van Duivenvoorde Leonie M, van Mierlo Geertje J D, Boonman Zita F H M, Toes René E M
Department of Rheumatology, Leiden University Medical Center, The Netherlands.
Immunobiology. 2006;211(6-8):627-32. doi: 10.1016/j.imbio.2006.05.014. Epub 2006 Jul 5.
Adaptive immune responses are orchestrated by specialized professional antigen-presenting cells (APCs), the dendritic cells (DCs), which play crucial roles as initiators and modulators of adaptive immune responses. A main feature of DCs is their phenotypic and functional plasticity. In the absence of any inflammation or pathogenic elements, most DCs in peripheral tissues and lymphoid organs have a resting, immature phenotype characterized by high endocytic capacity and low surface expression of MHC- and costimulatory molecules. However, upon interaction with microbial ligands, pro-inflammatory cytokines or CD40Ligand, DCs rapidly acquire an activated phenotype. These mature DCs have a very efficient T cell-priming ability as a consequence of upregulation of MHC- and costimulatory molecules on their cell surface. For this reason, DC-based vaccines have been used successfully to combat infections and malignancies. Nonetheless, evidence is accumulating that, especially immature, or semi-matured, DCs also have a potent ability to tolerize T cells or prevent undesired immune reactions. Therefore, current and prospective strategies to promote the inherent tolerogenic potential of DCs are a rational approach for the therapy of autoimmune diseases such as rheumatoid arthritis (RA). This review summarizes some aspects of the intriguing ability of DCs to steer the outcome of immunity and their potency to modulate the outcome of various pathological conditions.
适应性免疫反应由专门的专业抗原呈递细胞(APC)——树突状细胞(DC)精心调控,DC作为适应性免疫反应的启动者和调节者发挥着关键作用。DC的一个主要特征是其表型和功能的可塑性。在没有任何炎症或致病因素的情况下,外周组织和淋巴器官中的大多数DC具有静止、未成熟的表型,其特征是内吞能力高,MHC和共刺激分子的表面表达低。然而,在与微生物配体、促炎细胞因子或CD40配体相互作用后,DC迅速获得活化表型。这些成熟的DC由于其细胞表面MHC和共刺激分子的上调而具有非常有效的T细胞启动能力。因此,基于DC的疫苗已成功用于对抗感染和恶性肿瘤。尽管如此,越来越多的证据表明,尤其是未成熟或半成熟的DC也具有使T细胞耐受或预防不良免疫反应的强大能力。因此,目前和未来促进DC固有耐受性潜能的策略是治疗类风湿性关节炎(RA)等自身免疫性疾病的合理方法。本综述总结了DC引导免疫结果的有趣能力及其调节各种病理状况结果的潜能的一些方面。