首页> 美国卫生研究院文献>Mediators of Inflammation >Pathogen-Associated Molecular Patterns Induced Crosstalk between Dendritic Cells T Helper Cells and Natural Killer Helper Cells Can Improve Dendritic Cell Vaccination
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Pathogen-Associated Molecular Patterns Induced Crosstalk between Dendritic Cells T Helper Cells and Natural Killer Helper Cells Can Improve Dendritic Cell Vaccination

机译:病原相关的分子模式诱导树突状细胞T辅助细胞和自然杀伤辅助细胞之间的串扰可以改善树突状细胞的疫苗接种

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摘要

A coordinated cellular interplay is of crucial importance in both host defense against pathogens and malignantly transformed cells. The various interactions of Dendritic Cells (DC), Natural Killer (NK) cells, and T helper (Th) cells can be influenced by a variety of pathogen-associated molecular patterns (PAMPs) and will lead to enhanced CD8+ effector T cell responses. Specific Pattern Recognition Receptor (PRR) triggering during maturation enables DC to enhance Th1 as well as NK helper cell responses. This effect is correlated with the amount of IL-12p70 released by DC. Activated NK cells are able to amplify the proinflammatory cytokine profile of DC via the release of IFN-γ. The knowledge on how PAMP recognition can modulate the DC is of importance for the design and definition of appropriate therapeutic cancer vaccines. In this review we will discuss the potential role of specific PAMP-matured DC in optimizing therapeutic DC-based vaccines, as some of these DC are efficiently activating Th1, NK cells, and cytotoxic T cells. Moreover, to optimize these vaccines, also the inhibitory effects of tumor-derived suppressive factors, for example, on the NK-DC crosstalk, should be taken into account. Finally, the suppressive role of the tumor microenvironment in vaccination efficacy and some proposals to overcome this by using combination therapies will be described.
机译:在宿主抵抗病原体和恶性转化细胞方面,协调的细胞相互作用至关重要。树突状细胞(DC),自然杀伤(NK)细胞和T辅助(Th)细胞的各种相互作用可能会受到多种病原体相关分子模式(PAMP)的影响,并会导致CD8 + < / sup>效应T细胞反应。成熟期间触发的特定模式识别受体(PRR)使DC能够增强Th1和NK辅助细胞反应。该作用与DC释放的IL-12p70的量相关。活化的NK细胞能够通过释放IFN-γ来放大DC的促炎细胞因子谱。有关PAMP识别如何调节DC的知识对于设计和定义合适的治疗性癌症疫苗非常重要。在这篇综述中,我们将讨论特定的PAMP成熟的DC在优化基于DC的治疗性疫苗中的潜在作用,因为其中一些DC可以有效激活Th1,NK细胞和细胞毒性T细胞。此外,为了优化这些疫苗,还应考虑肿瘤来源的抑制因子对NK-DC串扰的抑制作用。最后,将描述肿瘤微环境在疫苗接种效力中的抑制作用,以及通过使用联合疗法克服该问题的一些建议。

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