Developing adverse outcome pathways to support radioecological risk assessment: challenges and insights.

IF 2.8 4区 环境科学与生态学 Q2 ENVIRONMENTAL SCIENCES
Elizabeth Dufourcq Sekatcheff, Loïc Quevarec, Marie-Laure Delignette-Muller, Clément Car, Jean-Marc Bonzom, Rodolphe Gilbin, Knut-Erik Tollefsen, Olivier Armant, Sandrine Frelon
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引用次数: 0

Abstract

Environmental pollution associated with long-term effects, especially in the case of ionizing radiation, poses significant risks to wildlife, necessitating a more nuanced approach to Ecological Risk Assessment (ERA). In radioecology, current methods, as outlined by the International Commission on Radiological Protection, focus primarily on exposure and individual/population-level effects, often both suffering a lack of ecological realism due to the nature of the data used and sidelining a large amount of critical nonindividual effects such as sub-individual ones like genotoxicity. This review aims to address these gaps by suggesting the integration of New Approach Methods (NAMs) and the Adverse Outcome Pathway (AOP) framework in the field of radioecology. New Approach Methods encompass innovative techniques, such as in silico and in vitro methodologies, that can provide predictive insights without relying solely on traditional animal testing. The AOP framework, developed by the Organisation for Economic Co-operation and Development, structures effects data into a sequence of causally linked events, enabling a clearer understanding of how molecular changes lead to adverse ecological outcomes. In the first section of the review, we explore the challenges of applying AOPs within radioecology, including the complexities of modeling realistic exposure scenarios, the temporal dynamics of effects, and the impacts of multiple stressors. The second section highlights the potential and the application of some NAMs within an AOP framework to contribute improving risk assessment methodologies (in the species realism issue and the use of sub-individual data). This part also offers other potential solutions to increase the number of data to be used in ERA as well as their ecological realism, through the use of AOP frameworks with relevant biological scales and ecological endpoints still uninvestigated in such a way. In conclusion, leveraging NAMs and AOPs is very valuable for bridging molecular data and ecological implications, thereby advancing regulatory practices in radioecology and ensuring more comprehensive protection of ecosystems from radiological hazards.

开发不良后果路径以支持放射生态风险评估:挑战与启示。
与长期影响相关的环境污染,特别是电离辐射,对野生动物构成重大风险,需要采用更细致入微的方法进行生态风险评估。在放射生态学中,正如国际放射防护委员会(ICRP)所概述的那样,目前的方法主要侧重于暴露和个人/群体水平的影响,由于所使用数据的性质,两者往往缺乏生态现实性,并且忽略了大量关键的非个体影响,例如亚个体影响,如遗传毒性。本综述旨在通过建议在放射生态学领域整合新方法(NAMs)和不良结果途径(AOP)框架来解决这些差距。NAMs包含创新技术,例如计算机和体外方法,可以在不完全依赖传统动物试验的情况下提供预测性见解。AOP框架是由经济合作与发展组织(OECD)开发的,它将影响数据结构成一系列因果关联的事件,从而能够更清楚地了解分子变化如何导致不利的生态结果。在回顾的第一部分,我们探讨了在放射生态学中应用AOPs的挑战,包括模拟现实暴露情景的复杂性,影响的时间动态以及多种应激源的影响。第二部分强调了AOP框架内一些NAMs的潜力和应用,以促进改进风险评估方法(在物种现实主义问题和亚个体数据的使用方面)。这一部分还提供了其他潜在的解决方案,通过使用AOP框架和相关的生物尺度和生态端点,增加ERA中使用的数据数量以及它们的生态现实性。总之,利用NAMs和AOPs在连接分子数据和生态影响方面非常有价值,从而推进放射生态学的监管实践,并确保更全面地保护生态系统免受辐射危害。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
7.40
自引率
9.80%
发文量
265
审稿时长
3.4 months
期刊介绍: The Society of Environmental Toxicology and Chemistry (SETAC) publishes two journals: Environmental Toxicology and Chemistry (ET&C) and Integrated Environmental Assessment and Management (IEAM). Environmental Toxicology and Chemistry is dedicated to furthering scientific knowledge and disseminating information on environmental toxicology and chemistry, including the application of these sciences to risk assessment.[...] Environmental Toxicology and Chemistry is interdisciplinary in scope and integrates the fields of environmental toxicology; environmental, analytical, and molecular chemistry; ecology; physiology; biochemistry; microbiology; genetics; genomics; environmental engineering; chemical, environmental, and biological modeling; epidemiology; and earth sciences. ET&C seeks to publish papers describing original experimental or theoretical work that significantly advances understanding in the area of environmental toxicology, environmental chemistry and hazard/risk assessment. Emphasis is given to papers that enhance capabilities for the prediction, measurement, and assessment of the fate and effects of chemicals in the environment, rather than simply providing additional data. The scientific impact of papers is judged in terms of the breadth and depth of the findings and the expected influence on existing or future scientific practice. Methodological papers must make clear not only how the work differs from existing practice, but the significance of these differences to the field. Site-based research or monitoring must have regional or global implications beyond the particular site, such as evaluating processes, mechanisms, or theory under a natural environmental setting.
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