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Zebrafish: An Emerging Model System for Human Disease and Drug Discovery

Clinical Pharmacology & Therapeutics · 2007 · Vol. 82(1) · pp. 70–80
Gabor KariUlrich RodeckAdam P. Dicker

Abstract

In vivo studies represent an essential step in drug development and currently rely largely on mice, yet limitations of mammalian models motivated the search for complementary vertebrate model systems. This review focuses on zebrafish, Danio rerio, as a facile model system to study human disease and drug responses. Zebrafish are particularly suited for this purpose because they represent a vertebrate species, their genome is sequenced, and a large number of synchronously developing, transparent embryos can be produced. Zebrafish embryos are permeable to drugs and can easily be manipulated using well-established genetic and molecular approaches. Here, we summarize recent work on drug discovery and toxicity in zebrafish embryos. In addition, we provide a synopsis of current efforts to establish disease models in zebrafish focusing on neoplasia. The results of these studies highlight the potential of zebrafish as a viable addition to established animal models by offering medium and, potentially, high throughput capabilities.

Zebrafish Biomedical Research ApplicationsPluripotent Stem Cells ResearchReceptor Mechanisms and SignalingZebrafishDanioDrug discoveryComputational biologyModel organismBiologyModel systemDrug developmentHuman diseaseDisease

MeSH terms

AnimalsAntineoplastic AgentsCarcinogensCell Transformation, NeoplasticDNA DamageDrug Evaluation, PreclinicalEmbryo, NonmammalianHumansMutagenicity TestsMutagensNeoplasms, ExperimentalZebrafishDrug DesignCarcinogenicity TestsReproducibility of Results

Funding

  • Thomas Jefferson University
  • National Institutes of Health
Citations
464
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7.43
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