刘岩, 李欣珂, 陈雯静. 工程化蛭弧菌防治细菌感染的研究进展J. 药学学报, 2025, 60(5): 1197-1207. DOI: 10.16438/j.0513-4870.2025-0197
引用本文: 刘岩, 李欣珂, 陈雯静. 工程化蛭弧菌防治细菌感染的研究进展J. 药学学报, 2025, 60(5): 1197-1207. DOI: 10.16438/j.0513-4870.2025-0197
LIU Yan, LI Xin-ke, CHEN Wen-jing. Advances in engineered Bdellovibrio bacteriovorus for controlling bacterial infectionsJ. Acta Pharmaceutica Sinica, 2025, 60(5): 1197-1207. DOI: 10.16438/j.0513-4870.2025-0197
Citation: LIU Yan, LI Xin-ke, CHEN Wen-jing. Advances in engineered Bdellovibrio bacteriovorus for controlling bacterial infectionsJ. Acta Pharmaceutica Sinica, 2025, 60(5): 1197-1207. DOI: 10.16438/j.0513-4870.2025-0197

工程化蛭弧菌防治细菌感染的研究进展

Advances in engineered Bdellovibrio bacteriovorus for controlling bacterial infections

  • 摘要: 细菌感染性疾病一直严重威胁着人类健康、动植物养殖产业发展及生态环境稳定。传统抗生素的广泛使用, 导致细菌耐药性问题日益严峻, 开发新型有效的细菌感染防治策略迫在眉睫。蛭弧菌作为一类以捕食细菌为生的寄生型细菌, 对多种致病菌具有裂解作用, 展现出防治细菌感染的潜力。但是, 直接使用蛭弧菌菌液或菌粉, 存在易流失、易被免疫系统清除、蛭弧菌活力难保持、使用顺应性差等问题。近年来, 工程化蛭弧菌技术为更精准、高效地利用蛭弧菌防治细菌感染带来了新的契机。本文调研了近年来工程化蛭弧菌防治细菌感染的研究进展, 重点介绍基于制剂设计、表面修饰、基因编辑的蛭弧菌工程化技术及其治疗应用, 为工程化蛭弧菌的研究发展提供参考。

     

    Abstract: Bacterial infectious diseases persistently pose severe threats to human health, development of livestock and aquaculture industries, and ecological stability. The extensive use of conventional antibiotics has led to increasingly critical issues of bacterial resistance, making the development of novel and effective strategies for preventing and treating bacterial infections an urgent priority. Bdellovibrio bacteriovorus, as a genus of parasitic bacteria that prey on other bacteria, exhibits lytic activity against various pathogenic species and demonstrates potential for combating bacterial infections. However, the direct application of B. bacteriovorus suspensions or powders faces challenges including rapid clearance, susceptibility to immune system elimination, difficulty in maintaining their vitality, and poor user compliance. Recent advancements in engineered B. bacteriovorus technology have created new opportunities for more precise and efficient utilization of these predators in infection control. This paper reviews recent advances in engineered B. bacteriovorus for bacterial infection control, with particular emphasis on engineering strategies based on formulation design, surface modification, and genetic editing, along with their therapeutic applications. The review aims to provide valuable insights for advancing research on engineered B. bacteriovorus technologies.

     

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