Department of Hematology and Oncology, University of Tübingen Medical Center II, Tübingen, Germany.
Ann N Y Acad Sci. 2012 Aug;1266:124-37. doi: 10.1111/j.1749-6632.2012.06575.x.
The zebrafish has become a powerful vertebrate model for genetic studies of embryonic development and organogenesis and increasingly for studies in cancer biology. Zebrafish facilitate the performance of reverse and forward genetic approaches, including mutagenesis and small molecule screens. Moreover, several studies report the feasibility of xenotransplanting human cells into zebrafish embryos and adult fish. This model provides a unique opportunity to monitor tumor-induced angiogenesis, invasiveness, and response to a range of treatments in vivo and in real time. Despite the high conservation of gene function between fish and humans, concern remains that potential differences in zebrafish tissue niches and/or missing microenvironmental cues could limit the relevance and translational utility of data obtained from zebrafish human cancer cell xenograft models. Here, we summarize current data on xenotransplantation of human cells into zebrafish, highlighting the advantages and limitations of this model in comparison to classical murine models of xenotransplantation.
斑马鱼已成为遗传研究胚胎发育和器官发生的强大脊椎动物模型,并且越来越多地用于癌症生物学研究。斑马鱼促进了反向和正向遗传方法的实施,包括诱变和小分子筛选。此外,有几项研究报告了将人类细胞异种移植到斑马鱼胚胎和成年鱼中的可行性。该模型为实时监测肿瘤诱导的血管生成、侵袭性以及对一系列治疗方法的反应提供了独特的机会。尽管鱼类和人类之间的基因功能高度保守,但人们仍然担心斑马鱼组织小生境中的潜在差异和/或缺失的微环境线索可能会限制从斑马鱼人类癌细胞异种移植模型中获得的数据的相关性和转化实用性。在这里,我们总结了将人类细胞异种移植到斑马鱼中的最新数据,重点介绍了与经典的小鼠异种移植模型相比该模型的优势和局限性。