Division of Life Science, The Hong Kong University of Science and Technology (HKUST), Clear Water Bay, Kowloon, Hong Kong.
Aquat Toxicol. 2011 Oct;105(3-4 Suppl):9-15. doi: 10.1016/j.aquatox.2011.05.016. Epub 2011 Jun 6.
The field of aquatic toxicology has been expanding rapidly in recent years. The ecotoxicological study of environmental toxicants encompasses three basic frameworks: environmental behavior/transport, bioavailability/bioaccumulation (exposure), and toxicity at different biological levels. Environmental risk assessments are then based on this knowledge to provide sound advice for environmental management and policies. In this article I will highlight the need to further understand the exposure to toxicants and its direct relationship with toxicological responses at different levels. Exposure considerations generally include the route, species, concentration and duration of exposure, among which the importance of the exposure route has been little considered. A typical aquatic toxicological study simply exposes the organisms to toxicants in the water for a certain period of time under different concentrations. This approach may not be environmentally relevant. Future studies should attempt to understand the toxicology under different exposure regimes. Incorporating exposure will allow aquatic toxicology to be placed in a context of environmental relevance and enhance our understanding of the impacts of toxicants on our living environments.
近年来,水生毒理学领域发展迅速。环境毒物的生态毒理学研究包括三个基本框架:环境行为/迁移、生物可利用性/生物积累(暴露)以及不同生物学水平的毒性。然后,基于这些知识进行环境风险评估,为环境管理和政策提供合理建议。在本文中,我将强调需要进一步了解毒物暴露及其与不同水平毒理学反应的直接关系。暴露考虑因素通常包括暴露途径、物种、浓度和持续时间,其中暴露途径的重要性很少被考虑。典型的水生毒理学研究只是在不同浓度下将生物体在水中暴露一定时间。这种方法可能与环境不相关。未来的研究应尝试在不同的暴露条件下了解毒理学。纳入暴露将使水生毒理学置于与环境相关性的背景下,并增强我们对毒物对我们生活环境影响的理解。