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用于预测眼睛刺激/腐蚀可能性的结构活性关系评估:德国联邦风险评估研究所决策支持系统中的结构纳入规则

Evaluation of SARs for the prediction of eye irritation/corrosion potential: structural inclusion rules in the BfR decision support system.

作者信息

Tsakovska I, Saliner A Gallegos, Netzeva T, Pavan M, Worth A P

机构信息

European Chemicals Bureau, Institute for Health and Consumer Protection, Joint Research Centre, 21020 Ispra (VA), Italy.

出版信息

SAR QSAR Environ Res. 2007 May-Jun;18(3-4):221-35. doi: 10.1080/10629360701304063.

Abstract

The proposed REACH regulation within the European Union (EU) aims to minimise the number of laboratory animals used for human hazard and risk assessment while ensuring adequate protection of human health and the environment. One way to achieve this goal is to develop non-testing methods, such as (quantitative) structure-activity relationships ([Q]SARs), suitable for identifying toxicological hazard from chemical structure and physicochemical properties alone. A database containing data submitted within the EU New Chemicals Notification procedure was compiled by the German Bundesinstitut für Risikobewertung (BfR). On the basis of these data, the BfR built a decision support system (DSS) for the prediction of several toxicological endpoints. For the prediction of eye irritation and corrosion potential, the DSS contains 31 physicochemical exclusion rules evaluated previously by the European Chemicals Bureau (ECB), and 27 inclusion rules that define structural alerts potentially responsible for eye irritation and/or corrosion. This work summarises the results of a study carried out by the ECB to assess the performance of the BfR structural rulebase. The assessment included: (a) evaluation of the structural alerts by using the training set of 1341 substances with experimental data for eye irritation and corrosion; and (b) external validation by using an independent test set of 199 chemicals. Recommendations are made for the further development of the structural rules in order to increase the overall predictivity of the DSS.

摘要

欧盟拟议的《化学品注册、评估、授权和限制法规》(REACH)旨在尽量减少用于人类危害和风险评估的实验动物数量,同时确保充分保护人类健康和环境。实现这一目标的一种方法是开发非测试方法,例如(定量)构效关系([Q]SARs),仅根据化学结构和物理化学性质来识别毒理学危害。德国联邦风险评估研究所(BfR)汇编了一个包含在欧盟新化学品通报程序中提交的数据的数据库。基于这些数据,BfR建立了一个用于预测多个毒理学终点的决策支持系统(DSS)。对于眼刺激和腐蚀潜力的预测,DSS包含欧洲化学品管理局(ECB)先前评估的31条物理化学排除规则,以及27条定义可能导致眼刺激和/或腐蚀的结构警示的纳入规则。这项工作总结了ECB为评估BfR结构规则库的性能而开展的一项研究的结果。评估包括:(a)通过使用1341种具有眼刺激和腐蚀实验数据的物质的训练集来评估结构警示;以及(b)通过使用199种化学品的独立测试集进行外部验证。为了提高DSS的整体预测能力,针对结构规则的进一步发展提出了建议。

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