Martínez-López Mayra Fernanda, López-Gil José Francisco
School of Medicine, Universidad Espíritu Santo, Samborondón 092301, Ecuador.
One Health Research Group, Universidad de Las Américas, Quito 170124, Ecuador.
Int J Mol Sci. 2025 Jan 21;26(3):871. doi: 10.3390/ijms26030871.
Cancer metastasis is a leading cause of cancer-related deaths and represents one of the most challenging processes to study due to its complexity and dynamic nature. Zebrafish () have become an invaluable model in metastasis research, offering unique advantages such as optical transparency, rapid development, and the ability to visualize tumor interactions with the microenvironment in real time. This review explores how zebrafish models have elucidated the critical steps of metastasis, including tumor invasion, vascular remodeling, and immune evasion, while also serving as platforms for drug testing and personalized medicine. Advances such as patient-derived xenografts and innovative genetic tools have further established zebrafish as a cornerstone in cancer research, particularly in understanding the molecular drivers of metastasis and identifying therapeutic targets. By bridging the experimental findings with clinical relevance, zebrafish continue transforming our understanding of cancer biology and therapy.
癌症转移是癌症相关死亡的主要原因,由于其复杂性和动态性,它是研究中最具挑战性的过程之一。斑马鱼已成为转移研究中非常有价值的模型,具有诸如光学透明性、发育迅速以及能够实时可视化肿瘤与微环境相互作用等独特优势。本综述探讨了斑马鱼模型如何阐明转移的关键步骤,包括肿瘤侵袭、血管重塑和免疫逃逸,同时还作为药物测试和个性化医疗的平台。患者来源的异种移植和创新的基因工具等进展进一步确立了斑马鱼在癌症研究中的基石地位,特别是在理解转移的分子驱动因素和确定治疗靶点方面。通过将实验结果与临床相关性联系起来,斑马鱼不断改变我们对癌症生物学和治疗的理解。