Department of Laboratory Medicine and Research Institute of Bacterial Resistance, Yonsei University College of Medicine , Seoul, South Korea.
Department of Laboratory Medicine, Graduate School of Medical Science, Brain Korea 21 Project, Yonsei University College of Medicine , Seoul, South Korea.
Microbiol Spectr. 2024 Jan 11;12(1):e0125823. doi: 10.1128/spectrum.01258-23. Epub 2023 Nov 29.
In this study, we aimed to design a novel and effective bacteriophage cocktail that can target both wild-type bacteria and phage-resistant mutants. To achieve this goal, we isolated four phages (U2874, phi_KPN_H2, phi_KPN_S3, and phi_KPN_HS3) that recognized different bacterial surface molecules using phage-resistant bacteria. We constructed three phage cocktails and tested their phage resistance-suppressing ability against multidrug-resistant Klebsiella pneumoniae. We argue that the phage cocktail that induces resensitization of phage susceptibility exhibited superior phage resistance-suppressing ability. Moreover, we observed trade-off effects that manifested progressively in phage-resistant bacteria. We hypothesize that such trade-off effects can augment therapeutic efficacy. We also recommend collating phage host range data against phage-resistant mutants in addition to wild-type bacteria when establishing phage banks to improve the efficiency of phage therapy. Our study underscores the importance of phage host range data in constructing effective phage cocktails for clinical use.
在这项研究中,我们旨在设计一种新型有效的噬菌体鸡尾酒,能够靶向野生型细菌和噬菌体抗性突变体。为了实现这一目标,我们使用噬菌体抗性细菌分离了四种噬菌体(U2874、phi_KPN_H2、phi_KPN_S3 和 phi_KPN_HS3),它们识别不同的细菌表面分子。我们构建了三种噬菌体鸡尾酒,并测试了它们对多药耐药肺炎克雷伯菌的噬菌体抗性抑制能力。我们认为,诱导噬菌体敏感性再敏化的噬菌体鸡尾酒表现出了优越的噬菌体抗性抑制能力。此外,我们观察到在噬菌体抗性细菌中逐渐表现出的权衡效应。我们假设这种权衡效应可以增强治疗效果。我们还建议在建立噬菌体库时,除了野生型细菌外,还应整理噬菌体宿主范围数据对抗噬菌体抗性突变体,以提高噬菌体治疗的效率。我们的研究强调了在构建用于临床应用的有效噬菌体鸡尾酒时噬菌体宿主范围数据的重要性。