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The State of the Art of the Zebrafish Model for Toxicology and Toxicologic Pathology Research—Advantages and Current Limitations

机译:斑马鱼毒理学和毒理学病理学研究模型的最新发展-优点和局限性

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摘要

The zebrafish (Danio rerio) is now the pre-eminent vertebrate model system for clarification of the roles of specific genes and signaling pathways in development. The zebrafish genome will be completely sequenced within the next 1–2 years. Together with the substantial historical database regarding basic developmental biology, toxicology, and gene transfer, the rich foundation of molecular genetic and genomic data makes zebrafish a powerful model system for clarifying mechanisms in toxicity. In contrast to the highly advanced knowledge base on molecular developmental genetics in zebrafish, our database regarding infectious and noninfectious diseases and pathologic lesions in zebrafish lags far behind the information available on most other domestic mammalian and avian species, particularly rodents. Currently, minimal data are available regarding spontaneous neoplasm rates or spontaneous aging lesions in any of the commonly used wild-type or mutant lines of zebrafish. Therefore, to fully utilize the potential of zebrafish as an animal model for understanding human development, disease, and toxicology we must greatly advance our knowledge on zebrafish diseases and pathology.
机译:斑马鱼(Danio rerio)现在是杰出的脊椎动物模型系统,用于阐明特定基因在发育中的作用和信号传导途径。斑马鱼的基因组将在未来1-2年内完全测序。加上有关基础发育生物学,毒理学和基因转移的大量历史数据库,分子遗传学和基因组数据的丰富基础使斑马鱼成为阐明毒性机理的强大模型系统。与关于斑马鱼分子发育遗传学的高度先进的知识相反,我们关于斑马鱼传染性和非传染性疾病以及病理性病变的数据库远远落后于大多数其他国内哺乳动物和禽类(尤其是啮齿动物)的可用信息。目前,在任何常用的斑马鱼野生型或突变型品系中,有关自发肿瘤发生率或自发衰老病变的资料很少。因此,要充分利用斑马鱼作为动物模型来理解人类发育,疾病和毒理学的潜力,我们必须大大提高对斑马鱼疾病和病理学的认识。

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