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Personalized Therapeutic Cocktail of Wild Environmental Phages Rescues Mice from Acinetobacter baumannii Wound Infections

机译:野生环境噬菌体的个性化治疗鸡尾酒可挽救鲍曼不动杆菌伤口感染的小鼠

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摘要

Multidrug-resistant bacterial pathogens are an increasing threat to public health, and lytic bacteriophages have reemerged as a potential therapeutic option. In this work, we isolated and assembled a five-member cocktail of wild phages against Acinetobacter baumannii and demonstrated therapeutic efficacy in a mouse full-thickness dorsal infected wound model. The cocktail lowers the bioburden in the wound, prevents the spread of infection and necrosis to surrounding tissue, and decreases infection-associated morbidity. Interestingly, this effective cocktail is composed of four phages that do not kill the parent strain of the infection and one phage that simply delays bacterial growth in vitro via a strong but incomplete selection event. The cocktail here appears to function in a combinatorial manner, as one constituent phage targets capsulated A. baumannii bacteria and selects for loss of receptor, shifting the population to an uncapsulated state that is then sensitized to the remaining four phages in the cocktail. Additionally, capsule is a known virulence factor for A. baumannii, and we demonstrated that the emergent uncapsulated bacteria are avirulent in a Galleria mellonella model. These results highlight the importance of anticipating population changes during phage therapy and designing intelligent cocktails to control emergent strains, as well as the benefits of using phages that target virulence factors. Because of the efficacy of this cocktail isolated from a limited environmental pool, we have established a pipeline for developing new phage therapeutics against additional clinically relevant multidrug-resistant pathogens by using environmental phages sourced from around the globe.
机译:耐多药细菌病原体对公共健康的威胁越来越大,而溶菌性噬菌体已重新成为一种潜在的治疗选择。在这项工作中,我们分离并组装了一个由五人组成的针对鲍曼不动杆菌的野生噬菌体混合物,并在小鼠全层背侧感染伤口模型中证明了治疗功效。鸡尾酒降低了伤口中的生物负荷,防止了感染和坏死扩散到周围组织,并降低了与感染相关的发病率。有趣的是,这种有效的混合物由四个不能杀死感染母体的噬菌体和一个通过强烈但不完整的选择事件简单地延迟体外细菌生长的噬菌体组成。此处的混合物似乎以组合方式发挥作用,因为一种组成性噬菌体靶向被包囊的鲍曼不动杆菌细菌并选择受体的损失,从而将种群转移到未囊封状态,然后对鸡尾酒中剩余的四个噬菌体敏感。此外,胶囊是鲍曼不动杆菌的一种已知毒力因子,我们证明了未包囊的新兴细菌在马勒菌廊模型中是无毒的。这些结果凸显了在噬菌体治疗期间预测种群变化和设计智能鸡尾酒以控制紧急菌株的重要性,以及使用靶向毒力因子的噬菌体的益处。由于从有限的环境中分离出的这种鸡尾酒的功效,我们已经建立了一条管道,用于通过使用来自全球的环境噬菌体来开发针对其他临床相关的耐多药病原体的新型噬菌体疗法。

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