Institute of Virology and Immunobiology, University of Wuerzburg, Germany.
Institute of Virology and Immunobiology, University of Wuerzburg, Germany.
Immunobiology. 2014 Mar;219(3):230-40. doi: 10.1016/j.imbio.2013.10.006. Epub 2013 Oct 24.
Removal of apoptotic cells, which appear during the steady state, is a pre-requisite to prevent generation of secondary necrotic cells that may lead to autoimmunity. The recognition of apoptotic material by dendritic cells (DCs) has been proposed to convert them into tolerogenic DCs equipped with specialized tolerogenic mechanisms on T cells. However, comparative studies to demonstrate functional alterations of DCs upon exposure to apoptotic cells have not been performed so far. Here we show that immature murine bone marrow-derived DCs generated with GM-CSF (GM-DCs) or Flt3L (FL-DCs) interact with live or apoptotic syngeneic thymocytes. As expected, GM-DCs phagocytose apoptotic but not live cells, FL-DCs only show trogocytosis of membrane parts. Interaction with live or apoptotic thymocytes did not lead to DC maturation. Both GM-DCs and FL-DCs present OVA as protein, peptide and membrane-associated antigens. Interestingly, only GM-DCs were able to induce T cell anergy or convert naïve T cells into FoxP3⁺ regulatory T cells (Tregs) but FL-DCs did not show either of these effects. Unexpectedly, exposure of immature GM-DCs to live or apoptotic thymocytes did not improve DC functions in both types of in vitro T cell tolerance induction assays. Together, our data suggest that these tolerogenic in vitro measures of immature BM-DCs are not further enhanced by exposure to apoptotic cells and may depend on the generating cytokine.
清除稳定状态下出现的凋亡细胞是防止产生继发性坏死细胞从而导致自身免疫的前提条件。树突状细胞 (DC) 识别凋亡物质已被提议将其转化为具有专门耐受机制的耐受原性 DC,从而作用于 T 细胞。然而,迄今为止尚未进行比较研究以证明 DC 在暴露于凋亡细胞后功能发生改变。在这里,我们表明,用 GM-CSF(GM-DC)或 Flt3L(FL-DC)生成的未成熟鼠骨髓来源的 DC 与活的或凋亡的同种胸腺细胞相互作用。如预期的那样,GM-DC 吞噬凋亡但不吞噬活细胞,而 FL-DC 仅显示细胞膜部分的 trogocytosis。与活的或凋亡的胸腺细胞的相互作用不会导致 DC 成熟。GM-DC 和 FL-DC 均将 OVA 作为蛋白质、肽和膜相关抗原呈现。有趣的是,只有 GM-DC 能够诱导 T 细胞失能或将幼稚 T 细胞转化为 FoxP3⁺调节性 T 细胞 (Treg),而 FL-DC 则没有这些作用。出乎意料的是,未成熟的 GM-DC 暴露于活的或凋亡的胸腺细胞并不能改善两种类型的体外 T 细胞耐受诱导试验中的 DC 功能。总之,我们的数据表明,这些未成熟 BM-DC 的体外耐受措施不会因暴露于凋亡细胞而进一步增强,并且可能取决于生成细胞因子。