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Tolerogenic Dendritic Cells on Transplantation: Immunotherapy Based on Second Signal Blockage

机译:移植物上的耐受性树突细胞:基于第二信号堵塞的免疫疗法

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Dendritic cells (DCs), the most important professional antigen-presenting cells (APC), play crucial role in both immunity and tolerance. It is well known that DCs are able to mount immune responses against foreign antigens and simultaneously tolerate self-antigens. Since DCs can be modulated depending on the surrounding microenvironment, they can act as a bridge between innate and adaptive immunity. However, the mechanisms that support this dual role are not entirely clear. Recent studies have shown that DCs can be manipulated ex vivo in order to trigger their tolerogenic profile, what can be a tool to be used in clinical trials aiming the treatment of various diseases and the prevention of transplant rejection. In this sense, the blockage of costimulatory molecules on DC, in the attempt of inhibiting the second signal in the immunological synapse, can be considered as one of the main strategies under development. This review brings an update on current therapies using tolerogenic dendritic cells modulated with costimulatory blockers with the aim of reducing transplant rejection. However, although there are current clinical trials using tolerogenic DC to treat allograft rejection, the actual challenge is to modulate these cells in order to maintain a permanent tolerogenic profile.
机译:树突细胞(DCS),最重要的专业抗原呈递细胞(APC),在免疫和耐受性中起至关重要的作用。众所周知,DC能够将免疫反应与外来抗原的免疫反应升高,同时耐受自抗原。由于DCS可以根据周围的微环境调节,因此它们可以作为先天和自适应免疫之间的桥梁。但是,支持这种双重作用的机制并不完全清楚。最近的研究表明,可以操纵DC,以便触发其耐受性剖面,可以在旨在治疗各种疾病和预防移植排斥反应的临床试验中的工具。从这个意义上讲,在DC上堵塞DC的试图抑制免疫突触中的第二个信号,可以被视为开发的主要策略之一。本综述利用具有共刺激阻滞剂调制的耐受性树突细胞来提出关于当前疗法的更新,其目的是减少移植抑制的目的。然而,尽管存在使用耐受性DC治疗同种异体移植抑制的临床试验,但实际挑战是调节这些细胞以保持永久性耐受性剖面。

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