CTLA-4 blockade during dendritic cell based booster vaccination influences dendritic cell survival and CTL expansion.

Anders E Pedersen, Franca Ronchese
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引用次数: 8

Abstract

Dendritic cells (DCs) are potent antigen-presenting cells and critical for the priming of CD8+ T cells. Therefore the use of these cells as adjuvant cells has been tested in a large number of experimental and clinical vaccination studies, in particular cancer vaccine studies. A number of protocols are emerging that combine vaccination with CTL expanding strategies, such as e.g. blockade of CTLA-4 signalling. On the other hand, the lifespan and in vivo survival of therapeutic DCs have only been addressed in a few studies, although this is of importance for the kinetics of CTL induction during vaccination. We have previously reported that DCs loaded with specific antigens are eliminated by antigen specific CTLs in vivo and that this elimination affects the potential for in vivo CTL generation. We now show that CTLA-4 blockade increases the number of DC vaccine induced LCMV gp33 specific CTLs and the lysis of relevant in vivo targets. However, the CTLA-4 blockage dependent expansion of CTLs also affect DC survival during booster DC injections and our data suggest that during a booster DC vaccine, the largest increase in CTL levels is already obtained during the first vaccination.

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树突状细胞增强疫苗接种过程中CTLA-4阻断影响树突状细胞存活和CTL扩增。
树突状细胞(dc)是一种有效的抗原呈递细胞,对启动CD8+ T细胞至关重要。因此,使用这些细胞作为辅助细胞已经在大量的实验和临床疫苗接种研究中进行了测试,特别是癌症疫苗研究。许多方案正在出现,将疫苗接种与CTL扩展策略相结合,例如阻断CTLA-4信号传导。另一方面,治疗性dc的寿命和体内存活仅在少数研究中得到解决,尽管这对于疫苗接种期间CTL诱导的动力学很重要。我们以前曾报道过,携带特定抗原的dc在体内被抗原特异性CTL消除,这种消除影响体内CTL生成的潜力。我们现在发现CTLA-4阻断增加了DC疫苗诱导的LCMV gp33特异性ctl的数量和相关体内靶点的裂解。然而,CTLA-4阻断依赖性CTL扩增也会影响DC强化注射期间的DC存活,我们的数据表明,在DC强化疫苗期间,在第一次接种期间已经获得了最大的CTL水平增加。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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