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多环芳烃对早期脊椎动物发育的非加性效应:机制及对风险评估的意义

Nonadditive effects of PAHs on Early Vertebrate Development: mechanisms and implications for risk assessment.

作者信息

Billiard Sonya M, Meyer Joel N, Wassenberg Deena M, Hodson Peter V, Di Giulio Richard T

机构信息

Health Canada, Health Products and Food Branch, Bureau of Chemical Safety, Ottawa, Ontario K1A0L2, Canada.

出版信息

Toxicol Sci. 2008 Sep;105(1):5-23. doi: 10.1093/toxsci/kfm303. Epub 2007 Dec 20.

Abstract

Polycyclic aromatic hydrocarbons (PAHs) are ubiquitous environmental contaminants. Traditionally, much of the research has focused on the carcinogenic potential of specific PAHs, such as benzo(a)pyrene, but recent studies using sensitive fish models have shown that exposure to PAHs alters normal fish development. Some PAHs can induce a teratogenic phenotype similar to that caused by planar halogenated aromatic hydrocarbons, such as dioxin. Consequently, mechanism of action is often equated between the two classes of compounds. Unlike dioxins, however, the developmental toxicity of PAH mixtures is not necessarily additive. This is likely related to their multiple mechanisms of toxicity and their rapid biotransformation by CYP1 enzymes to metabolites with a wide array of structures and potential toxicities. This has important implications for risk assessment and management as the current approach for complex mixtures of PAHs usually assumes concentration addition. In this review we discuss our current knowledge of teratogenicity caused by single PAH compounds and by mixtures and the importance of these latest findings for adequately assessing risk of PAHs to humans and wildlife. Throughout, we place particular emphasis on research on the early life stages of fish, which has proven to be a sensitive and rapid developmental model to elucidate effects of hydrocarbon mixtures.

摘要

多环芳烃(PAHs)是普遍存在的环境污染物。传统上,大部分研究集中在特定多环芳烃的致癌潜力上,比如苯并(a)芘,但最近使用敏感鱼类模型的研究表明,接触多环芳烃会改变鱼类的正常发育。一些多环芳烃可诱发与平面卤代芳烃(如二恶英)所导致的致畸表型相似的表型。因此,这两类化合物的作用机制常常被视为等同。然而,与二恶英不同的是,多环芳烃混合物的发育毒性不一定具有加和性。这可能与其多种毒性机制以及通过CYP1酶快速生物转化为具有多种结构和潜在毒性的代谢物有关。这对风险评估和管理具有重要意义,因为目前针对多环芳烃复杂混合物的方法通常假定浓度具有加和性。在这篇综述中,我们讨论了目前关于单一多环芳烃化合物和混合物所导致的致畸性的知识,以及这些最新发现对于充分评估多环芳烃对人类和野生动物风险的重要性。在整个过程中,我们特别强调对鱼类早期生命阶段的研究,事实证明这是阐明烃类混合物影响的一个敏感且快速的发育模型。

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