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The diverging roles of dendritic cells in kidney allotransplantation

机译:树突状细胞在肾脏同种异体移植中的分散作用

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Dendritic cells (DCs) are a family of antigen presenting cells that play a paramount role in bridging innate and adaptive immunity. In murine models several subtypes of DCs have been identified, including classical DCs, monocyte-derived DCs, and plasmacytoid DCs. Quiescent, immature DCs and some subtypes of plasmacytoid cells favor the expression of regulatory T cells, but in an inflammatory milieu DCs become mature and after intercepting the antigen migrate to lymphatic system where they present the antigen to naive T cells. Transplant rejection largely depends on the phenotype and maturation of DCs. The ischemia-reperfusion injury causes the release of endogenous molecules that are recognized as danger signals by the pattern recognition receptor of the innate immunity with subsequent activation of inflammatory cells and mediators. In this environment DCs become mature and migrate to lymphonodes where they present the alloantigen to T cells and direct their differentiation towards Th1 and Th17 effector cells. On the other hand, manipulation of DCs may favor T cell differentiation towards tolerant Th2 and T regulators (Treg). Experimental studies in murine models showed the possibility of inducing an operational tolerance by injecting immature tolerogenic DCs. Recently, such a possibility has been also confirmed in primates. Although manipulation of DCs may represent an important step ahead in kidney transplantation, a number of technical and ethical issues should be solved before its clinical application. (C) 2015 Elsevier Inc. All rights reserved.
机译:树突状细胞(DC)是一类抗原呈递细胞,在桥接先天和适应性免疫中起着至关重要的作用。在鼠模型中,已鉴定出DC的几种亚型,包括经典DC,单核细胞衍生的DC和浆细胞样DC。静止的,未成熟的DC和浆细胞样细胞的某些亚型有利于调节性T细胞的表达,但在炎性环境中DC变得成熟,并且在拦截抗原后迁移到淋巴系统,然后将抗原呈递给幼稚T细胞。移植排斥在很大程度上取决于DC的表型和成熟度。缺血-再灌注损伤导致内源性分子的释放,该内源性分子被先天免疫的模式识别受体识别为危险信号,随后激活炎症细胞和介体。在这种环境下,DC逐渐成熟并迁移到淋巴结,在那里它们将同种抗原呈递给T细胞,并引导它们向Th1和Th17效应细胞分化。另一方面,DC的操作可能有助于T细胞向耐受Th2和T调节剂(Treg)分化。在鼠模型中进行的实验研究表明,通过注入未成熟的致耐受性DC可以诱导操作耐受性。最近,在灵长类动物中也证实了这种可能性。尽管DC的操作可能代表了肾脏移植的重要一步,但在临床应用之前,应解决许多技术和伦理问题。 (C)2015 Elsevier Inc.保留所有权利。

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