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考虑将突变用作风险评估中的监管终点。

Considerations for the Use of Mutation as a Regulatory Endpoint in Risk Assessment.

机构信息

Toxicology and Environmental Research and Consulting, The Dow Chemical Company, Midland, Michigan.

Center for Health Sciences, Exponent, Inc., Alexandria, Virginia.

出版信息

Environ Mol Mutagen. 2020 Jan;61(1):84-93. doi: 10.1002/em.22318. Epub 2019 Jul 27.

Abstract

Assessment of a chemical's potential to cause permanent changes in the genetic code has been a common practice in the industry and regulatory settings for decades. Furthermore, the genetic toxicity battery of tests has typically been employed during the earliest stages of the research and development programs of new product development. A positive outcome from such battery has a major impact on the chemical's utility, industrial hygiene, product stewardship practices, and product life cycle analysis, among many other decisions that need to be taken by the industry, even before the registration of a chemical is undertaken. Under the prevailing regulatory paradigm, the dichotomous (yes/no) evaluation of the chemical's genotoxic potential leads to a conservative, linear no-threshold (LNT) risk assessment, unless compelling and undeniable data to the contrary can be provided to satisfy regulators, typically in a number of different global jurisdictions. With the current advent of predictive methods, new testing paradigms, mode-of-action/adverse outcome pathways, and quantitative risk assessment approaches, various stakeholders are starting to employ these state-of-the-science methodologies to further the conversation on decision making and advance the regulatory paradigm beyond the dominant LNT status quo. This commentary describes these novel methodologies, relevant biological responses, and how these can affect internal and regulatory risk assessment approaches. Environ. Mol. Mutagen. 61:84-93, 2020. © 2019 Wiley Periodicals, Inc.

摘要

评估化学物质是否有可能导致遗传密码永久改变,这在行业和监管环境中已经是一种常见的做法,这种做法已经持续了几十年。此外,在新产品开发的研究和开发计划的早期阶段,通常会采用遗传毒性电池测试。如果该电池测试得出阳性结果,这将对化学物质的用途、工业卫生、产品管理实践以及产品生命周期分析等方面产生重大影响,除此之外,还需要考虑许多其他决策,这些决策通常都需要在化学物质进行注册之前由行业做出。在现行的监管模式下,对化学物质遗传毒性潜力的二分法(是/否)评估导致了保守的线性无阈值(LNT)风险评估,除非可以提供令人信服和无可争议的数据来满足监管机构的要求,这些数据通常需要在许多不同的全球司法管辖区提供。随着预测方法、新的测试范例、作用模式/不良后果途径以及定量风险评估方法的出现,各种利益相关者开始采用这些最先进的方法来进一步讨论决策,并推动监管模式超越占主导地位的 LNT 现状。本评论描述了这些新方法、相关的生物学反应,以及它们如何影响内部和监管风险评估方法。环境。分子诱变。61:84-93, 2020. © 2019 威利父子公司。

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