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Bioenergetics-Adverse Outcome Pathway: LinkingOrganismal and Suborganismal Energetic Endpointsto Adverse Outcomes

机译:生物能学-不良结果途径:链接 r n有机和亚有机能源端点 r n与不良结果

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Adverse outcome pathways (AOPs) link toxicity across levels of biological organization, and thereby facilitate the development of suborganismal responses predictive of whole-organism toxicity and provide the mechanistic information necessary for science-based extrapolation to population-level effects. Thus far AOPs have characterized various acute and chronic toxicity pathways; however, the potential for AOPs to explicitly characterize indirect, energy-mediated effects from toxicants has yet to be fully explored. Indeed, although exposure to contaminants can alter an organism's energy budget, energetic endpoints are rarely incorporated into ecological risk assessment because there is not an integrative framework for linking energetic effects to organismal endpoints relevant to risk assessment (e.g., survival, reproduction, growth). In the present analysis, we developed a generalized bioenergetics-AOP in an effort to make better use of energetic endpoints in risk assessment, specifically exposure scenarios that generate an energetic burden to organisms. To evaluate empirical support for a bioenergetics-AOP, we analyzed published data for links between energetic endpoints across levels of biological organization. We found correlations between 1) cellular energy allocation and whole-animal growth, and 2) metabolic rate and scope for growth. Moreover, we reviewed literature linking energy availability to nontraditional toxicological endpoints (e.g., locomotor performance), and found evidence that toxicants impair aerobic performance and activity. We conclude by highlighting current knowledge gaps that should be addressed to develop specific bioenergetics-AOPs. Environ Toxicol Chem 2019;38:27-45. (c) 2018 SETAC
机译:不良结局途径(AOP)将毒性联系到整个生物组织的各个层面,从而促进了预测整个生物体毒性的亚有机反应的发展,并提供了基于科学的推断对种群水平影响所必需的机制信息。到目前为止,AOPs已经表征了各种急性和慢性毒性途径。然而,AOPs潜在地明确表征毒物间接的,能量介导的作用的潜力尚未得到充分探索。确实,尽管暴露于污染物会改变生物体的能量收支,但由于没有将能量效应与风险评估相关的生物体终点(例如生存,繁殖,生长)联系起来的综合框架,因此很少将高能终点纳入生态风险评估中。在当前的分析中,我们开发了一种广义的生物能学AOP,以期在风险评估中更好地利用能量终点,尤其是对生物体产生能量负担的暴露场景。为了评估对生物能学AOP的经验支持,我们分析了已发布的数据,以了解跨生物组织水平的能量学端点之间的联系。我们发现1)细胞能量分配与整个动物的生长,以及2)代谢速率和生长范围之间的相关性。此外,我们回顾了将能量可用性与非传统毒理学终点(例如运动能力)联系起来的文献,并发现证据表明毒物会损害有氧运动和活动。最后,我们着重强调了当前在开发特定生物能学AOP时应解决的知识空白。 Environ Toxicol Chem 2019; 38:27-45。 (c)2018年SETAC

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