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AOP 报告:氧化 DNA 损伤导致突变和染色体畸变的不良结局途径的开发。

AOP report: Development of an adverse outcome pathway for oxidative DNA damage leading to mutations and chromosomal aberrations.

机构信息

Environmental Health Science and Research Bureau, Health Canada, Ottawa, Ontario, Canada.

Department of Biology, Carleton University, Ottawa, Ontario, Canada.

出版信息

Environ Mol Mutagen. 2022 Mar;63(3):118-134. doi: 10.1002/em.22479. Epub 2022 May 3.

Abstract

The Genetic Toxicology Technical Committee (GTTC) of the Health and Environmental Sciences Institute (HESI) is developing adverse outcome pathways (AOPs) that describe modes of action leading to potentially heritable genomic damage. The goal was to enhance the use of mechanistic information in genotoxicity assessment by building empirical support for the relationships between relevant molecular initiating events (MIEs) and regulatory endpoints in genetic toxicology. Herein, we present an AOP network that links oxidative DNA damage to two adverse outcomes (AOs): mutations and chromosomal aberrations. We collected empirical evidence from the literature to evaluate the key event relationships between the MIE and the AOs, and assessed the weight of evidence using the modified Bradford-Hill criteria for causality. Oxidative DNA damage is constantly induced and repaired in cells given the ubiquitous presence of reactive oxygen species and free radicals. However, xenobiotic exposures may increase damage above baseline levels through a variety of mechanisms and overwhelm DNA repair and endogenous antioxidant capacity. Unrepaired oxidative DNA base damage can lead to base substitutions during replication and, along with repair intermediates, can also cause DNA strand breaks that can lead to mutations and chromosomal aberrations if not repaired adequately. This AOP network identifies knowledge gaps that could be filled by targeted studies designed to better define the quantitative relationships between key events, which could be leveraged for quantitative chemical safety assessment. We anticipate that this AOP network will provide the building blocks for additional genotoxicity-associated AOPs and aid in designing novel integrated testing approaches for genotoxicity.

摘要

健康与环境科学研究所(HESI)的遗传毒理学技术委员会(GTTC)正在开发描述潜在可遗传基因组损伤的作用模式的不良结局途径(AOP)。目标是通过在遗传毒性评估中构建与相关分子起始事件(MIE)和遗传毒性中监管终点之间关系的经验支持,增强对机制信息的利用。在此,我们提出了一个将氧化 DNA 损伤与两个不良结局(AO)联系起来的 AOP 网络:突变和染色体异常。我们从文献中收集了经验证据,以评估 MIE 与 AO 之间的关键事件关系,并使用因果关系的改良 Bradford-Hill 标准评估证据权重。由于活性氧和自由基的普遍存在,氧化 DNA 损伤在细胞中不断被诱导和修复。然而,通过各种机制,外源性物质暴露可能会使损伤超过基线水平,并破坏 DNA 修复和内源性抗氧化能力。未修复的氧化 DNA 碱基损伤可能会在复制过程中导致碱基替换,并且与修复中间体一起,也可能导致 DNA 链断裂,如果不能充分修复,就会导致突变和染色体异常。该 AOP 网络确定了可能通过旨在更好地定义关键事件之间定量关系的靶向研究来填补的知识空白,这些研究可以用于定量化学安全评估。我们预计,该 AOP 网络将为其他与遗传毒性相关的 AOP 提供构建模块,并有助于设计用于遗传毒性的新型综合测试方法。

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