Carradice Duncan, Lieschke Graham J
Walter and Eliza Hall Institute of Medical Reserch, Department of Medical Biology, University of Melbourne, and Department of Clinical Haematology and Medical Oncology, Royal Melbourne Hospital, Parkville, Australia.
Blood. 2008 Apr 1;111(7):3331-42. doi: 10.1182/blood-2007-10-052761. Epub 2008 Jan 8.
After a decade of the "modern era" of zebrafish hematology research, what have been their major contributions to hematology and what challenges does the model face? This review argues that, in hematology, zebrafish have demonstrated their suitability, are proving their utility, have supplied timely and novel discoveries, and are poised for further significant contributions. It presents an overview of the anatomy, physiology, and genetics of zebrafish hematopoiesis underpinning their use in hematology research. Whereas reverse genetic techniques enable functional studies of particular genes of interest, forward genetics remains zebrafish's particular strength. Mutants with diverse and interesting hematopoietic defects are emerging from multiple genetic screens. Some mutants model hereditary blood diseases, occasionally leading to disease genes first; others provide insights into developmental hematology. Models of malignant hematologic disorders provide tools for drug-target and pharmaceutics discovery. Numerous transgenic zebrafish with fluorescently marked blood cells enable live-cell imaging of inflammatory responses and host-pathogen interactions previously inaccessible to direct observation in vivo, revealing unexpected aspects of leukocyte behavior. Zebrafish disease models almost uniquely provide a basis for efficient whole animal chemical library screens for new therapeutics. Despite some limitations and challenges, their successes and discovery potential mean that zebrafish are here to stay in hematology research.
在斑马鱼血液学研究的“现代 era”十年之后,它们对血液学有哪些主要贡献,该模型面临哪些挑战?本综述认为,在血液学领域,斑马鱼已证明其适用性,正在证明其效用,提供了及时且新颖的发现,并准备做出进一步的重大贡献。本文概述了斑马鱼造血的解剖学、生理学和遗传学,这些是其在血液学研究中应用的基础。虽然反向遗传技术能够对特定感兴趣的基因进行功能研究,但正向遗传学仍然是斑马鱼的独特优势。多个遗传筛选中出现了具有多样且有趣造血缺陷的突变体。一些突变体模拟遗传性血液疾病,偶尔会首先发现疾病基因;其他突变体则为发育血液学提供了见解。恶性血液疾病模型为药物靶点和药物发现提供了工具。众多带有荧光标记血细胞的转基因斑马鱼能够对炎症反应和宿主 - 病原体相互作用进行活细胞成像,而此前在体内无法直接观察到这些情况,从而揭示了白细胞行为中意想不到的方面。斑马鱼疾病模型几乎独一无二地为高效的全动物化学文库筛选新疗法提供了基础。尽管存在一些局限性和挑战,但它们的成功和发现潜力意味着斑马鱼将继续在血液学研究中发挥作用。