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通往基于胚胎学的剂量反应模型之路。

The road to embryologically based dose-response models.

作者信息

Kavlock R J, Setzer R W

机构信息

National Health and Environmental Effects Research Laboratory, U.S. Environmental Protection Agency, Research Triangle Park, North Carolina 27711, USA.

出版信息

Environ Health Perspect. 1996 Mar;104 Suppl 1(Suppl 1):107-21. doi: 10.1289/ehp.96104s1107.

Abstract

The goal of researchers working in the area of developmental toxicology is to prevent adverse reproductive outcomes (early pregnancy loss, birth defects, reduced birth weight, and altered functional development) in humans due to exposures to environmental contaminants, therapeutic drugs, and other factors. To best achieve that goal, it is important that relevant information be gathered and assimilated in the risk assessment process. One of the major challenges of improved risk assessment is to better use all pertinent biological and mechanistic information. This may be done qualitatively (e.g., demonstrating that the experimental model is not appropriate for extrapolation purposes); semiquantitatively (using information to reduce the degree of uncertainty present under default extrapolation procedures), or quantitatively (formally describing the relationships between exposure and adverse outcome in mathematical forms, including components that directly reflect individual steps in the overall progression of toxicity). In this paper we review the recent advances in the risk assessment process for developmental toxicants and hypothesize on future directions that may revolutionize our thinking in this area. The road to these changes sometimes appears to be a well-mapped course on a relatively smooth surface; at other times the path is bumpy and obscure, while at still other times it is only a wish in the eye of the engineer to cross an uncharted and rugged environment.

摘要

从事发育毒理学领域研究的人员的目标是预防人类因接触环境污染物、治疗药物及其他因素而出现不良生殖结局(早期流产、出生缺陷、低出生体重及功能发育改变)。为了最好地实现这一目标,在风险评估过程中收集并整合相关信息非常重要。改进风险评估面临的主要挑战之一是更好地利用所有相关的生物学和作用机制信息。这可以通过定性(例如,证明实验模型不适用于外推目的)、半定量(利用信息降低默认外推程序下存在的不确定性程度)或定量(以数学形式正式描述暴露与不良结局之间的关系,包括直接反映毒性总体进展中各个步骤的组成部分)来完成。在本文中,我们回顾了发育毒物风险评估过程中的最新进展,并对可能彻底改变我们在该领域思维的未来方向进行了推测。通往这些变革的道路有时似乎是在相对平坦的表面上绘制良好的路线;有时道路崎岖且模糊不清,而在其他时候,穿越未知且崎岖环境只是工程师眼中的一个愿望。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/85ff/1469576/83ea671ca38d/envhper00344-0120-a.jpg

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