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首页> 外文期刊>Clinical and vaccine immunology: CVI >Contributions to Protection from Streptococcus pneumoniae Infection Using the Monovalent Recombinant Protein Vaccine Candidates PcpA, PhtD, and PlyD1 in an Infant Murine Model during Challenge
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Contributions to Protection from Streptococcus pneumoniae Infection Using the Monovalent Recombinant Protein Vaccine Candidates PcpA, PhtD, and PlyD1 in an Infant Murine Model during Challenge

机译:在挑战期间,使用单价重组蛋白疫苗pcpa,PHTD和PLYD1保护肺炎链球菌感染链球菌感染的贡献

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摘要

A vaccine consisting of several conserved proteins with different functions directing the pathogenesis of pneumonia and sepsis would be preferred for protection against infection by Streptococcus pneumoniae. Infants will be the major population targeted for next-generation pneumococcal vaccines. Here, we investigated the potential efficacy provided by three recombinant pneumococcal vaccine candidate proteins-pneumococcal histidine triad D (PhtD), detoxified pneumolysin derivative (PlyD1), and pneumococcal choline-binding protein A (PcpA)-for reducing pneumonia and sepsis in an infant mouse vaccine model. We found vaccination with PhtD and PcpA provided high IgG antibody titers after vaccination in infant mice, similar to adult mice comparators. PlyD1-specific total IgG was significantly lower in infant mice, with minimal boosting with the second and third vaccinations. Similar isotypes of IgG for PhtD and PlyD1 were generated in infant compared to adult mice. Although lower total specific IgG to all three proteins was elicited in infant than in adult mice, the infant mice were protected from bacteremic pneumonia and sepsis mortality (PlyD1) and had lower lung bacterial burdens (PcpA and PhtD) after challenge. The observed immune responses coupled with bacterial reductions elicited by each of the monovalent proteins support further testing in human infant clinical trials.
机译:由几种具有不同功能的保守蛋白组成的疫苗,可以选择引导肺炎和败血症发病的疫苗,以防止肺炎链球菌感染。婴儿将是针对下一代肺炎球菌疫苗的主要人群。 Here, we investigated the potential efficacy provided by three recombinant pneumococcal vaccine candidate proteins-pneumococcal histidine triad D (PhtD), detoxified pneumolysin derivative (PlyD1), and pneumococcal choline-binding protein A (PcpA)-for reducing pneumonia and sepsis in an infant小鼠疫苗模型。我们发现使用PHTD和PCPA的疫苗接种在婴儿小鼠中疫苗接种后提供了高IgG抗体滴度,类似于成年小鼠比较剂。婴儿小鼠的PLYD1特异性总IgG显着降低,第二和第三次疫苗接种量最小。与成年小鼠相比,婴儿和PLYD1的IgG的类型IgG相似。尽管在婴儿中比成年小鼠引起了所有三种蛋白质的总特异性IgG,但在挑战后,婴儿小鼠免受肺炎和败血症死亡率(PLYD1)的保护,并具有较低的肺细菌负荷(PCPA和PHTD)。观察到的免疫反应以及每种单价蛋白会在人类婴儿临床试验中提供进一步测试的细菌降低。

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