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Improvement of the evaluation method for teratogenicity using zebrafish embryos

机译:斑马鱼胚胎致畸性评估方法的改进

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The zebrafish has been considered as a suitable animal model for drug discovery, especially for evaluation of the teratogenicity, due to their small size, rapid development, transparency, and developmental similarities to mammalian development. These features of zebrafish make it possible to maintain them in culture plates, evaluate the teratogenicity in short term, conduct morphological assessment of each organ without any autopsy operation. The purpose of the present study was to improve an evaluation method for the teratogenicity of test compounds with high throughput ability and prediction rateusing zebrafish embryos. In this study, we established a modified evaluation method as using non-dechorionated embryos and observation a limited number of parameters without grading. Zebrafish embryos were exposed to test compounds from 5-6 to 144 hr post-fertilization, (hpf) corresponding to the organogenesis period. Morphological changes or functional abnormalities induced by test compound treatments were assessed and scored at 11 endpoints, and the potential of teratogenicity was judged based on the score. As a validation assay of the system, the potentials of 59 known teratogenic or non-teratogenic test compounds were evaluated using the present standard zebrafish assay, and the teratogenicity was correctly predicted in 90% (53/59) of all compounds with low false negative and false positive rates. These results indicated that the evaluation method using zebrafish for the teratogenicity we have improved was a valuable tool for early stage screening in drug discovery.
机译:由于斑马鱼体积小,发展迅速,透明度高且与哺乳动物发育相似,因此已被认为是适合发现药物,特别是评估致畸性的动物模型。斑马鱼的这些特征使得可以将它们保存在培养板中,可以在短期内评估其致畸性,无需进行任何尸体解剖操作即可对每个器官进行形态学评估。本研究的目的是要改进一种评估方法的使用斑马鱼胚胎具有高通量能力和预测率的致畸物的致畸性。在这项研究中,我们建立了一种改进的评估方法,该方法使用未穿皮甲化的胚胎,并观察了数量有限的参数而没有分级。斑马鱼的胚胎在受精后的5-6到144小时(hpf)中暴露于受试化合物,这对应于器官发生时期。在11个终点对由试验化合物治疗引起的形态学变化或功能异常进行评估和评分,并根据评分判断致畸的可能性。作为系统的验证分析,使用本标准斑马鱼分析方法评估了59种已知的致畸或非致畸试验化合物的潜力,并在90%(53/59)具有低假阴性的所有化合物中正确预测了致畸性和误报率。这些结果表明,使用斑马鱼改善致畸性的评估方法是用于药物发现早期筛选的有价值的工具。

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