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首页> 外文期刊>Veterinary Immunology and Immunopathology >A chimeric protein comprising the immunogenic domains of Mannheimia haemolytica leukotoxin and outer membrane protein PIpE induces antibodies against leukotoxin and PlpE
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A chimeric protein comprising the immunogenic domains of Mannheimia haemolytica leukotoxin and outer membrane protein PIpE induces antibodies against leukotoxin and PlpE

机译:包含溶血曼海姆氏菌白细胞毒素免疫原性结构域和外膜蛋白PIpE的嵌合蛋白可诱导针对白细胞毒素和PlpE的抗体

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摘要

Mannheimia haemolytica is a very important pathogen of pneumonia in ruminants. Bighorn sheep (BHS, Ovis canadensis) are highly susceptible to M. haemolytica-caused pneumonia which has significantly contributed to the drastic decline of bighorn sheep population in North America. Pneumonia outbreaks in wild BHS can cause mortality as high as 90%. Leukotoxin is the critical virulence factor of M. haemolytica. In a 'proof of concept' study, an experimental vaccine containing leukotoxin and surface antigens of M. haemolytica developed by us induced 100% protection of BHS, but required multiple booster injections. Vaccination of wild BHS is difficult. But they can be vaccinated at the time of transplantation into a new habitat. Administration of booster doses, however, is impossible. Therefore, a vaccine that does not require booster doses is necessary to immunize BHS against M. haemolytica pneumonia. Herpesviruses are ideal vectors for development of such a vaccine because of their ability to undergo latency with subsequent reactivation. As the first step towards developing a herpesvirus-vectored vaccine, we constructed a chimeric protein comprising the leukotoxin-neutralizing epitopes and the immuno-dominant epitopes of the outer membrane protein PIpE. The chimeric protein was efficiently expressed in primary BHS lung cells. The immunogenicity of the chimeric protein was evaluated in mice before inoculating BHS. Mice immunized with the chimeric protein developed antibodies against M. haemolytica leukotoxin and PlpE. More importantly, the anti-leukotoxin antibodies effectively neutralized leukotoxin-induced cytotoxicity. Taken together, these results represent the successful completion of the first step towards developing a herpesvirus-vectored vaccine for controlling M. haemolytica pneumonia in BHS, and possibly other ruminants. (C) 2016 Published by Elsevier B.V.
机译:溶血性曼海姆病是反刍动物中肺炎的重要病原体。大角羊(BHS,加拿大羊)对溶血支原体引起的肺炎高度敏感,这极大地导致了北美大角羊种群的急剧减少。野生BHS中的肺炎暴发可导致高达90%的死亡率。白细胞毒素是溶血支原体的关键毒力因子。在“概念验证”研究中,由我们开发的包含白细胞毒素和溶血支原体表面抗原的实验性疫苗可诱导BHS 100%保护,但需要多次加强注射。野生BHS的疫苗接种非常困难。但是它们可以在移植到新的栖息地时进行疫苗接种。但是,加强剂量的给药是不可能的。因此,对于BHS抵抗溶血支原体肺炎的免疫,不需要加强剂量的疫苗是必需的。疱疹病毒是开发这种疫苗的理想载体,因为它们能够承受潜伏期并随后重新激活。作为开发疱疹病毒载体疫苗的第一步,我们构建了一种嵌合蛋白,该蛋白包含中毒素白蛋白中和表位和外膜蛋白PIpE的免疫优势表位。嵌合蛋白在原代BHS肺细胞中有效表达。接种BHS之前,在小鼠中评估了嵌合蛋白的免疫原性。用嵌合蛋白免疫的小鼠产生了针对溶血支原体白细胞毒素和PlpE的抗体。更重要的是,抗白细胞毒素抗体可有效中和白细胞毒素诱导的细胞毒性。综上所述,这些结果表示成功完成了开发用于控制BHS以及其他反刍动物中溶血支原体肺炎的疱疹病毒载体疫苗的第一步。 (C)2016由Elsevier B.V.发布

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