Isolation and Characterization of Klebsiella Phages for Phage Therapy

溶解循环 噬菌体疗法 克雷伯菌 噬菌体 微生物学 生物 溶原循环 毒力 病毒学 肺炎克雷伯菌 大肠杆菌 基因 病毒 遗传学
作者
Eleanor M. Townsend,Lucy Kelly,Lucy Gannon,George Muscatt,Rhys A. Dunstan,Slawomir Michniewski,Hari Prasad Sapkota,Saija Kiljunen,Anna Kolsi,Mikael Skurnik,Trevor Lithgow,Andrew D. Millard,Eleanor Jameson
出处
期刊:PHAGE [Mary Ann Liebert]
卷期号:2 (1): 26-42 被引量:27
标识
DOI:10.1089/phage.2020.0046
摘要

Introduction:Klebsiella is a clinically important pathogen causing a variety of antimicrobial resistant infections in both community and nosocomial settings, particularly pneumonia, urinary tract infection, and sepsis. Bacteriophage (phage) therapy is being considered a primary option for the treatment of drug-resistant infections of these types. Methods: We report the successful isolation and characterization of 30 novel, genetically diverse Klebsiella phages. Results: The isolated phages span six different phage families and nine genera, representing both lysogenic and lytic lifestyles. Individual Klebsiella phage isolates infected up to 11 of the 18 Klebsiella capsule types tested, and all 18 capsule-types were infected by at least one of the phages. Conclusions: Of the Klebsiella-infecting phages presented in this study, the lytic phages are most suitable for phage therapy, based on their broad host range, high virulence, short lysis period and given that they encode no known toxin or antimicrobial resistance genes. Phage isolates belonging to the Sugarlandvirus and Slopekvirus genera were deemed most suitable for phage therapy based on our characterization. Importantly, when applied alone, none of the characterized phages were able to suppress the growth of Klebsiella for more than 12 h, likely due to the inherent ease of Klebsiella to generate spontaneous phage-resistant mutants. This indicates that for successful phage therapy, a cocktail of multiple phages would be necessary to treat Klebsiella infections.

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