Lopukhin Federal Research and Clinical Center of Physical-Chemical Medicine of Federal Medical Biological Agency Medicine, Moscow 119435, Russia.
Viruses. 2023 Jun 23;15(7):1427. doi: 10.3390/v15071427.
The issue of antibiotic resistance in healthcare worldwide has led to a pressing need to explore and develop alternative approaches to combat infectious diseases. Among these methods, phage therapy has emerged as a potential solution to tackle this growing challenge. Virulent phages of the family, known for their ability to cause lysis of , a clinically significant pathogen frequently associated with multidrug resistance, have proven to be one of the most effective viruses utilized in phage therapy. In order to utilize phages for therapeutic purposes effectively, a thorough investigation into their physiology and mechanisms of action on infected cells is essential. The use of omics technologies, particularly total RNA sequencing, is a promising approach for analyzing the interaction between phages and their hosts, allowing for the assessment of both the behavior of the phage during infection and the cell's response. This review aims to provide a comprehensive overview of the physiology of the family, utilizing existing analyses of their total phage transcriptomes. Additionally, it sheds light on the changes that occur in the metabolism of when infected with virulent bacteriophages, contributing to a deeper understanding of the phage-host interaction.
在全球范围内,抗生素耐药性问题已经迫在眉睫,需要探索和开发替代方法来对抗传染病。在这些方法中,噬菌体疗法作为一种潜在的解决方案已经崭露头角,用以应对这一日益严峻的挑战。噬菌体型科的烈性噬菌体因其能够裂解 而备受关注, 是一种临床意义重大的病原体,经常与多种药物耐药性相关,已被证明是噬菌体疗法中最有效的病毒之一。为了有效地将噬菌体用于治疗目的,必须深入研究它们在感染细胞中的生理学和作用机制。使用组学技术,特别是总 RNA 测序,是分析噬菌体与其宿主相互作用的一种很有前途的方法,可以评估噬菌体在感染过程中的行为以及细胞的反应。本综述旨在利用现有的全噬菌体转录组分析,全面概述噬菌体型科的生理学。此外,本综述还揭示了烈性噬菌体感染时 代谢发生的变化,有助于深入了解噬菌体-宿主相互作用。