFN-α分泌。将破伤风类毒素肽和 TLR-L(CpG C 和 R848)结合在这些微球中,导致 pDC 的有效激活和伴随的 Ag 特异性 T 细胞刺激。此外,颗粒 Ag 的吞噬和呈递效率高于可溶性 Ag,表明微球可用于促进抗原性货物和免疫刺激性分子向 pDC 的有效递呈。总之,我们的结果表明,除了刺激先天免疫的能力外,pDC 还可以对抗外源性颗粒 Ag 诱导适应性免疫反应的极化。这些结果对于开发利用微球包封的 Ag 和 TLR-L 来靶向 APC 亚群的新免疫治疗策略可能具有重要意义。