Banerjee Devi K, Dhodapkar Madhav V, Matayeva Elyana, Steinman Ralph M, Dhodapkar Kavita M
Laboratory of Cellular Physiology and Immunology, Rockefeller University, 1230 York Avenue no. 176, New York, NY 10021, USA.
Blood. 2006 Oct 15;108(8):2655-61. doi: 10.1182/blood-2006-03-011353. Epub 2006 Jun 8.
CD4(+)CD25(+)FOXP3(+) regulatory T cells (Treg's) play an important role in the maintenance of immune tolerance. The mechanisms controlling the induction and maintenance of Treg's in humans need to be defined. We find that human myeloid dendritic cells (DCs) are superior to other antigen presenting cells for the maintenance of FOXP3(+) Treg's in culture. Coculture of DCs with autologous T cells leads to an increase in both the number of Treg's, as well as the expression of FOXP3 protein per cell both in healthy donors and myeloma patients. DC-mediated expansion of FOXP3(high) Treg's is enhanced by endogenous but not exogenous interleukin-2 (IL-2), and DC-T-cell contact, including the CD80/CD86 membrane costimulatory molecules. DCs also stimulate the formation of Treg's from CD25(-) T cells. The efficacy of induction of Treg's by DCs depends on the nature of the DC maturation stimulus, with inflammatory cytokine-treated DCs (Cyt-DCs) being the most effective Treg inducers. DC-induced Treg's from both healthy donors and patients with myeloma are functional and effectively suppress T-cell responses. A single injection of cytokine-matured DCs led to rapid enhancement of FOXP3(+) Treg's in vivo in 3 of 3 myeloma patients. These data reveal a role for DCs in increasing the number of functional FOXP3(high) Treg's in humans.
CD4(+)CD25(+)FOXP3(+)调节性T细胞(Treg细胞)在维持免疫耐受中发挥重要作用。控制人类Treg细胞诱导和维持的机制有待明确。我们发现,在培养过程中,人类髓样树突状细胞(DC)在维持FOXP3(+)Treg细胞方面优于其他抗原呈递细胞。DC与自体T细胞共培养可使健康供体和骨髓瘤患者体内的Treg细胞数量增加,且每个细胞的FOXP3蛋白表达也增加。内源性而非外源性白细胞介素-2(IL-2)以及DC-T细胞接触(包括CD80/CD86膜共刺激分子)可增强DC介导的FOXP3(高)Treg细胞的扩增。DC还可刺激CD25(-)T细胞形成Treg细胞。DC诱导Treg细胞的效能取决于DC成熟刺激的性质,经炎性细胞因子处理的DC(Cyt-DC)是最有效的Treg诱导剂。来自健康供体和骨髓瘤患者的DC诱导的Treg细胞具有功能,可有效抑制T细胞反应。单次注射细胞因子成熟的DC可使3例骨髓瘤患者中的3例体内FOXP3(+)Treg细胞迅速增加。这些数据揭示了DC在增加人类功能性FOXP3(高)Treg细胞数量方面的作用。