Hu Rujiu, Liu Haojing, Wang Mimi, Li Jing, Lin Hua, Liang Mingyue, Gao Yupeng, Yang Mingming
College of Animal Science and Technology, Northwest A&F University, No.22 Xinong Road, Yangling 712100, Shaanxi, China.
Department of Animal Engineering, Yangling Vocational and Technical College, No.24 Weihui Road, Yangling 712100, Shaanxi, China.
Nanomaterials (Basel). 2020 Nov 20;10(11):2293. doi: 10.3390/nano10112293.
Avian pathogenic (APEC) infection in poultry causes enormous economic losses and public health risks. Bacterial outer membrane vesicles (OMVs) and nano-sized proteolipids enriched with various immunogenic molecules have gained extensive interest as novel nanovaccines against bacterial infections. In this study, after the preparation of APEC O2-derived OMVs (APEC_OMVs) using the ultracentrifugation method and characterization of them using electron microscopy and nanoparticle tracking analyses, we examined the safety and vaccination effect of APEC_OMVs in broiler chicks and investigated the underlying immunological mechanism of protection. The results showed that APEC_OMVs had membrane-enclosed structures with an average diameter of 89 nm. Vaccination with 50 μg of APEC_OMVs had no side effects and efficiently protected chicks against homologous infection. APEC_OMVs could be effectively taken up by chicken macrophages and activated innate immune responses in macrophages in vitro. APEC_OMV vaccination significantly improved activities of serum non-specific immune factors, enhanced the specific antibody response and promoted the proliferation of splenic and peripheral blood lymphocytes in response to mitogen. Furthermore, APEC_OMVs also elicited a predominantly IFN-γ-mediated Th1 response in splenic lymphocytes. Our data revealed the involvement of both non-specific immune responses and specific antibody and cytokine responses in the APEC_OMV-mediated protection, providing broader knowledge for the development of multivalent APEC_OMV-based nanovaccine with high safety and efficacy in the future.
家禽中的禽致病性大肠杆菌(APEC)感染会造成巨大的经济损失和公共卫生风险。细菌外膜囊泡(OMVs)和富含各种免疫原性分子的纳米级蛋白脂质作为新型抗细菌感染纳米疫苗已引起广泛关注。在本研究中,使用超速离心法制备了APEC O2来源的OMVs(APEC_OMVs),并通过电子显微镜和纳米颗粒跟踪分析对其进行了表征,之后我们检测了APEC_OMVs在肉鸡中的安全性和疫苗接种效果,并研究了其潜在的免疫保护机制。结果显示,APEC_OMVs具有膜封闭结构,平均直径为89 nm。接种50 μg的APEC_OMVs没有副作用,并且能有效保护雏鸡免受同源感染。APEC_OMVs可以被鸡巨噬细胞有效摄取,并在体外激活巨噬细胞的先天性免疫反应。接种APEC_OMVs显著提高了血清非特异性免疫因子的活性,增强了特异性抗体反应,并促进了脾细胞和外周血淋巴细胞对有丝分裂原的增殖反应。此外,APEC_OMVs还在脾淋巴细胞中引发了主要由IFN-γ介导的Th1反应。我们的数据揭示了非特异性免疫反应以及特异性抗体和细胞因子反应均参与了APEC_OMV介导的保护作用,为未来开发具有高安全性和有效性的基于APEC_OMV的多价纳米疫苗提供了更广泛的知识。