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斑马鱼幼体异种移植的构建及肿瘤行为分析

Generation of Zebrafish Larval Xenografts and Tumor Behavior Analysis.

作者信息

Martinez-Lopez Mayra, Póvoa Vanda, Fior Rita

机构信息

Champalimaud Centre for the Unknown, Champalimaud Foundation; Instituto Gulbenkian de Ciência.

Champalimaud Centre for the Unknown, Champalimaud Foundation.

出版信息

J Vis Exp. 2021 Jun 19(172). doi: 10.3791/62373.

Abstract

Zebrafish larval xenografts are being widely used for cancer research to perform in vivo and real-time studies of human cancer. The possibility of rapidly visualizing the response to anti-cancer therapies (chemo, radiotherapy, and biologicals), angiogenesis and metastasis with single cell resolution, places the zebrafish xenograft model as a top choice to develop preclinical studies. The zebrafish larval xenograft assay presents several experimental advantages compared to other models, but probably the most striking is the reduction of size scale and consequently time. This reduction of scale allows single cell imaging, the use of a relatively low number of human cells (compatible with biopsies), medium-high-throughput drug screenings, but most importantly enables a significant reduction of the time of the assay. All these advantages make the zebrafish xenograft assay extremely attractive for future personalized medicine applications. Many zebrafish xenograft protocols have been developed with a wide diversity of human tumors; however, a general and standardized protocol to efficiently generate zebrafish larval xenografts is still lacking. Here we provide a step-by-step protocol, with tips to generate xenografts and guidelines for tumor behavior analysis, whole-mount immunofluorescence, and confocal imaging quantification.

摘要

斑马鱼幼体异种移植正被广泛用于癌症研究,以对人类癌症进行体内实时研究。以单细胞分辨率快速可视化对抗癌疗法(化疗、放疗和生物制剂)、血管生成和转移的反应,使得斑马鱼异种移植模型成为开展临床前研究的首选。与其他模型相比,斑马鱼幼体异种移植试验具有几个实验优势,但最显著的可能是规模缩小,从而时间也相应减少。这种规模的缩小允许进行单细胞成像、使用相对少量的人类细胞(与活检兼容)、中高通量药物筛选,但最重要的是能够显著缩短试验时间。所有这些优势使得斑马鱼异种移植试验对未来的个性化医疗应用极具吸引力。已经开发了许多针对多种人类肿瘤的斑马鱼异种移植方案;然而,仍然缺乏一种通用且标准化的方案来高效生成斑马鱼幼体异种移植。在此,我们提供了一个分步方案,包括生成异种移植的技巧以及肿瘤行为分析、全组织免疫荧光和共聚焦成像定量的指南。

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