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斑马鱼作为转化免疫肿瘤学模型

英文原题:Zebrafish as a Model for Translational Immuno-Oncology.

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Zebrafish as a Model for Translational Immuno-Oncology.

PubMed 2025/07/11(内容时间) J Pers Med

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中文摘要

尽管癌症免疫治疗取得了显著进展,但许多在小鼠或体外模型中显示疗效的药物未能转化为临床。斑马鱼(Danio rerio)已成为一种强大的补充模型,弥补了传统系统的若干局限性。其光学透明性、遗传可操作性以及保守的免疫和致癌信号通路,使得能够在体内对肿瘤-免疫相互作用进行高分辨率、实时成像。

重要的是,斑马鱼为研究健康和疾病的核心机制提供了独特机会,补充了其他模型并拓展了我们对体内基本过程的理解。本综述概述了斑马鱼免疫系统的发育,重点介绍了追踪先天性和适应性免疫反应的工具。

我们讨论了利用转基因和异种移植方法在模拟免疫逃逸、检查点分子表达和肿瘤微环境动态方面的应用。评估了用于高通量药物筛选和利用患者来源异种移植(“zAvatars”)进行个性化治疗评估的平台,同时探讨了其局限性,如温度敏感性、幼鱼适应性免疫不成熟,以及免疫反应、肿瘤复杂性和药代动力学方面的种间差异。新兴前沿领域包括人源化斑马鱼、下一代免疫疗法的测试,如 CAR-T/CAR NK 和新型检查点抑制剂(LAG-3、TIM-3 和 TIGIT)。

最后,我们概述了将斑马鱼整合到免疫肿瘤学管线中以加速临床转化的关键挑战和未来机遇。

展开英文摘要原文

Despite remarkable progress in cancer immunotherapy, many agents that show efficacy in murine or in vitro models fail to translate clinically. Zebrafish ( Danio rerio ) have emerged as a powerful complementary model that addresses several limitations of traditional systems. Their optical transparency, genetic tractability, and conserved immune and oncogenic signaling pathways enable high-resolution, real-time imaging of tumor-immune interactions in vivo.

Importantly, zebrafish offer a unique opportunity to study the core mechanisms of health and sickness, complementing other models and expanding our understanding of fundamental processes in vivo. This review provides an overview of zebrafish immune system development, highlighting tools for tracking innate and adaptive responses.

We discuss their application in modeling immune evasion, checkpoint molecule expression, and tumor microenvironment dynamics using transgenic and xenograft approaches. Platforms for high-throughput drug screening and personalized therapy assessment using patient-derived xenografts ("zAvatars") are evaluated, alongside limitations, such as temperature sensitivity, immature adaptive immunity in larvae, and interspecies differences in immune responses, tumor complexity, and pharmacokinetics.

Emerging frontiers include humanized zebrafish, testing of next-generation immunotherapies, such as CAR T/CAR NK and novel checkpoint inhibitors (LAG-3, TIM-3, and TIGIT).

We conclude by outlining the key challenges and future opportunities for integrating zebrafish into the immuno-oncology pipeline to accelerate clinical translation.

论文信息

作者
Barbosa GR、de Souza AM、Silva PF、Fávero CS、de Oliveira JL、Carvalho HF、Luchiari AC、Reis LO
单位
Immuno-Oncology Institute, Pontifical Catholic University of Campinas, Campinas 13087-571, SP, Brazil.Brazil
文献类型
综述
期刊
Journal of personalized medicine2025 Jul 11
原文标识
PubMed 40710421 · DOI 10.3390/jpm15070304