首页> 外文OA文献 >A recombinant multi-antigen vaccine formulation containing Babesia bovis merozoite surface antigens MSA-2a1, MSA-2b and MSA-2c elicits invasion-inhibitory antibodies and IFN-γ producing cells
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A recombinant multi-antigen vaccine formulation containing Babesia bovis merozoite surface antigens MSA-2a1, MSA-2b and MSA-2c elicits invasion-inhibitory antibodies and IFN-γ producing cells

机译:包含牛巴贝虫裂殖子裂殖子表面抗原MSA-2a1,MSA-2b和MSA-2c的重组多抗原疫苗制剂可诱导侵袭抑制抗体和产生IFN-γ的细胞

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摘要

Abstract Background Babesia bovis is a tick-transmitted protozoan hemoparasite and the causative agent of bovine babesiosis, a potential risk to more than 500 million cattle worldwide. The vaccines currently available are based on attenuated parasites, which are difficult to produce, and are only recommended for use in bovines under one year of age. When used in older animals, these vaccines may cause life-threatening clinical symptoms and eventually death. The development of a multi-subunit recombinant vaccine against B. bovis would be attractive from an economic standpoint and, most importantly, could be recommended for animals of any age. In the present study, recombinant ectodomains of MSA-2a1, MSA-2b and MSA-2c antigens were expressed in Pichia pastoris yeast as secreted soluble peptides. Results The antigens were purified to homogeneity, and biochemically and immunologically characterized. A vaccine formulation was obtained by emulsifying a mixture of the three peptides with the adjuvant Montanide ISA 720, which elicited high IgG antibody titers against each of the above antigens. IgG antibodies generated against each MSA-antigen recognized merozoites and significantly inhibited the invasion of bovine erythrocytes. Cellular immune responses were also detected, which were characterized by splenic and lymph node CD4+ T cells producing IFN-γ and TNF-α upon stimulation with the antigens MSA-2a1 or MSA-2c. Conclusions These data strongly suggest the high protective potential of the presented formulation, and we propose that it could be tested in vaccination trials of bovines challenged with B. bovis.
机译:摘要背景牛肝杆菌是a传播的原生动物的血液寄生虫,是牛杆状杆菌病的病原体,是全球5亿多头牛的潜在危险。当前可用的疫苗是基于减毒寄生虫,这种疫苗难以生产,仅建议用于一岁以下的牛。当用于年长动物时,这些疫苗可能会导致威胁生命的临床症状并最终导致死亡。从经济的角度来看,针对牛双歧杆菌的多亚基重组疫苗的开发将具有吸引力,最重要的是,可推荐用于任何年龄的动物。在本研究中,MSA-2a1,MSA-2b和MSA-2c抗原的重组胞外域在毕赤酵母中表达为分泌的可溶性肽。结果抗原被纯化至同质,并进行了生化和免疫学表征。通过将三种肽的混合物与佐剂Montanide ISA 720乳化获得疫苗制剂,该佐剂引起针对上述每种抗原的高IgG抗体效价。针对每种MSA抗原产生的IgG抗体可识别裂殖子,并显着抑制牛红细胞的入侵。还检测到细胞免疫应答,其特征是脾和淋巴结CD4 + T细胞在受到抗原MSA-2a1或MSA-2c刺激后产生IFN-γ和TNF-α。结论这些数据有力地表明了所提出制剂的高保护潜力,我们建议可以在牛双歧杆菌感染牛的疫苗接种试验中对其进行测试。

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