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Ecdysone Receptor Agonism Leading to Lethal Molting Disruption in Arthropods: Review and Adverse Outcome Pathway Development

痛苦 蜕皮激素受体 不良结局途径 蜕皮激素 蜕皮 受体 生物 核受体 药理学 化学 细胞生物学 计算生物学 生态学 内分泌学 激素 幼虫 生物化学 转录因子 政治 基因 法学 政治学
作者
You Song,Daniel L. Villeneuve,Kenji Toyota,Taisen Iguchi,Knut Erik Tollefsen
出处
期刊:Environmental Science & Technology [American Chemical Society]
卷期号:51 (8): 4142-4157 被引量:138
标识
DOI:10.1021/acs.est.7b00480
摘要

Molting is critical for growth, development, reproduction, and survival in arthropods. Complex neuroendocrine pathways are involved in the regulation of molting and may potentially become targets of environmental endocrine disrupting chemicals (EDCs). Based on several known ED mechanisms, a wide range of pesticides has been developed to combat unwanted organisms in food production activities such as agriculture and aquaculture. Meanwhile, these chemicals may also pose hazards to nontarget species by causing molting defects, and thus potentially affecting the health of the ecosystems. The present review summarizes the available knowledge on molting-related endocrine regulation and chemically mediated disruption in arthropods (with special focus on insects and crustaceans), to identify research gaps and develop a mechanistic model for assessing environmental hazards of these compounds. Based on the review, multiple targets of EDCs in the molting processes were identified and the link between mode of action (MoA) and adverse effects characterized to inform future studies. An adverse outcome pathway (AOP) describing ecdysone receptor agonism leading to incomplete ecdysis associated mortality was developed according to the OECD guideline and subjected to weight of evidence considerations by evolved Bradford Hill Criteria. This review proposes the first invertebrate ED AOP and may serve as a knowledge foundation for future environmental studies and AOP development.
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