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细胞因子在树突状细胞生成和成熟过程中的作用:最新进展

Cytokines in the generation and maturation of dendritic cells: recent advances.

作者信息

Zou Gang M, Tam Ying K

机构信息

Section of Bone Marrow Transplantation and Cell Therapy, Rush Cancer Institute, Rush University, Chicago, IL, USA.

出版信息

Eur Cytokine Netw. 2002 Apr-Jun;13(2):186-99.

Abstract

Dendritic cells (DCs) are extremely efficient antigen presenting cells (APCs) that are potent stimulators of both T and B cell-mediated immune responses. Although DCs are normally present in very small numbers in the peripheral blood (PB), recent advances have made it possible to generate relatively large numbers of cells in culture. DCs can be differentiated in vitro from various cellular sources, including bone marrow (BM), cord blood (CB) and PB mononuclear cells (PBMCs). Although a wide variety of conditions have been reported to be able to support DC generation, the majority of research and clinical protocols to date differentiate DCs from precursors using granulocyte-macrophage colony stimulating factor (GM-CSF) in combination with either tumor necrosis factor-(TNF-)alpha or interleukin (IL)-4. However, a diverse array of cytokines has been shown to be able to induce DC differentiation under a variety of conditions. According to recent reports, cytokines such as IL-2, IL-6, IL-7, IL-13, IL-15 and hepatocyte growth factor (HGF), in combination or even, in some cases, alone, can contribute to the generation of DCs from either monocytes or CD34+ cells. Although the majority of cytokine combinations include GM-CSF, some do not. For example, Flt3 ligand (FL), in conjuction with IL-6 (in the absence of GM-CSF), has been reported to be able to induce DC differentiation from BM cells in a murine system. Other agents can play a dual role in DC activity. CD40 ligand (CD40L), as a single agent, has been shown to be able to generate DCs from PB monocytes, while numerous other reports have also demonstrated its role as a potent maturation factor. In contrast, for other cytokines such as IL-16 or IL-17, although there is no data for a role in DC generation, they have been reported to be involved in promoting DC maturation in vitro as defined by upregulation of costimulatory molecules, major histocompatibility complex (MHC) antigens and antigen presenting/T lymphocyte stimulatory capacity. Furthermore, cytokines such as stem cell factor (SCF) and FL have been shown to dramatically enhance in vivo DC recovery. The wide variety of cytokines and conditions that have been shown to be able to influence DC differentiation and activity to amply demonstrate the extreme heterogeneity found in the DC population, something that is reflected in the diverse phenotypes, functions and ontogeny displayed by DCs. This diversity may account for the large number of roles that have been attributed to DCs in the development and function of the immune system and, in turn, emphasizes the potential as well as the challenges of modifying specific aspects of the immune response system by manipulating specific DC subpopulations.

摘要

树突状细胞(DCs)是极其高效的抗原呈递细胞(APC),是T细胞和B细胞介导的免疫反应的强力刺激剂。尽管DCs通常在外周血(PB)中数量极少,但最近的进展使得在培养中产生相对大量的细胞成为可能。DCs可以在体外从多种细胞来源分化而来,包括骨髓(BM)、脐血(CB)和PB单核细胞(PBMCs)。尽管据报道有各种各样的条件能够支持DC的生成,但迄今为止,大多数研究和临床方案都是使用粒细胞 - 巨噬细胞集落刺激因子(GM - CSF)与肿瘤坏死因子 - (TNF - )α或白细胞介素(IL) - 4联合从前体细胞中分化DCs。然而,已证明多种细胞因子在各种条件下都能够诱导DC分化。根据最近的报道,诸如IL - 2、IL - 6、IL - 7、IL - 13、IL - 15和肝细胞生长因子(HGF)等细胞因子,在某些情况下联合使用甚至单独使用,都可以促进单核细胞或CD34 +细胞生成DCs。尽管大多数细胞因子组合都包括GM - CSF,但有些则不然。例如,据报道,Flt3配体(FL)与IL - 6(在没有GM - CSF的情况下)联合,能够在小鼠系统中诱导BM细胞分化为DCs。其他因子在DC活性中可以发挥双重作用。CD40配体(CD40L)作为单一因子,已被证明能够从PB单核细胞生成DCs,而许多其他报道也证明了其作为强力成熟因子的作用。相比之下,对于其他细胞因子,如IL - 16或IL - 17,尽管没有数据表明它们在DC生成中起作用,但据报道它们参与体外促进DC成熟,这是通过共刺激分子、主要组织相容性复合体(MHC)抗原的上调以及抗原呈递/T淋巴细胞刺激能力来定义的。此外,诸如干细胞因子(SCF)和FL等细胞因子已被证明能显著增强体内DC的恢复。已证明能够影响DC分化和活性的各种各样的细胞因子和条件充分证明了DC群体中存在的极端异质性,这反映在DCs所展示的不同表型、功能和个体发育中。这种多样性可能解释了DCs在免疫系统发育和功能中被赋予的大量作用,反过来,强调了通过操纵特定DC亚群来改变免疫反应系统特定方面的潜力以及挑战。

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