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A quantitative structure-biodegradation relationship (QSBR) approach to predict biodegradation rates of aromatic chemicals

机译:预测芳香化学品生物降解率的定量结构 - 生物降解关系(QSBR)方法

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摘要

The objective of this work was to develop a Q$BR model for the prioritization of organic pollutants based on biodegradation rates from a database containing globally harmonized biodegradation tests using relevant molecular descriptors. To do this, we first categorized the chemicals into three groups (Group 1: simple aromatic chemicals with a single ring, Group 2: aromatic chemicals with multiple rings and Group3: Group 1 plus Group 2) based on molecular descriptors, estimated the first order biodegradation rate of the chemicals using rating values derived from the BIOWIN3 model, and finally developed, validated and defined the applicability domain of models for each group using a multiple linear regression approach. All the developed Q$BR models complied with OECD principles for QSAR validation. The biodegradation rate in the models for the two groups (Group 2 and 3 chemicals) are associated with abstract molecular descriptors that provide little relevant practical information towards understanding the relationship between chemical structure and biodegradation rates. However, molecular descriptors associated with the QSBR model for Group 1 chemicals (R-2 = 0.89, Q(100)(2) = 0.87) provided information on properties that can readily be scrutinised and interpreted in relation to biodegradation processes. In combination, these results lead to the conclusion that QSBRs can be an alternative tool to estimate the persistence of chemicals, some of which can provide further insights into those factors affecting biodegradation. (C) 2019 The Authors. Published by Elsevier Ltd.
机译:这项工作的目的是根据使用相关分子描述符的数据库的生物降解率来开发Q $ BR模型,以基于含有全球协调的生物降解试验的数据库的生物降解率。为此,我们首先将化学品分为三组(第1组:简单的芳香化学物质,单环,第2组:基于分子描述符的芳族化学品,群体3加上第2组)估计了第一个订单使用从BiOWIN3模型导出的评级值的化学品的生物降解率,并且最终使用多元线性回归方法为每个组开发,验证和定义了模型的适用性域。所有已发达的Q $ BR模型符合经合组织QSAR验证的经合组织原则。两组模型中的生物降解率(第2组和3组和3种化学物质)与抽象分子描述符相关联,这些分子描述符为了解化学结构与生物降解率之间的关系而提供很少的相关实际信息。然而,与第1组化学物质的QSBR模型相关的分子描述符(R-2 = 0.89,Q(100)= 0.87)提供了关于可以容易地被仔细审查和与生物降解过程进行审查和解释的性质的信息。组合,这些结果导致结论是QSBRS可以是估计化学品持久性的替代工具,其中一些可以提供进一步的见解,以进一步了解影响生物降解的因素。 (c)2019年作者。 elsevier有限公司出版

著录项

  • 来源
    《Water Research》 |2019年第15期|181-190|共10页
  • 作者单位

    Newcastle Univ Sch Engn Cassie Bldg Newcastle Upon Tyne NE1 7RU Tyne & Wear England;

    Newcastle Univ Sch Engn Cassie Bldg Newcastle Upon Tyne NE1 7RU Tyne & Wear England;

    Newcastle Univ Sch Engn Cassie Bldg Newcastle Upon Tyne NE1 7RU Tyne & Wear England;

    Univ Gdansk Fac Chem Lab Environm Chemometr Wita Stwosza 63 PL-80308 Gdansk Poland;

    Newcastle Univ Sch Engn Cassie Bldg Newcastle Upon Tyne NE1 7RU Tyne & Wear England;

    Newcastle Univ Sch Engn Cassie Bldg Newcastle Upon Tyne NE1 7RU Tyne & Wear England;

    Newcastle Univ Sch Engn Cassie Bldg Newcastle Upon Tyne NE1 7RU Tyne & Wear England;

    Univ Gdansk Fac Chem Lab Environm Chemometr Wita Stwosza 63 PL-80308 Gdansk Poland;

    Newcastle Univ Sch Engn Cassie Bldg Newcastle Upon Tyne NE1 7RU Tyne & Wear England;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Biodegradation rates; Molecular descriptors; QSBR; Quantitative structure activity relationships;

    机译:生物降解率;分子描述符;QSBR;定量结构活动关系;

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