Faculty of Agriculture, Utsunomiya University, 350 Mine-machi, Utsunomiya, Tochigi, 321-8505, Japan.
Graduate School of Nanobioscience, Yokohama City University, 22-2 Seto, Kanazawa-ku, Yokohama, 236-0027, Japan.
J Appl Toxicol. 2019 Feb;39(2):241-246. doi: 10.1002/jat.3713. Epub 2018 Sep 11.
Environmental waters are polluted by various chemicals originating from human activities. Recently, the environmental risk of juvenile hormones (JHs) to aquatic microcrustaceans has been recognized by risk assessors and researchers. JH is a major arthropod hormone that regulates molting and reproduction and has analogs that have been used as insect growth regulators. JHs are known to disturb the sex determination system of Daphnia, which is a keystone animal in limnetic ecosystems and is not the target of extermination. To assess the risk of contaminant chemicals and to protect biodiversity, reliable methods for detecting such chemicals are essential. In this study, we attempted to establish a practical in vitro reporter assay system for detecting chemicals with JH activity. Using a newly constructed reporter vector (modified from the JH response element of Tribolium castaneum Krüppel homolog 1, which is a major JH responsive gene in insects), strong JH-dependent transcriptional activity (>40-fold activation) was found in Chinese hamster ovary cells that express JH receptors of Daphnia pulex. Dose-response analysis conducted on several JH and non-JH chemicals revealed that the established reporter assay system has strict specificity to JH chemicals, and the half maximum effective concentration (EC ) was between 10 and 10 m. These results suggest that the new system is a rapid and economical method for assessing the environmental risk of JH-active chemicals.
环境水体受到各种源自人类活动的化学物质的污染。最近,风险评估人员和研究人员已经认识到昆虫保幼激素 (JH) 对水生微型甲壳类动物的环境风险。JH 是一种主要的节肢动物激素,可调节蜕皮和繁殖,其类似物已被用作昆虫生长调节剂。JH 已知会干扰水蚤的性别决定系统,水蚤是浮游生态系统中的关键动物,并非被消灭的目标。为了评估污染物化学物质的风险并保护生物多样性,检测此类化学物质的可靠方法是必不可少的。在本研究中,我们试图建立一种实用的体外报告基因检测系统,用于检测具有 JH 活性的化学物质。使用新构建的报告载体(源自昆虫中主要的 JH 反应基因三化铁阔拉普勒斯 1 的 JH 反应元件进行了修改),在表达水蚤 JH 受体的中国仓鼠卵巢细胞中发现了强烈的 JH 依赖性转录活性(>40 倍激活)。对几种 JH 和非 JH 化学物质进行的剂量反应分析表明,建立的报告基因检测系统对 JH 化学物质具有严格的特异性,半数最大有效浓度 (EC ) 介于 10 和 10 之间。这些结果表明,新系统是评估 JH 活性化学物质环境风险的快速、经济的方法。