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首页> 外文期刊>Infection and immunity >A Bivalent Typhoid Live Vector Vaccine Expressing both Chromosome- and Plasmid-Encoded Yersinia pestis Antigens Fully Protects against Murine Lethal Pulmonary Plague Infection
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A Bivalent Typhoid Live Vector Vaccine Expressing both Chromosome- and Plasmid-Encoded Yersinia pestis Antigens Fully Protects against Murine Lethal Pulmonary Plague Infection

机译:表达染色体和质粒编码的鼠疫耶尔森氏菌抗原的二价伤寒活载体疫苗完全可以防止鼠类致命性肺鼠疫感染。

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Live attenuated bacteria hold great promise as multivalent mucosal vaccines against a variety of pathogens. A major challenge of this approach has been the successful delivery of sufficient amounts of vaccine antigens to adequately prime the immune system without overattenuating the live vaccine. Here we used a live attenuated Salmonella enterica serovar Typhi strain to create a bivalent mucosal plague vaccine that produces both the protective F1 capsular antigen of Yersinia pestis and the LcrV protein required for secretion of virulence effector proteins. To reduce the metabolic burden associated with the coexpression of F1 and LcrV within the live vector, we balanced expression of both antigens by combining plasmid-based expression of F1 with chromosomal expression of LcrV from three independent loci. The immunogenicity and protective efficacy of this novel vaccine were assessed in mice by using a heterologous prime-boost immunization strategy and compared to those of a conventional strain in which F1 and LcrV were expressed from a single low-copy-number plasmid. The serum antibody responses to lipopolysaccharide (LPS) induced by the optimized bivalent vaccine were indistinguishable from those elicited by the parent strain, suggesting an adequate immunogenic capacity maintained through preservation of bacterial fitness; in contrast, LPS titers were 10-fold lower in mice immunized with the conventional vaccine strain. Importantly, mice receiving the optimized bivalent vaccine were fully protected against lethal pulmonary challenge. These results demonstrate the feasibility of distributing foreign antigen expression across both chromosomal and plasmid locations within a single vaccine organism for induction of protective immunity.
机译:减毒活细菌作为针对多种病原体的多价粘膜疫苗具有广阔的前景。该方法的主要挑战是成功递送足够数量的疫苗抗原以充分引发免疫系统而不过度削弱活疫苗。在这里,我们使用了减毒的活肠炎沙门氏菌伤寒沙门氏菌菌株来创建一种二价粘膜鼠疫疫苗,该疫苗既可以产生鼠疫耶尔森氏菌的保护性F1荚膜抗原,也可以分泌分泌毒力效应蛋白所需的LcrV蛋白。为了减少与活载体中F1和LcrV共表达相关的代谢负担,我们通过结合基于质粒的F1表达与来自三个独立基因座的LcrV的染色体表达来平衡两种抗原的表达。通过使用异源初免-加强免疫策略在小鼠中评估了这种新型疫苗的免疫原性和保护功效,并将其与从单个低拷贝数质粒表达F1和LcrV的常规菌株进行了比较。优化的二价疫苗诱导的血清抗体对脂多糖(LPS)的反应与亲本菌株引起的反应没有区别,表明通过保持细菌适应性可以保持足够的免疫原性。相反,用常规疫苗株免疫的小鼠的LPS滴度要低10倍。重要的是,接受优化的二价疫苗的小鼠得到了全面保护,免受致命的肺部攻击。这些结果证明了在单个疫苗生物体内跨染色体和质粒位置分布外来抗原表达以诱导保护性免疫的可行性。

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