Shi Xiangguo, He Bai-Liang, Ma Alvin C H, Leung Anskar Y H
Division of Haematology, Medical Oncology and Bone Marrow Transplantation, Department of Medicine, LKS Faculty Medicine, The University of Hong Kong.
Blood Rev. 2016 Mar;30(2):119-30. doi: 10.1016/j.blre.2015.09.001. Epub 2015 Sep 11.
Recent advent in next generation sequencing (NGS) and bioinformatics has generated an unprecedented amount of genetic information in myeloidmalignancies. This information may shed lights to the pathogenesis, diagnosis and prognostication of these diseases and provide potential targets for therapeutic intervention. However, the rapid emergence of genetic information will quickly outpace their functional validation by conventional laboratory platforms. Foundational knowledge about zebrafish hematopoiesis accumulated over the past two decades and novel genomeediting technologies and research strategies in thismodel organismhavemade it a unique and timely research tool for the study of human blood diseases. Recent studies modeling human myeloid malignancies in zebrafish have also highlighted the technical feasibility and clinical relevance of thesemodels. Careful validation of experimental protocols and standardization among laboratorieswill further enhance the application of zebrafish in the scientific communities and provide important insights to the personalized treatment ofmyeloid malignancies.
新一代测序(NGS)和生物信息学的最新进展在髓系恶性肿瘤中产生了前所未有的大量遗传信息。这些信息可能为这些疾病的发病机制、诊断和预后提供线索,并为治疗干预提供潜在靶点。然而,遗传信息的迅速出现将很快超过传统实验室平台对其功能验证的速度。在过去二十年中积累的关于斑马鱼造血的基础知识,以及这种模式生物中的新型基因组编辑技术和研究策略,使其成为研究人类血液疾病的独特且及时的研究工具。最近在斑马鱼中模拟人类髓系恶性肿瘤的研究也突出了这些模型的技术可行性和临床相关性。仔细验证实验方案并在各实验室之间进行标准化,将进一步加强斑马鱼在科学界的应用,并为髓系恶性肿瘤的个性化治疗提供重要见解。