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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >Delivery of viral-vectored vaccines by B cells represents a novel strategy to accelerate CD8+ T-cell recall responses.
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Delivery of viral-vectored vaccines by B cells represents a novel strategy to accelerate CD8+ T-cell recall responses.

机译:B细胞递送病毒载体疫苗代表了一种加速CD8 + T细胞召回反应的新策略。

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摘要

Rapid boosting of memory CD8(+) T cells (TM) is essential in cancer immunotherapy and the control of certain infectious diseases. However, effector T cells (TE) are a barrier to booster vaccination because they can rapidly kill antigen-bearing antigen-presenting cells (APCs) before TM are engaged. We demonstrate that viral-vectored vaccines delivered by B cells elicit robust TM expansion in the presence of TE, enabling booster immunizations to bypass TE-mediated negative feedback regulation. Our data indicate that viral vector-loaded B cells home to the follicular regions in secondary lymphoid organs, which are anatomically separated from TE and in close proximity to TM. The B cells, however, do not serve as APCs in this area. Rather, classic CD11c(+) dendritic cells serve to stimulate the secondary CD8(+) T-cell response. Our data reveal that B cells represent a novel and readily accessible delivery system that can effectively engage secondary CD8(+) T-cell activation for prime-boost strategies.
机译:快速增强记忆CD8(+)T细胞(TM)在癌症免疫疗法和某些传染病的控制中至关重要。但是,效应子T细胞(TE)是加强免疫接种的障碍,因为它们可以在参与TM之前迅速杀死带有抗原的抗原呈递细胞(APC)。我们证明,由B细胞传递的病毒载体疫苗在TE存在下引起健壮的TM扩展,从而使加强免疫可以绕过TE介导的负反馈调节。我们的数据表明,载有病毒载体的B细胞位于次级淋巴器官的滤泡区域,该区域在解剖学上与TE分离且与TM十分接近。但是,B细胞在该区域中不用作APC。而是,经典的CD11c(+)树突状细胞用于刺激次级CD8(+)T细胞反应。我们的数据表明,B细胞代表了一种新颖且易于使用的传递系统,可以有效地利用次级CD8(+)T细胞激活进行初免-加强策略。

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