Nishimura Yuhei, Inoue Atsuto, Sasagawa Shota, Koiwa Junko, Kawaguchi Koki, Kawase Reiko, Maruyama Toru, Kim Soonih, Tanaka Toshio
Department of Molecular and Cellular Pharmacology, Pharmacogenomics and Pharmacoinformatics, Mie University Graduate School of Medicine, Tsu, Mie.
Mie University Medical Zebrafish Research Center, Tsu, Mie.
Congenit Anom (Kyoto). 2016 Jan;56(1):18-27. doi: 10.1111/cga.12142.
With the high cost and the long-term assessment of developmental toxicity testing in mammals, the vertebrate zebrafish has become a useful alternative model organism for high-throughput developmental toxicity testing. Zebrafish is also very favorable for the 3R perspective in toxicology; however, the methodologies used by research groups vary greatly, posing considerable challenges to integrative analysis. In this review, we discuss zebrafish developmental toxicity testing, focusing on the methods of chemical exposure, the assessment of morphological abnormalities, housing conditions and their effects on the production of healthy embryos, and future directions. Zebrafish as a systems toxicology model has the potential to elucidate developmental toxicity pathways, and to provide a sound basis for human health risk assessments.
鉴于哺乳动物发育毒性测试成本高昂且需要长期评估,脊椎动物斑马鱼已成为用于高通量发育毒性测试的一种有用的替代模式生物。斑马鱼在毒理学的3R原则方面也非常有利;然而,各研究小组使用的方法差异很大,给综合分析带来了相当大的挑战。在本综述中,我们讨论斑马鱼发育毒性测试,重点关注化学物质暴露方法、形态异常评估、饲养条件及其对健康胚胎产生的影响,以及未来方向。斑马鱼作为一种系统毒理学模型,有潜力阐明发育毒性途径,并为人类健康风险评估提供坚实基础。