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首页> 外文期刊>Journal of Biotechnology >Generation of protective immune response against anthrax by oral immunization with protective antigen plant-based vaccine
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Generation of protective immune response against anthrax by oral immunization with protective antigen plant-based vaccine

机译:通过基于保护性抗原植物的疫苗的口服免疫产生针对炭疽的保护性免疫应答

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摘要

In concern with frequent recurrence of anthrax in endemic areas and inadvertent use of its spores as biological weapon, the development of an effective anthrax vaccine suitable for both human and veterinary needs is highly desirable. A simple oral delivery through expression in plant system could offer promising alternative to the current methods that rely on injectable vaccines extracted from bacterial sources. In the present study, we have expressed protective antigen (PA) gene in Indian mustard by Agrobacterium-mediated transformation and in tobacco by plastid transformation. Putative transgenic lines were verifiedfor the presence of transgene and its expression by molecular analysis. PA expressed in transgenic lines was biologically active as evidenced by macrophage lysis assay. Intraperitoneal (i.p.) and oral immunization with plant PA in murine model indicated high serum PA specific IgG and IgA antibody titers. PA specific mucosal immune response was noted in orally immunized groups. Further, antibodies indicated lethal toxin neutralizing potential in-vitro and conferred protection against in-vivo toxin challenge. Oral immunization experiments demonstrated generation of immunoprotective response in mice. Thus, our study examines the feasibility of oral PA vaccine expressed in an edible plant system against anthrax. (C) 2014 Elsevier B.V. All rights reserved.
机译:考虑到炭疽病在流行地区的频繁复发以及其孢子作为生物武器的无意使用,迫切需要开发一种适合人类和兽医需求的有效炭疽疫苗。通过在植物系统中表达而进行的简单口服给药可以为依赖于从细菌来源提取的可注射疫苗的当前方法提供有希望的替代方法。在本研究中,我们通过农杆菌介导的转化在印度芥菜中表达了保护性抗原(PA)基因,在质体转化中在烟草中表达了保护性抗原(PA)基因。通过分子分析验证了推定的转基因品系中转基因的存在及其表达。如巨噬细胞裂解试验所证实,在转基因品系中表达的PA具有生物学活性。在鼠模型中进行腹膜内(i.p.)和口服植物PA免疫表明血清PA特异性IgG和IgA抗体滴度很高。口服免疫组观察到PA特异性粘膜免疫反应。此外,抗体表明在体外具有潜在的致命毒素中和能力,并赋予了针对体内毒素激发的保护作用。口服免疫实验表明在小鼠中产生了免疫保护反应。因此,我们的研究检验了在可食用植物系统中表达抗PA口服PA疫苗的可行性。 (C)2014 Elsevier B.V.保留所有权利。

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