Instituto de Productos Lácteos de Asturias (IPLA-CSIC), Paseo Río Linares s/n, 33300 Villaviciosa, Asturias, Spain.
DairySafe Group, Instituto de Investigación Sanitaria del Principado de Asturias (ISPA), 33011 Oviedo, Asturias, Spain.
Viruses. 2022 May 16;14(5):1061. doi: 10.3390/v14051061.
Despite occurring at the microscopic scale, the armed race between phages and their bacterial hosts involves multiple mechanisms, some of which are just starting to be understood. On the one hand, bacteria have evolved strategies that can stop the viral infection at different stages (adsorption, DNA injection and replication, biosynthesis and assembly of the viral progeny and/or release of the newly formed virions); on the other, phages have gradually evolved counterattack strategies that allow them to continue infecting their prey. This co-evolutionary process has played a major role in the development of microbial populations in both natural and man-made environments. Notably, understanding the parameters of this microscopic war will be paramount to fully benefit from the application of phage therapy against dangerous, antibiotic-resistant human pathogens. This review gathers the current knowledge regarding the mechanisms of phage resistance in the genus, which includes , one of the most concerning microorganisms in terms of antibiotic resistance acquisition. Some of these strategies involve permanent changes to the bacterial cell via mutations, while others are transient, adaptive changes whose expression depends on certain environmental cues or the growth phase. Finally, we discuss the most plausible strategies to limit the impact of phage resistance on therapy, with a special emphasis on the importance of a rational design of phage cocktails in order to thwart therapeutic failure.
尽管发生在微观尺度上,噬菌体与其细菌宿主之间的武装竞赛涉及多种机制,其中一些才刚刚开始被理解。一方面,细菌已经进化出了可以在不同阶段(吸附、DNA 注入和复制、病毒后代的生物合成和组装以及新形成的病毒粒子的释放)阻止病毒感染的策略;另一方面,噬菌体逐渐进化出了反击策略,使它们能够继续感染它们的猎物。这种共同进化过程在自然和人为环境中微生物种群的发展中发挥了重要作用。值得注意的是,了解这场微观战争的参数对于充分利用噬菌体疗法对抗危险的、对抗生素耐药的人类病原体至关重要。这篇综述汇集了关于噬菌体在属中的抗性机制的最新知识,其中包括,就抗生素耐药性获得而言,是最令人担忧的微生物之一。其中一些策略涉及通过突变对细菌细胞进行永久性改变,而另一些则是暂时的、适应性的变化,其表达取决于某些环境线索或生长阶段。最后,我们讨论了限制噬菌体抗性对治疗影响的最可行策略,特别强调了合理设计噬菌体鸡尾酒以避免治疗失败的重要性。