首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Intranasal immunization with heterologously expressed polysaccharide protects against multiple Pseudomonas aeruginosa infections
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Intranasal immunization with heterologously expressed polysaccharide protects against multiple Pseudomonas aeruginosa infections

机译:用异源表达的多糖进行鼻内免疫可预防多种铜绿假单胞菌感染

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Surface-expressed bacterial polysaccharides are often immuno-dominant, protective antigens. However, these antigens are chemically and serologically highly heterogeneous, and conjugation to protein carriers is often necessary to enhance their immunogenic-ity. Here we show the efficacy of intranasal immunization of mice with attenuated Salmonella enterica serovar Typhimurium expressing the O antigen portion of Pseudomonas aeruginosa lipo-polysaccharide. P. aeruginosa is an ideal model system because it can cause a myriad of localized and systemic infections. In particular, this bacterium is a leading cause of hospital-acquired pneumonia and is responsible for infections after burns and after eye injury. In addition, there are mouse models of infection that mimic the clinical manifestations of P. aeruginosa infections. Immunized mice were highly protected against infection, with long-lasting immunity to acute P. aeruginosa pneumonia, whereas mice immunized with Salmonella containing only the cloning vector or PBS were not. Prophylactic and therapeutic administration of sera from vaccinated animals protected naive mice. Intranasal vaccination also provided complete protection from infections after burns and reduced pathology after corneal abrasions. These results indicate that intranasal delivery of heterologously expressed polysaccharide antigens provides protection at distinct sites of infection. This approach for the expression and delivery of polysaccharide antigens as recombinant immunogens could be easily adapted to develop vaccines for many infectious agents, without the need for complicated purification and conjugation procedures.
机译:表面表达的细菌多糖通常是免疫优势的保护性抗原。然而,这些抗原在化学和血清学上是高度异质的,与蛋白载体的缀合通常对于增强它们的免疫原性是必要的。在这里,我们显示了表达铜绿假单胞菌脂多糖的O抗原部分的减毒肠炎沙门氏鼠伤寒鼠的鼻内免疫效果。铜绿假单胞菌是理想的模型系统,因为它可以引起无数的局部和全身感染。特别是,这种细菌是医院获得性肺炎的主要原因,并且是造成烧伤和眼外伤后感染的原因。此外,还有一些模仿铜绿假单胞菌感染的临床表现的感染小鼠模型。免疫小鼠受到高度保护,不受感染,对急性铜绿假单胞菌肺炎具有持久的免疫力,而仅含克隆载体或PBS的沙门氏菌免疫的小鼠则没有。预防性和治疗性接种疫苗动物血清可保护幼稚小鼠。鼻内疫苗接种还提供了针对烧伤后感染的完全保护,并减少了角膜擦伤后的病理。这些结果表明异源表达的多糖抗原的鼻内递送在感染的不同部位提供了保护。这种表达和传递多糖抗原作为重组免疫原的方法可以很容易地适应开发许多感染因子的疫苗,而无需复杂的纯化和结合过程。

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