Suppr超能文献

扩展参考剂量(RfD)概念,以纳入并优化有益效应,同时防止非必需毒物产生毒性反应。

Expanding the RfD concept to incorporate and optimize beneficial effects while preventing toxic responses from nonessential toxicants.

作者信息

Calabrese E J

机构信息

Environmental Health Sciences Program, School of Public Health, University of Massachusetts, Amherst 01003, USA.

出版信息

Ecotoxicol Environ Saf. 1996 Jun;34(1):94-101. doi: 10.1006/eesa.1996.0049.

Abstract

Increasing evidence that low-level exposure to toxic agents induces beneficial effects indicates the need to examine if and how the current EPA reference dose (RfD) derivation process could take this phenomenon into account. This paper examines conditions that affect how the RfD process could incorporate chemically induced beneficial effects while preventing toxic responses. Incorporation of beneficial responses in the RfD process will be affected by: (i) Size of the dosage range over which the beneficial effects are observed; (ii) proximity of the optimal beneficial response dosage to the NOAEL; and (iii) size of the intraspecies UF. Based on data estimating the distance of the median dosage of the optimal beneficial response from the NOAEL and the recently described lack of independence of the inter- and intraspecies uncertainty factors (UFs), noncarcinogenic toxic substances whose RfDs are based on animal model data are predicted to have their toxic effects prevented and possible beneficial effects optimized in the general population by use of an intraspecies UF of 5. In contrast, current EPA practices of employing a 10-fold UF for intraspecies variation in animal model-based RfD derivation, while also protecting against harmful effects, leads to the general population missing estimated beneficial effects. Such a conclusion has important policy implications since no debate has been directed toward the distribution of population-based pollution-related benefits but only toward the prevention of their harmful effects.

摘要

越来越多的证据表明,低水平接触有毒物质会产生有益影响,这表明有必要研究当前美国环境保护局(EPA)参考剂量(RfD)推导过程是否以及如何考虑这一现象。本文研究了影响RfD过程纳入化学诱导的有益影响同时预防毒性反应的条件。在RfD过程中纳入有益反应将受到以下因素影响:(i)观察到有益影响的剂量范围大小;(ii)最佳有益反应剂量与无观察到不良反应水平(NOAEL)的接近程度;以及(iii)种内不确定性系数(UF)的大小。根据估计的最佳有益反应中位数剂量与NOAEL之间的距离数据,以及最近描述的种间和种内不确定性系数(UFs)缺乏独立性的情况,预计基于动物模型数据得出RfD的非致癌性有毒物质,通过使用5的种内UF,其毒性作用将得到预防,并且在一般人群中可能的有益影响将得到优化。相比之下,EPA目前在基于动物模型的RfD推导中采用10倍的种内UF以应对种内变异性且同时预防有害影响的做法,导致一般人群错过估计的有益影响。这一结论具有重要的政策意义,因为目前尚未有关于基于人群的污染相关益处分配的讨论,而仅关注预防其有害影响。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验