Jin Yide, Fuller Laphalle, Ciancio Gaetano, Burke George W, Tzakis Andreas G, Ricordi Camillo, Miller Joshua, Esquenzai Violet
Department of Surgery, University of Miami School of Medicine, Miami, FL 33101, USA.
Hum Immunol. 2004 Feb;65(2):93-103. doi: 10.1016/j.humimm.2003.11.002.
Several reports including those from this laboratory have demonstrated that bone marrow cells (BMC) downregulate in vitro both mixed leukocyte reaction and cytotoxic T lymphocyte reactions. We consequently hypothesized that a general property of immature cells of hematopoietic organs is their ability to suppress immune reactivity. As one of these suppressive activities, the lack of costimulatory molecules was proposed as a mechanism by which immature antigen presenting cells of the bone marrow might be involved. In the present report, we used two culture environments, each of which would regulate a different maturation pattern of human bone marrow-derived enriched dendritic antigen presenting cells (DC or APC) to determine the respective effects on in vitro immune regulatory function. Human BMC depleted of CD3+ cells were cultured with either: interleukin-4 (IL-4) and granulocyte macrophage-colony stimulating factor (GM-CSF), to maintain DC-enriched populations in an immature state (iAPC); or an interferon-gamma (IFNgamma), tumor necrosis factor alpha (TNF-alpha), GM-CSF, LPS, and IL-6 cocktail to promote the maturation of DC-enriched APC (mAPC). These iAPC and mAPC were, respectively, phenotypically characterized and also tested in vitro for the following: (1) both direct and indirect-antigen presentation functions; (2) immune regulatory functions on the response of autologous and allogeneic peripheral blood lymphocytes (PBL); and (3) Western blot analysis determining the levels of both major histocompatibility complex (MHC) class I related cytoplasmic transporter molecules associated with antigen processing (TAP1) and as well as proteasome activator molecules (PA28alpha). The iAPC population expressed fewer dendritic cell markers (CD83 and DCsign), and costimulator molecules (CD86 and CD40) than the mAPC, such that there was an approximate threefold increase in expression of CD83, 2.5-fold increase in DCsign, and a threefold increase in CD40 and CD86 on mAPC than on iAPC (p=0.005 for CD83; p=0.001 for DCsign; p=0.001 for CD86; and p=0.001 for CD40). In lymphoproliferative assays, indirect and direct alloantigen presentation by iAPC was weaker than by mAPC (p=0.05 and 0.04). In addition, iAPC were able to downregulate allogeneic CTL responses. Also, after pulsing with Epstein-Barr virus (EBV) protein antigens, the iAPC were less efficient in their presentation to autologous EBV-specific T-cell lines, and caused an inhibition of EBV-CTL generation. The expression of TAP1 and PA28alpha was reduced in iAPC in comparison to mAPC. These findings support the notion that a maturation state of BMC-derived APC correlates with their capacity to present antigen. The observed in vitro deficiency of this function by immature bone marrow cells may therefore contribute to the immune downregulatory capacity seen in the BMC compartment.
包括本实验室的报告在内,已有多项研究表明,骨髓细胞(BMC)在体外可下调混合淋巴细胞反应和细胞毒性T淋巴细胞反应。因此,我们推测造血器官未成熟细胞的一个普遍特性是它们具有抑制免疫反应性的能力。作为这些抑制活性之一,有人提出缺乏共刺激分子是骨髓未成熟抗原呈递细胞可能参与其中的一种机制。在本报告中,我们使用了两种培养环境,每种环境都会调节人骨髓来源的富集树突状抗原呈递细胞(DC或APC)的不同成熟模式,以确定它们对体外免疫调节功能的各自影响。去除CD3 +细胞的人BMC与以下物质一起培养:白细胞介素-4(IL-4)和粒细胞巨噬细胞集落刺激因子(GM-CSF),以使富含DC的群体维持在未成熟状态(iAPC);或干扰素-γ(IFNγ)、肿瘤坏死因子α(TNF-α)、GM-CSF、脂多糖(LPS)和IL-6混合物,以促进富含DC的APC成熟(mAPC)。分别对这些iAPC和mAPC进行表型特征分析,并在体外进行以下测试:(1)直接和间接抗原呈递功能;(2)对自体和异体外周血淋巴细胞(PBL)反应的免疫调节功能;(3)蛋白质印迹分析,以确定与抗原加工相关的主要组织相容性复合体(MHC)I类相关细胞质转运分子(TAP1)以及蛋白酶体激活分子(PA28α)的水平。与mAPC相比,iAPC群体表达的树突状细胞标志物(CD83和DCsign)以及共刺激分子(CD86和CD40)较少,因此mAPC上CD83的表达增加了约三倍,DCsign增加了2.5倍,CD40和CD86比iAPC增加了三倍(CD83,p = 0.005;DCsign,p = 0.001;CD86,p = 0.001;CD40,p = 0.001)。在淋巴细胞增殖试验中,iAPC的间接和直接同种异体抗原呈递比mAPC弱(p = 0.05和0.04)。此外,iAPC能够下调异体CTL反应。而且,在用爱泼斯坦-巴尔病毒(EBV)蛋白抗原脉冲后,iAPC向自体EBV特异性T细胞系呈递抗原的效率较低,并导致EBV-CTL生成受到抑制。与mAPC相比,iAPC中TAP1和PA28α的表达降低。这些发现支持了BMC来源的APC的成熟状态与其呈递抗原的能力相关的观点。因此,未成熟骨髓细胞在体外观察到的这种功能缺陷可能有助于BMC区室中所见的免疫下调能力。