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首页> 外文期刊>African Journal of Microbiology Research >Sufficient intracellular survival capability is essential for induction of protective immune response by the Brucella live attenuated vaccine M5-90
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Sufficient intracellular survival capability is essential for induction of protective immune response by the Brucella live attenuated vaccine M5-90

机译:足够的细胞内存活能力对于布鲁氏菌活减毒疫苗M5-90诱导保护性免疫应答至关重要

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The fact that live attenuated vaccine but not killed Brucella cells could induce protective immune response against Brucellosis implied that survival capability in host is important for the immune response induction. Member of the Omp25 protein family are shown to be important for?Brucella?virulence and immunological regulation. Omp25 mutants of virulent strains shows reduced virulence and could provide protection against virulent strain challenge, indicating that Omp25 is important for intracellular survival but dispensable for immunological protection. In the present study, to further define roles of Omp25 and clarify the possible protection mechanism of live vaccine strains, mutant strain M5Δomp25 of a live attenuated strain M5 was constructed and analyzed. The mutant was rapidly cleared from macrophage and mice when compared with wild type strain, indicating their reduced intracellular survival and virulence. The mutant induced decreased antibody responses and elicited lower level of IFN-γ and IL-10 in mice than their parent strain M5, implying reduced both humoral and cellular immunity induced by the mutant. Protection efficiency assay showed that M5Δomp25 could provide protection against M5 challenge but not the virulent strain 16M challenge. This indicated that sufficient survival capability is essential for induction of protective immune response for the live attenuated vaccine M5. This finding is helpful for screening and development of live attenuated or genetically marked vaccines.
机译:减毒活疫苗而不杀死布鲁氏菌细胞可以诱导针对布鲁氏菌病的保护性免疫应答这一事实表明,宿主的存活能力对于免疫应答的诱导很重要。 Omp25蛋白家族的成员对布鲁氏菌的毒力和免疫调节很重要。 Omp25毒株的突变体显示出降低的毒力,可以提供针对毒株攻击的保护作用,这表明Omp25对细胞内存活很重要,但对免疫保护却不可或缺。在本研究中,为进一步确定Omp25的作用并阐明活疫苗株的可能保护机制,构建并分析了减毒活株M5的突变株M5Δomp25。与野生型菌株相比,该突变体从巨噬细胞和小鼠中迅速清除,表明它们的细胞内存活率和毒力降低。该突变体诱导的抗体反应降低,并在小鼠中引起的IFN-γ和IL-10水平低于其亲本菌株M5,这意味着该突变体诱导的体液免疫和细胞免疫均降低。保护效率分析表明,M5Δomp25可以提供针对M5攻击的保护,但不能针对强毒株16M攻击。这表明足够的生存能力对于诱导减毒活疫苗M5的保护性免疫应答至关重要。这一发现有助于减毒或基因标记活疫苗的筛选和开发。

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