IFOM Foundation - FIRC Institute of Molecular Oncology Foundation, via Adamello, Milan, Italy.
Dis Model Mech. 2010 Sep-Oct;3(9-10):517-23. doi: 10.1242/dmm.004747. Epub 2010 Mar 30.
For the last three decades significant parts of national science budgets, and international and private funding worldwide, have been dedicated to cancer research. This has resulted in a number of important scientific findings. Studies in tissue culture have multiplied our knowledge of cancer cell pathophysiology, mechanisms of transformation and strategies of survival of cancer cells, revealing therapeutically exploitable differences to normal cells. Rodent animal models have provided important insights on the developmental biology of cancer cells and on host responses to the transformed cells. However, the rate of death from some malignancies is still high, and the incidence of cancer is increasing in the western hemisphere. Alternative animal models are needed, where cancer cell biology, developmental biology and treatment can be studied in an integrated way. The zebrafish offers a number of features, such as its rapid development, tractable genetics, suitability for in vivo imaging and chemical screening, that make it an attractive model to cancer researchers. This Primer will provide a synopsis of the different cancer models generated by the zebrafish community to date. It will discuss the use of these models to further our understanding of the mechanisms of cancer development, and to promote drug discovery. The article was inspired by a workshop on the topic held in July 2009 in Spoleto, Italy, where a number of new zebrafish cancer models were presented. The overarching goal of the article is aimed at raising the awareness of basic researchers, as well as clinicians, to the versatility of this emerging alternative animal model of cancer.
在过去的三十年中,大量的国家科学预算、国际和全球私人资金都投入到癌症研究中。这带来了许多重要的科学发现。组织培养研究增加了我们对癌细胞病理生理学、转化机制和癌细胞存活策略的认识,揭示了癌症细胞与正常细胞在治疗上可利用的差异。啮齿动物动物模型为癌细胞的发育生物学和宿主对转化细胞的反应提供了重要的见解。然而,一些恶性肿瘤的死亡率仍然很高,而且癌症的发病率在西半球正在上升。需要替代的动物模型,在这些模型中可以综合研究癌细胞生物学、发育生物学和治疗方法。斑马鱼具有许多特点,例如其快速发育、易于操作的遗传学、适合体内成像和化学筛选,这使其成为癌症研究人员的一个有吸引力的模型。本《概论》将概述迄今为止斑马鱼社区产生的不同癌症模型。它将讨论这些模型在帮助我们理解癌症发展机制和促进药物发现方面的应用。这篇文章的灵感来自于 2009 年 7 月在意大利斯波莱托举行的一次关于该主题的研讨会,会上介绍了一些新的斑马鱼癌症模型。这篇文章的总体目标是提高基础研究人员和临床医生对这种新兴的癌症替代动物模型的多功能性的认识。