Hong Taeyeon, Park Junho, An Garam, Song Jisoo, Song Gwonhwa, Lim Whasun
Department of Biological Sciences, College of Science, Sungkyunkwan University, Suwon 16419, Republic of Korea.
Department of Biotechnology, College of Life Sciences and Biotechnology, Korea University, Seoul 02841, Republic of Korea.
Mol Cells. 2024 Dec;47(12):100144. doi: 10.1016/j.mocell.2024.100144. Epub 2024 Nov 1.
There is increasing global concern about environmental pollutants, such as heavy metals, plastics, pharmaceuticals, personal care products, and pesticides, which have been detected in a variety of environments and are likely to be exposed to nontarget organisms, including humans. Various animal models have been utilized for toxicity assessment, and zebrafish are particularly valuable for studying the toxicity of various compounds owing to their similarity to other aquatic organisms and 70% genetic similarity to humans. Their development is easy to observe, and transgenic models for organs such as the heart, liver, blood vessels, and nervous system enable efficient studies of organ-specific toxicity. This suggests that zebrafish are a valuable tool for evaluating toxicity in specific organs and forecasting the potential impacts on other nontarget species. This review describes organ toxicity caused by various toxic substances and their mechanisms in zebrafish.
全球对环境污染物的关注日益增加,这些污染物包括重金属、塑料、药物、个人护理产品和农药,它们已在各种环境中被检测到,并可能暴露于包括人类在内的非目标生物。各种动物模型已被用于毒性评估,而斑马鱼由于与其他水生生物相似且与人类有70%的基因相似性,对于研究各种化合物的毒性特别有价值。它们的发育易于观察,心脏、肝脏、血管和神经系统等器官的转基因模型能够高效地研究器官特异性毒性。这表明斑马鱼是评估特定器官毒性和预测对其他非目标物种潜在影响的有价值工具。本综述描述了斑马鱼中各种有毒物质引起的器官毒性及其机制。