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基于 ZmpB 的蛋白疫苗免疫可保护小鼠免受肺炎球菌病的侵害。

Immunization with a ZmpB-based protein vaccine could protect against pneumococcal diseases in mice.

机构信息

Department of Laboratory Medicine, Chongqing Medical University, Chongqing, People's Republic of China.

出版信息

Infect Immun. 2011 Feb;79(2):867-78. doi: 10.1128/IAI.00717-10. Epub 2010 Nov 22.

Abstract

Zinc metalloprotease B (ZmpB) is present in all isolated pneumococcal strains and contributes to the pathogenesis of pneumococcal infection. In this study, recombinant ZmpB was cloned and expressed in Escherichia coli. The expression of ZmpB by different pneumococcal strains was detectable by Western blotting with antisera raised to recombinant ZmpB. Flow cytometry analysis demonstrated that anti-ZmpB polyclonal antibodies could bind to the cell surface of the pneumococcal strains analyzed. Both recombinant ZmpB protein and anti-ZmpB polyclonal antibodies significantly inhibited the adhesion of Streptococcus pneumoniae D39 to A549 cells. In mouse models, mucosal immunization with recombinant ZmpB could significantly reduce pneumococcal lung colonization caused by S. pneumoniae serotypes 19F and 14 and significantly increase mice survival times following invasive pneumococcal challenge with different pneumococcal strains, including serotypes 2, 3, 6B, and 14. Furthermore, intraperitoneal immunization with recombinant ZmpB in combination with the recombinant pneumolysin mutant (DeltaA146 Ply) and heat shock protein 40 (DnaJ) could enhance the protection against pneumococcal infection compared to protection provided by single-protein antigens. Passive immunization with hyperimmune antisera against these three antigens also demonstrated that the combination of three hyperimmune antisera could provide better protection than single antisera. Taken together, our results suggest that ZmpB is a good candidate pneumococcal vaccine antigen.

摘要

锌金属蛋白酶 B(ZmpB)存在于所有分离的肺炎球菌菌株中,有助于肺炎球菌感染的发病机制。在这项研究中,重组 ZmpB 在大肠杆菌中被克隆和表达。用针对重组 ZmpB 的抗血清通过 Western blot 检测到不同肺炎球菌菌株的 ZmpB 表达。流式细胞术分析表明,抗 ZmpB 多克隆抗体可以与分析的肺炎球菌菌株的细胞表面结合。重组 ZmpB 蛋白和抗 ZmpB 多克隆抗体均能显著抑制肺炎球菌 D39 与 A549 细胞的粘附。在小鼠模型中,粘膜免疫接种重组 ZmpB 可显著减少 19F 和 14 型肺炎球菌血清型引起的肺炎球菌肺定植,并显著增加不同肺炎球菌菌株(包括 2、3、6B 和 14 型)侵袭性肺炎球菌攻击后小鼠的存活时间。此外,与重组肺炎球菌溶血素突变体(DeltaA146 Ply)和热休克蛋白 40(DnaJ)联合腹腔内免疫接种重组 ZmpB 可增强对肺炎球菌感染的保护作用,而单一蛋白抗原的保护作用则有所增强。用针对这三种抗原的高免血清进行被动免疫也表明,三种高免血清的组合可提供比单一抗血清更好的保护作用。总之,我们的研究结果表明 ZmpB 是一种良好的肺炎球菌候选疫苗抗原。

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