噬菌体
细菌病毒
大肠杆菌
光学现象
显微镜
动力学(音乐)
计算生物学
光学成像
纳米技术
生物物理学
生物系统
生物
荧光显微镜
化学
噬菌体疗法
物理
荧光寿命成像显微镜
铜绿假单胞菌
光学传感
荧光
衣壳
溶原循环
作者
Francesco Giorgi,Samuel Chenery,Liberty Duignan,Joanne L. Fothergill,Eann Patterson,Judith M. Curran
标识
DOI:10.1098/rsif.2026.0250
摘要
Bacteriophages are the focus of extensive research, and monitoring their dynamics and interactions with bacterial hosts is crucial to characterize the mechanisms of infection and to support potential applications in biotechnology and medicine. Traditional monitoring techniques rely on the fluorescent labelling of bacteriophages due to their size being nanometric. In this paper, we propose a novel, label-free method to generate optical signatures of bacteriophages in a conventional microscopy set-up by exploiting the optical phenomenon of caustics. Using Pseudomonas aeruginosa phages (pelp20 and phiKZ) and a newly isolated Escherichia coli phage (EcoLiv25), we demonstrate the generation of distinct optical signatures that enable prolonged monitoring of phage dynamics in liquid media. The results obtained demonstrate caustics-based optical microscopy as a robust, non-invasive approach that complements existing imaging methods by enabling real-time observation and quantitative analysis of phage motion, transport and interactions. Building on these capabilities, the technique can accelerate fundamental studies of viral dynamics and ecology, enable real-time observation of phage-bacteria interactions and support the development of phage-based diagnostics and antimicrobial therapies.
科研通智能强力驱动
Strongly Powered by AbleSci AI