基于人树突状细胞的体外模型评估结核分枝杆菌SO2疫苗的免疫原性。

ALTEX Pub Date : 2014-01-01 Epub Date: 2014-05-20 DOI:10.14573/altex.1311041
Marilena P Etna, Elena Giacomini, Martina Severa, Manuela Pardini, Nacho Aguilo, Carlos Martin, Eliana M Coccia
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引用次数: 18

摘要

在结核病候选疫苗中,SO2是最近进入临床试验的第一个减毒活疫苗的原型。为了研究SO2在体外人体免疫学背景下刺激适当免疫反应的能力,在人原代树突状细胞(DC)中对SO2、目前的卡介苗(BCG)疫苗和结核分枝杆菌(Mtb)促进的效果进行了比较分析,这是疫苗诱导免疫的关键调节剂。特别是,我们发现SO2促进成熟标志物的表达与BCG相似,但程度低于Mtb。此外,so2感染的DC比bcg感染的细胞释放更高水平的白细胞介素(IL)-23,这解释了干扰素(IFN)-γ产生T细胞以IL-12不依赖的方式扩增。在自体混合白细胞反应环境中,也观察到产生il -17的T细胞对SO2感染的反应。有趣的是,细胞凋亡和自噬通量(MHC II类复合体内抗原呈递所需的事件)在SO2感染的DC中不受影响,与Mtb刺激相反。总之,我们的研究结果表明,SO2是一种很有前途的结核病疫苗候选物,它表现出一种减毒表型,并在DC中促进比卡介苗更强的刺激Th反应的能力。有趣的是,使用基于人类dc的实验环境获得的数据反映了动物模型研究的结果,表明该系统可用于有效和快速地降低新的结核候选疫苗的选择,有助于实现“3Rs”目标。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A human dendritic cell-based in vitro model to assess Mycobacterium tuberculosis SO2 vaccine immunogenicity.

Among the tuberculosis (TB) vaccine candidates, SO2 is the prototype of the first live-attenuated vaccine that recently entered into clinical trials. To investigate the capacity of SO2 to stimulate an appropriate immune response in vitro within a human immunological context, a comparative analysis of the effects promoted by SO2, the current Bacille Calmette-Guerin (BCG) vaccine and Mycobacterium tuberculosis (Mtb) was conducted in human primary dendritic cells (DC), which are critical modulators of vaccine-induced immunity. In particular, we found that SO2 promotes the expression of maturation markers similarly to BCG but at a lower extent than Mtb. Moreover, SO2-infected DC released higher levels of interleukin (IL)-23 than BCG-infected cells, which account for the expansion of interferon (IFN)-γ-producing T cells in an IL-12-independent manner. In the autologous mixed leukocyte reaction setting, the expansion of IL-17-producing T cells was also observed in response to SO2 infection. Interestingly, apoptosis and autophagic flux, events required for the antigen presentation within MHC class II complex, were not affected in DC infected with SO2, conversely to what observed upon Mtb stimulation. Collectively, our results indicate that SO2 represents a promising TB vaccine candidate, which displays an attenuated phenotype and promotes in DC a stronger capacity to stimulate the Th response than BCG vaccine. Interestingly, the data obtained by using the human DC-based experimental setting mirrored the results derived from studies in animal models, suggesting that this system could be used for an efficient and rapid down-selection of new TB vaccine candidates, contributing to achieve the "3Rs" objective.

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