Wyatt Rachael A, Trieu Nhu P V, Crawford Bryan D
Department of Biology, University of New Brunswick, Fredericton, NB E3B 5A3, Canada.
Genes (Basel). 2017 Sep 5;8(9):220. doi: 10.3390/genes8090220.
Though the cancer research community has used mouse xenografts for decades more than zebrafish xenografts, zebrafish have much to offer: they are cheap, easy to work with, and the embryonic model is relatively easy to use in high-throughput assays. Zebrafish can be imaged live, allowing us to observe cellular and molecular processes in vivo in real time. Opponents dismiss the zebrafish model due to the evolutionary distance between zebrafish and humans, as compared to mice, but proponents argue for the zebrafish xenograft's superiority to cell culture systems and its advantages in imaging. This review places the zebrafish xenograft in the context of current views on cancer and gives an overview of how several aspects of this evolutionary disease can be addressed in the zebrafish model. Zebrafish are missing homologs of some human proteins and (of particular interest) several members of the matrix metalloproteinase (MMP) family of proteases, which are known for their importance in tumour biology. This review draws attention to the implicit evolutionary experiment taking place when the molecular ecology of the xenograft host is significantly different than that of the donor.
尽管癌症研究领域使用小鼠异种移植的时间比斑马鱼异种移植长几十年,但斑马鱼有很多优势:它们成本低、易于操作,而且胚胎模型相对容易用于高通量检测。斑马鱼可以进行活体成像,使我们能够实时在体内观察细胞和分子过程。与小鼠相比,由于斑马鱼与人类在进化上的距离,反对者对斑马鱼模型不屑一顾,但支持者认为斑马鱼异种移植优于细胞培养系统,且在成像方面具有优势。这篇综述将斑马鱼异种移植置于当前癌症观点的背景下,并概述了如何在斑马鱼模型中解决这种进化性疾病的几个方面。斑马鱼缺少一些人类蛋白质的同源物,(特别值得关注的是)基质金属蛋白酶(MMP)家族的几个成员,这些蛋白酶在肿瘤生物学中的重要性是众所周知的。这篇综述提请人们注意当异种移植宿主的分子生态与供体的分子生态显著不同时所发生的隐含进化实验。