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采用定量构效关系模型评估乙二醇醚的毒性效应。

Assessing the toxic effects of ethylene glycol ethers using Quantitative Structure Toxicity Relationship models.

机构信息

Computational Toxicology Methods Development Laboratory, Division of Toxicology and Environmental Medicine, Agency for Toxic Substances and Disease Registry, Atlanta, GA 30333, USA.

出版信息

Toxicol Appl Pharmacol. 2011 Jul 15;254(2):198-205. doi: 10.1016/j.taap.2010.10.024. Epub 2010 Oct 27.

Abstract

Experimental determination of toxicity profiles consumes a great deal of time, money, and other resources. Consequently, businesses, societies, and regulators strive for reliable alternatives such as Quantitative Structure Toxicity Relationship (QSTR) models to fill gaps in toxicity profiles of compounds of concern to human health. The use of glycol ethers and their health effects have recently attracted the attention of international organizations such as the World Health Organization (WHO). The board members of Concise International Chemical Assessment Documents (CICAD) recently identified inadequate testing as well as gaps in toxicity profiles of ethylene glycol mono-n-alkyl ethers (EGEs). The CICAD board requested the ATSDR Computational Toxicology and Methods Development Laboratory to conduct QSTR assessments of certain specific toxicity endpoints for these chemicals. In order to evaluate the potential health effects of EGEs, CICAD proposed a critical QSTR analysis of the mutagenicity, carcinogenicity, and developmental effects of EGEs and other selected chemicals. We report here results of the application of QSTRs to assess rodent carcinogenicity, mutagenicity, and developmental toxicity of four EGEs: 2-methoxyethanol, 2-ethoxyethanol, 2-propoxyethanol, and 2-butoxyethanol and their metabolites. Neither mutagenicity nor carcinogenicity is indicated for the parent compounds, but these compounds are predicted to be developmental toxicants. The predicted toxicity effects were subjected to reverse QSTR (rQSTR) analysis to identify structural attributes that may be the main drivers of the developmental toxicity potential of these compounds.

摘要

实验确定毒性概况需要耗费大量的时间、金钱和其他资源。因此,企业、社会和监管机构都在努力寻找可靠的替代品,例如定量构效关系(QSTR)模型,以填补对人类健康有潜在危害的化合物的毒性概况中的空白。乙二醇醚及其健康影响最近引起了世界卫生组织(WHO)等国际组织的关注。简明国际化学品评估文件(CICAD)的董事会成员最近发现,对乙二醇单烷基醚(EGEs)的毒性概况的测试不够充分,存在空白。CICAD 董事会要求 ATSDR 计算毒理学和方法开发实验室对这些化学物质的某些特定毒性终点进行 QSTR 评估。为了评估 EGEs 的潜在健康影响,CICAD 对 EGEs 和其他选定化学物质的致突变性、致癌性和发育毒性提出了关键 QSTR 分析。我们在此报告应用 QSTR 评估四种 EGEs(2-甲氧基乙醇、2-乙氧基乙醇、2-丙氧基乙醇和 2-丁氧基乙醇)及其代谢物的啮齿动物致癌性、致突变性和发育毒性的结果。母体化合物既没有表现出致突变性,也没有表现出致癌性,但这些化合物被预测为发育毒物。预测的毒性效应进行了反向 QSTR(rQSTR)分析,以确定可能是这些化合物发育毒性潜力的主要驱动因素的结构属性。

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