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首页> 外文期刊>Developmental Immunology: Journal of Immunology Research >What Are the Molecules Involved in Regulatory T-Cells Induction by Dendritic Cells in Cancer?
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What Are the Molecules Involved in Regulatory T-Cells Induction by Dendritic Cells in Cancer?

机译:在癌症中,参与树突状细胞调节性T细胞诱导的分子是什么?

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摘要

Dendritic cells (DCs) are essential for the maintenance of homeostasis in the organism, and they do that by modulating lymphocyte priming, expansion, and response patterns according to signals they receive from the environment. The induction of suppressive lymphocytes by DCs is essential to hinder the development of autoimmune diseases but can be reverted against homeostasis when in the context of neoplasia. In this setting, the induction of suppressive or regulatory T cells contributes to the establishment of a state of tolerance towards the tumor, allowing it to grow unchecked by an otherwise functional immune system. Besides affecting its local environment, tumor also has been described as potent sources of anti-inflammatory/suppressive factors, which may act systemically, generating defects in the differentiation and maturation of immune cells, far beyond the immediate vicinity of the tumor mass. Cytokines, as IL-10 and TGF-beta, as well as cell surface molecules like PD-L1 and ICOS seem to be significantly involved in the redirection of DCs towards tolerance induction, and recent data suggest that tumor cells may, indeed, modulate distinct DCs subpopulations through the involvement of these molecules. It is to be expected that the identification of such molecules should provide molecular targets for more effective immunotherapeutic approaches to cancer.
机译:树突状细胞(DC)对于维持生物体内的动态平衡至关重要,它们通过根据它们从环境中接收到的信号来调节淋巴细胞的启动,扩增和反应模式来达到此目的。 DC诱导抑制性淋巴细胞对于阻止自身免疫性疾病的发展是必不可少的,但是在瘤形成的情况下可以逆转体内平衡。在这种情况下,抑制性或调节性T细胞的诱导有助于建立对肿瘤的耐受状态,使其不受其他功能性免疫系统的控制而生长。除了影响其局部环境外,肿瘤还被描述为抗炎/抑制因子的有效来源,它们可能具有系统性作用,在免疫细胞的分化和成熟中产生缺陷,远远超出了肿瘤块的紧邻范围。细胞因子(如IL-10和TGF-beta)以及诸如PD-L1和ICOS之类的细胞表面分子似乎与DC向耐受诱导的重定向密切相关,而最近的数据表明,肿瘤细胞确实可以调节不同的DC通过这些分子的参与而亚群化。可以预期,对此类分子的鉴定应为更有效的癌症免疫治疗方法提供分子靶标。

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