Genetic vaccine for tuberculosis (pVAXhsp65) primes neonate mice for a strong immune response at the adult stage.

Ana Cláudia Pelizon, Douglas R Martins, Sofia F G Zorzella, Ana Paula F Trombone, Júlio C C Lorenzi, Robson F Carvalho, Izaíra T Brandão, Arlete A M Coelho-Castelo, Célio L Silva, Alexandrina Sartori
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引用次数: 9

Abstract

Background: Vaccination of neonates is generally difficult due to the immaturity of the immune system and consequent higher susceptibility to tolerance induction. Genetic immunization has been described as an alternative to trigger a stronger immune response in neonates, including significant Th1 polarization. In this investigation we analysed the potential use of a genetic vaccine containing the heat shock protein (hsp65) from Mycobacterium leprae (pVAXhsp65) against tuberculosis (TB) in neonate mice. Aspects as antigen production, genomic integration and immunogenicity were evaluated.

Methods: Hsp65 message and genomic integration were evaluated by RT-PCR and Southern blot, respectively. Immunogenicity of pVAXhsp65 alone or combined with BCG was analysed by specific induction of antibodies and cytokines, both quantified by ELISA.

Results: This DNA vaccine was transcribed by muscular cells of neonate mice without integration into the cellular genome. Even though this vaccine was not strongly immunogenic when entirely administered (three doses) during early animal's life, it was not tolerogenic. In addition, pVAXhsp65 and BCG were equally able to prime newborn mice for a strong and mixed immune response (Th1 + Th2) to pVAXhsp65 boosters administered later, at the adult life.

Conclusion: These results suggest that pVAXhsp65 can be safely used as a priming stimulus in neonate animals in prime-boost similar strategies to control TB. However, priming with BCG or pVAXhsp65, directed the ensuing immune response triggered by an heterologous or homologous booster, to a mixed Th1/Th2 pattern of response. Measures as introduction of IL-12 or GM-CSF genes in the vaccine construct or even IL-4 neutralization, are probably required to increase the priming towards Th1 polarization to ensure control of tuberculosis infection.

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结核病基因疫苗(pVAXhsp65)使新生小鼠在成年期产生强烈的免疫反应。
背景:由于免疫系统不成熟,新生儿对耐受性诱导的易感性较高,因此通常难以接种疫苗。遗传免疫被认为是引发新生儿更强免疫反应的一种替代方法,包括显著的Th1极化。在这项研究中,我们分析了一种含有麻风分枝杆菌(pVAXhsp65)热休克蛋白(hsp65)的基因疫苗在新生儿小鼠中抗结核病(TB)的潜在用途。对抗原产生、基因组整合和免疫原性等方面进行了评价。方法:采用RT-PCR和Southern blot分别检测Hsp65信息和基因组整合。通过特异性诱导抗体和细胞因子分析pVAXhsp65单独或与BCG联合的免疫原性,并通过ELISA定量。结果:该DNA疫苗可在新生小鼠肌肉细胞中转录,但未整合到细胞基因组中。尽管这种疫苗在动物早期完全接种(三剂)时不具有很强的免疫原性,但它不具有耐受性。此外,pVAXhsp65和卡介苗同样能够使新生小鼠在成年后对pVAXhsp65增强剂产生强烈的混合免疫反应(Th1 + Th2)。结论:pVAXhsp65可以安全地作为启动刺激剂用于启动-促进类似策略的新生动物控制结核病。然而,接种BCG或pVAXhsp65后,由异种或同源增强剂触发的免疫应答可导向Th1/Th2混合应答模式。可能需要在疫苗构建中引入IL-12或GM-CSF基因,甚至是IL-4中和等措施来增加Th1极化的启动,以确保结核病感染的控制。
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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