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Employing Escherichia coli-derived outer membrane vesicles as an antigen delivery platform elicits protective immunity against Acinetobacter baumannii infection

机译:采用大肠杆菌来源的外膜囊泡作为抗原递送平台可引发针对鲍曼不动杆菌感染的保护性免疫

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摘要

Outer membrane vesicles (OMVs) have proven to be highly immunogenic and induced an immune response against bacterial infection in human clinics and animal models. We sought to investigate whether engineered OMVs can be a feasible antigen-delivery platform for efficiently inducing specific antibody responses. In this study, Omp22 (an outer membrane protein of A. baumannii) was displayed on E. coli DH5α-derived OMVs (Omp22-OMVs) using recombinant gene technology. The morphological features of Omp22-OMVs were similar to those of wild-type OMVs (wtOMVs). Immunization with Omp22-OMVs induced high titers of Omp22-specific antibodies. In a murine sepsis model, Omp22-OMV immunization significantly protected mice from lethal challenge with a clinically isolated A. baumannii strain, which was evidenced by the increased survival rate of the mice, the reduced bacterial burdens in the lung, spleen, liver, kidney, and blood, and the suppressed serum levels of inflammatory cytokines. In vitro opsonophagocytosis assays showed that antiserum collected from Omp22-OMV-immunized mice had bactericidal activity against clinical isolates, which was partly specific antibody-dependent. These results strongly indicated that engineered OMVs could display a whole heterologous protein (~22 kDa) on the surface and effectively induce specific antibody responses, and thus OMVs have the potential to be a feasible vaccine platform.
机译:在人类诊所和动物模型中,已证明外膜囊泡(OMV)具有高度的免疫原性,并能诱导针对细菌感染的免疫反应。我们试图调查工程化的OMV是否可以是有效诱导特异性抗体反应的可行的抗原传递平台。在这项研究中,使用重组基因技术将Omp22(鲍曼不动杆菌的外膜蛋白)展示在大肠杆菌DH5α衍生的OMV(Omp22-OMV)上。 Omp22-OMV的形态特征与野生型OMV(wtOMV)相似。用Omp22-OMV免疫可诱导高滴度的Omp22特异性抗体。在小鼠败血症模型中,Omp22-OMV免疫可通过临床分离的鲍曼不动杆菌菌株显着保护小鼠免受致死性攻击,这可以通过小鼠存活率的提高,肺,脾,肝,肾中细菌含量的降低来证明,血液以及抑制的血清炎性细胞因子水平。体外调理吞噬作用试验表明,从经Omp22-OMV免疫的小鼠收集的抗血清对临床分离株具有杀菌活性,这部分是特异性抗体依赖性的。这些结果强烈表明,工程化的OMV可以在表面显示完整的异源蛋白(〜22 kDa),并有效诱导特异性抗体反应,因此OMV有望成为可行的疫苗平台。

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