Department of Medical Microbiology and Infection Control, Amsterdam UMC, Location VU Medical Center,De Boelelaan 1108, 1081 HZ Amsterdam, The Netherlands.
Section Molecular Microbiology of A-LIFE, Vrije Universiteit, De Boelelaan 1085, 1081 HV Amsterdam, The Netherlands.
FEMS Microbiol Rev. 2024 May 8;48(3). doi: 10.1093/femsre/fuae011.
The rise of multidrug-resistant bacteria underlines the need for innovative treatments, yet the introduction of new drugs has stagnated despite numerous antimicrobial discoveries. A major hurdle is a poor correlation between promising in vitro data and in vivo efficacy in animal models, which is essential for clinical development. Early in vivo testing is hindered by the expense and complexity of existing animal models. Therefore, there is a pressing need for cost-effective, rapid preclinical models with high translational value. To overcome these challenges, zebrafish embryos have emerged as an attractive model for infectious disease studies, offering advantages such as ethical alignment, rapid development, ease of maintenance, and genetic manipulability. The zebrafish embryo infection model, involving microinjection or immersion of pathogens and potential antibiotic hit compounds, provides a promising solution for early-stage drug screening. It offers a cost-effective and rapid means of assessing the efficacy, toxicity and mechanism of action of compounds in a whole-organism context. This review discusses the experimental design of this model, but also its benefits and challenges. Additionally, it highlights recently identified compounds in the zebrafish embryo infection model and discusses the relevance of the model in predicting the compound's clinical potential.
耐药菌的兴起凸显了创新治疗方法的必要性,但尽管有许多抗菌药物的发现,新药物的引入却停滞不前。一个主要的障碍是体外数据与动物模型体内疗效之间相关性较差,而这对于临床开发至关重要。现有的动物模型费用高且复杂,这阻碍了早期体内测试。因此,迫切需要具有高转化价值的经济高效、快速的临床前模型。为了克服这些挑战,斑马鱼胚胎已成为传染病研究的有吸引力的模型,具有符合伦理、快速发育、易于维持和遗传可操作性等优势。斑马鱼胚胎感染模型包括病原体和潜在抗生素化合物的微注射或浸泡,为早期药物筛选提供了有希望的解决方案。它提供了一种在全器官背景下评估化合物疗效、毒性和作用机制的经济高效、快速手段。本文讨论了该模型的实验设计,但也讨论了其优点和挑战。此外,还强调了斑马鱼胚胎感染模型中最近发现的化合物,并讨论了该模型在预测化合物临床潜力方面的相关性。