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The Next Generation of Risk Assessment Multi-Year Study—Highlights of Findings, Applications to Risk Assessment, and Future Directions

机译:下一代风险评估多年研究—研究结果,风险评估应用和未来方向的重点

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Background: The Next Generation (NexGen) of Risk Assessment effort is a multi-year collaboration among several organizations evaluating new, potentially more efficient molecular, computational, and systems biology approaches to risk assessment. This article summarizes our findings, suggests applications to risk assessment, and identifies strategic research directions. Objective: Our specific objectives were to test whether advanced biological data and methods could better inform our understanding of public health risks posed by environmental exposures. Methods: New data and methods were applied and evaluated for use in hazard identification and dose–response assessment. Biomarkers of exposure and effect, and risk characterization were also examined. Consideration was given to various decision contexts with increasing regulatory and public health impacts. Data types included transcriptomics, genomics, and proteomics. Methods included molecular epidemiology and clinical studies, bioinformatic knowledge mining, pathway and network analyses, short-duration in vivo and in vitro bioassays, and quantitative structure activity relationship modeling. Discussion: NexGen has advanced our ability to apply new science by more rapidly identifying chemicals and exposures of potential concern, helping characterize mechanisms of action that influence conclusions about causality, exposure–response relationships, susceptibility and cumulative risk, and by elucidating new biomarkers of exposure and effects. Additionally, NexGen has fostered extensive discussion among risk scientists and managers and improved confidence in interpreting and applying new data streams. Conclusions: While considerable uncertainties remain, thoughtful application of new knowledge to risk assessment appears reasonable for augmenting major scope assessments, forming the basis for or augmenting limited scope assessments, and for prioritization and screening of very data limited chemicals. Citation: Cote I, Andersen ME, Ankley GT, Barone S, Birnbaum LS, Boekelheide K, Bois FY, Burgoon LD, Chiu WA, Crawford-Brown D, Crofton KM, DeVito M, Devlin RB, Edwards SW, Guyton KZ, Hattis D, Judson RS, Knight D, Krewski D, Lambert J, Maull EA, Mendrick D, Paoli GM, Patel CJ, Perkins EJ, Poje G, Portier CJ, Rusyn I, Schulte PA, Simeonov A, Smith MT, Thayer KA, Thomas RS, Thomas R, Tice RR, Vandenberg JJ, Villeneuve DL, Wesselkamper S, Whelan M, Whittaker C, White R, Xia M, Yauk C, Zeise L, Zhao J, DeWoskin RS. 2016. The Next Generation of Risk Assessment multiyear study—highlights of findings, applications to risk assessment, and future directions. Environ Health Perspect 124:1671–1682;?http://dx.doi.org/10.1289/EHP233.
机译:背景:下一代(NexGen)风险评估工作是多个组织之间的多年合作,这些组织评估了风险评估的新的,可能更有效的分子,计算和系统生物学方法。本文总结了我们的发现,为风险评估提出了建议,并确定了战略研究方向。目的:我们的具体目标是测试先进的生物学数据和方法是否可以更好地帮助我们理解环境暴露所带来的公共健康风险。方法:应用新的数据和方法并对其进行评估,以用于危害识别和剂量反应评估。还检查了暴露和效应的生物标志物以及风险特征。考虑了各种决策环境,它们对法规和公共卫生的影响日益增加。数据类型包括转录组学,基因组学和蛋白质组学。方法包括分子流行病学和临床研究,生物信息学知识挖掘,途径和网络分析,短期体内和体外生物测定以及定量结构活性关系建模。讨论:NexGen通过更快地识别化学物质和潜在关注的暴露,通过描述影响因果关系,暴露-反应关系,易感性和累积风险的结论的作用机制以及阐明暴露的新生物标志物,提高了我们应用新科学的能力。和效果。此外,NexGen促进了风险科学家和管理人员之间的广泛讨论,并增强了解释和应用新数据流的信心。结论:尽管仍然存在相当大的不确定性,但将新知识深思熟虑地应用到风险评估中似乎对于扩大主要范围评估,形成或扩大有限范围评估的基础或对数据非常有限的化学品进行优先级排序和筛选是合理的。引文:科特迪瓦I,安德森ME,安克利GT,男爵S,伯恩鲍姆LS,波克海德K,​​博伊斯风云,布尔戈恩LD,邱华盛顿,克劳福德·布朗D,克罗夫顿KM,德维托M,德夫林RB,爱德华兹SW,盖顿KZ,哈蒂斯D,Judson RS,Knightski D,Lambert J,Maull EA,Mendrick D,Paoli GM,Patel CJ,Perkins EJ,Poje G,Portier CJ,Rusyn I,Schulte PA,Simeonov A,Smith MT,Thayer KA,托马斯·RS,托马斯·R,蒂斯·RR,范登堡·JJ,维伦纽夫·DL,韦瑟卡普尔S,惠兰M,惠特克C,怀特·R,夏M,Yauk C,Zeise L,Zhao J,DeWoskin RS。 2016年。《下一代风险评估多年研究》 —研究结果,风险评估应用和未来方向的重点。 Environ Health Perspect 124:1671-1682; http://dx.doi.org/10.1289/EHP233。

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