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A CRITICAL REVIEW OF POLYCYCLIC AROMATIC HYDROCARBON PHOTOTOXICITY MODELS

机译:多环芳烃光氧化性模型的综述

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Polycyclic aromatic hydrocarbons (PAHs) are known to exhibit photo-induced toxicity. Hundreds to thousands of PAH parent and substituted compounds are found in the environment, and developing a predictive model applicable to a wide variety of PAHs and organisms is a necessary precursor to environmental risk assessments. There has been evolutionary progress in phototoxicity modeling since 1977. In the present study, a comprehensive review of the models developed to predict phototoxicity of PAHs is presented. The contributions of each of the models to the state of the art are discussed. The models are compared in terms of their scope of applicability to different organisms, PAHs, endpoints (median lethal time and median lethal concentration), and light conditions. The current state of the science that accounts for the key elements of phototoxicity modeling, including the differences in species sensitivity, the partitioning of PAHs into the target lipid of the organisms, and light absorption by the chemicals, as well as light exposure time and conditions, is discussed. In addition, the remaining issues that need to be addressed are explored: the effect of time-varying exposures to light and PAH concentrations, and the lack of a mechanistic understanding that can explain the failure of the Bunsen-Roscoe law of reciprocity. (C) 2016 SETAC
机译:已知多环芳烃(PAH)表现出光诱导的毒性。在环境中发现了成百上千的PAH母体和取代化合物,开发适用于多种PAH和生物的预测模型是进行环境风险评估的必要先决条件。自1977年以来,光毒性建模一直在发展。在本研究中,对开发用于预测PAHs光毒性的模型进行了全面综述。讨论了每个模型对最新技术的贡献。根据模型在不同生物,PAHs,终点(致死时间中位数和致死浓度中位数)和光照条件下的适用范围进行比较。解释光毒性建模关键要素的当前科学状态,包括物种敏感性差异,PAHs在生物体目标脂质中的分配,化学物质的光吸收以及光照时间和条件讨论。此外,还探讨了需要解决的其余问题:随时间变化的光线和PAH浓度所产生的影响,以及缺乏可以解释本生罗斯科互易定律失败的机械原理。 (C)2016年SETAC

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