VBIC, INSERM U1047, University of Montpellier, Montpellier, France.
Greenphage, Cap Alpha, Clapiers, France.
Antimicrob Agents Chemother. 2024 Oct 8;68(10):e0082924. doi: 10.1128/aac.00829-24. Epub 2024 Sep 9.
The escalating prevalence of antibiotic-resistant bacterial infections necessitates urgent alternative therapeutic strategies. Phage therapy, which employs bacteriophages to specifically target pathogenic bacteria, emerges as a promising solution. This review examines the efficacy of phage therapy in zebrafish models, both embryos and adults, which are proven and reliable for simulating human infectious diseases. We synthesize findings from recent studies that utilized these models to assess phage treatments against various bacterial pathogens, including , , , , , , and . Methods of phage administration, such as circulation injection and bath immersion, are detailed alongside evaluations of survival rates and bacterial load reductions. Notably, combination therapies of phages with antibiotics show enhanced efficacy, as evidenced by improved survival rates and synergistic effects in reducing bacterial loads. We also discuss the transition from zebrafish embryos to adult models, emphasizing the increased complexity of immune responses. This review highlights the valuable contribution of the zebrafish model to advancing phage therapy research, particularly in the face of rising antibiotic resistance and the urgent need for alternative treatments.
抗生素耐药性细菌感染的不断上升,迫切需要替代治疗策略。噬菌体疗法利用噬菌体特异性靶向致病菌,是一种很有前途的解决方案。本文综述了噬菌体疗法在斑马鱼模型中的疗效,包括胚胎和成年斑马鱼,这些模型已被证明可可靠模拟人类传染病。我们综合了最近利用这些模型评估噬菌体治疗各种细菌病原体的研究结果,这些病原体包括 、 、 、 、 、 和 。详细介绍了噬菌体给药方法,如循环注射和浸浴,并评估了存活率和细菌负荷降低情况。值得注意的是,噬菌体与抗生素的联合治疗显示出增强的疗效,表现在存活率提高和协同降低细菌负荷方面。我们还讨论了从斑马鱼胚胎到成年模型的转变,强调了免疫反应的复杂性增加。本文综述强调了斑马鱼模型在推进噬菌体治疗研究方面的重要贡献,特别是在抗生素耐药性不断上升和迫切需要替代治疗的情况下。
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