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Therapeutic Application of Bacteriophage PHB02 and Its Putative Depolymerase Against Pasteurella multocida Capsular Type A in Mice

机译:噬菌体PHB02及其推定的解聚酶对多杀性巴氏杆菌荚膜A型小鼠的治疗应用

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摘要

Phage PHB02 specifically infects Pasteurella multocida capsular serogroup A strains. In this study, we found that capsule deletion mutants were not lysed by PHB02, suggesting that the capsule of P. multocida serogroup A strains might be the primary receptor. Based on sequence analysis, a gene encoding a phage-associated putative depolymerase was identified. The corresponding recombinant depolymerase demonstrated specific activity against capsular serogroup A strains but did not strip capsule deletion mutants. In vivo experiments showed that PHB02 was retained at detectable levels in the liver, spleen, kidneys, lung, and blood, at 24 h post-administration in mice. Depolymerase plus serum significantly reduced the number of viable wild-type P. multocida strain HB03 cells (3.5–4.5 log decrease in colony-forming units). Moreover, treatment with phage or purified depolymerase resulted in significantly increased survival of mice infected with P. multocida HB03, and an absence of increase of eosinophils and basophils or other pathological changes when compared with the control group. These results show that phage PHB02 and its putative depolymerase represent a novel strategy for controlling P. multocida serogroup A strains.
机译:噬菌体PHB02特异性感染多杀巴斯德氏菌荚膜血清群A菌株。在这项研究中,我们发现PHB02不会裂解胶囊缺失突变体,这表明多杀性疟原虫血清群A菌株的胶囊可能是主要受体。基于序列分析,鉴定了编码噬菌体相关推定解聚酶的基因。相应的重组解聚酶表现出针对荚膜血清群A菌株的特异性活性,但未去除荚膜缺失突变体。体内实验表明,在小鼠给药后24小时,PHB02在肝脏,脾脏,肾脏,肺和血液中的含量可检测到。解聚酶加血清可显着减少野生型多杀毕赤酵母菌株HB03细胞的数量(集落形成单位减少3.5–4.5 log)。此外,与对照组相比,用噬菌体或纯化的解聚酶处理可显着提高感染多杀性巴氏杆菌HB03的小鼠的存活,并且不增加嗜酸性粒细胞和嗜碱性粒细胞或其他病理变化。这些结果表明,噬菌体PHBO2及其推定的解聚酶代表了一种控制多杀性疟原虫血清群A菌株的新策略。

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