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评估肺炎链球菌毒力表面蛋白中选定优势 B 细胞表位的保护效力。

Evaluation of Protective Efficacy of Selected Immunodominant B-Cell Epitopes within Virulent Surface Proteins of Streptococcus pneumoniae.

机构信息

1 Department of Paediatrics, Aghia Sophia Children's Hospital and Immunobiology and Vaccinology Research Laboratory, Athens, Greece.

Department of Microbiology, National and Kapodistrian, University of Athens, Athens, Greece

出版信息

Infect Immun. 2018 Feb 20;86(3). doi: 10.1128/IAI.00673-17. Print 2018 Mar.

Abstract

Four previously identified immunodominant B-cell epitopes, located within known virulent pneumococcal proteins CbpD, PhtD, PhtE, and ZmpB, had shown promising immunological characteristics, indicating their potential to be used as vaccine antigens. In this study, we further evaluated the opsonophagocytic activity of antibodies against these epitopes and their capacity to protect mice from pneumococcal sepsis. An opsonophagocytic killing assay (OPKA) revealed that OPKA titers of human anti-peptide antibodies against pneumococcal serotypes 1, 3, and 19A were significantly higher ( < 0.001) than those of the control sera, suggesting their functional potential against virulent clinical isolates. Data obtained from mice actively immunized with any of the selected epitope analogues or with a mixture of these (G_Mix group) showed, compared to controls, enhanced survival against the highly virulent pneumococcal serotype 3 ( < 0.001). Moreover, passive transfer of hyperimmune serum from G_Mix to naive mice also conferred protection to a lethal challenge with serotype 3, which demonstrates that the observed protection was antibody mediated. All immunized murine groups elicited gradually higher antibody titers and avidity, suggesting a maturation of immune response over time. Among the tested peptides, PhD_pep19 and PhtE_pep40 peptides, which reside within the zinc-binding domains of PhtD and PhtE proteins, exhibited superior immunological characteristics. Recently it has been shown that zinc uptake is of high importance for the virulence of ; thus, our findings suggest that these epitopes deserve further evaluation as novel immunoreactive components for the development of a polysaccharide-independent pneumococcal vaccine.

摘要

四个先前鉴定的免疫显性 B 细胞表位位于已知毒力肺炎球菌蛋白 CbpD、PhtD、PhtE 和 ZmpB 内,表现出有希望的免疫学特征,表明它们有潜力作为疫苗抗原。在这项研究中,我们进一步评估了针对这些表位的抗体的调理吞噬活性及其保护小鼠免受肺炎球菌败血症的能力。调理吞噬杀伤测定(OPKA)显示,针对肺炎球菌血清型 1、3 和 19A 的人抗肽抗体的 OPKA 滴度明显高于(<0.001)对照血清,表明它们对毒力临床分离株具有功能潜力。与对照相比,用选定的表位类似物之一或用这些类似物的混合物(G_Mix 组)主动免疫的小鼠获得的数据显示,存活得到了增强,对高毒力的肺炎球菌血清型 3(<0.001)具有抗性。此外,将来自 G_Mix 的高免疫血清被动转移给未致敏的小鼠也赋予了对血清型 3 的致死性攻击的保护,这表明观察到的保护是抗体介导的。所有免疫的小鼠组均引起逐渐升高的抗体滴度和亲和力,表明随着时间的推移免疫反应逐渐成熟。在测试的肽中,位于 PhtD 和 PhtE 蛋白锌结合域内的 PhD_pep19 和 PhtE_pep40 肽表现出更好的免疫学特征。最近已经表明,锌摄取对于的毒力非常重要;因此,我们的研究结果表明,这些表位值得进一步评估作为新型免疫反应性成分,用于开发不依赖多糖的肺炎球菌疫苗。

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