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推导职业接触限值的时间分布、种间和种内外推分布。

Distributions for time, interspecies and intraspecies extrapolation for deriving occupational exposure limits.

机构信息

Forschungs- und Beratungsinstitut Gefahrstoffe GmbH (FoBiG), Freiburg, Germany.

Federal Institute for Occupational Safety and Health, Dortmund, Germany.

出版信息

J Appl Toxicol. 2022 May;42(5):898-912. doi: 10.1002/jat.4305. Epub 2022 Mar 13.

Abstract

This work aimed at improving the empirical database of time (i.e., exposure duration), interspecies and intraspecies extrapolation when deriving occupational exposure limits (OELs). For each extrapolation step, a distribution was derived, which can be used to model the associated uncertainties. For time and interspecies extrapolation, distributions of ratios of dose descriptors were derived from studies of different length or species. National Toxicology Program (NTP) study data were manually assessed, and data from REACH (Registration, Evaluation and Authorisation of Chemicals) registration dossiers were evaluated semi-automatically. Intraspecies extrapolation was investigated by compiling published studies on human toxicokinetic and toxicodynamic variability. A new database was established for toxicokinetic differences in interindividual susceptibility, including many inhalation studies. Using NTP data produced more reliable results than using REACH data. The geometric mean (GM) for time extrapolation subacute/chronic agreed with previous evaluations (GM = 4.11), whereas the GM for subchronic/chronic extrapolation was slightly higher (GM = 2.93) than the GMs found by others. No significant differences were observed between systemically and locally acting substances. Observed interspecies differences confirmed the suitability of allometric scaling, with the derived distribution describing remaining uncertainty. Distributions of intraspecies variability at the 1% and 5% incidence level had medians of 7.25 and 3.56, respectively. When compared with assessment factors (AFs) currently used in the EU, probabilities that these AFs are protective enough span a wide range from 10% to 95%, depending on the extrapolation step. These results help to select AFs in a transparent and informed way and, by allowing to compare protection levels achieved, to harmonise methods for deriving OELs.

摘要

本研究旨在完善时间(即暴露持续时间)、种间和种内外推的经验数据库,以推导职业接触限值(OEL)。对于每个外推步骤,都衍生出一个分布,该分布可用于模拟相关的不确定性。对于时间和种间外推,从不同长度或物种的研究中推导出剂量描述符比值的分布。对国家毒理学计划(NTP)的研究数据进行了手动评估,对 REACH(化学品注册、评估和授权)注册档案中的数据进行了半自动评估。通过编译关于人类毒代动力学和毒效动力学变异性的已发表研究,调查了种内外推。建立了一个新的个体间易感性毒代动力学差异数据库,其中包括许多吸入研究。使用 NTP 数据比使用 REACH 数据产生的结果更可靠。亚急性/慢性时间外推的几何平均值(GM)与之前的评估结果一致(GM=4.11),而亚慢性/慢性外推的 GM 略高于其他人发现的 GM(GM=2.93)。未观察到系统作用和局部作用物质之间存在显著差异。观察到的种间差异证实了同种异体比例缩放的适用性,衍生的分布描述了剩余的不确定性。在 1%和 5%发生率水平的种内变异性分布的中位数分别为 7.25 和 3.56。与欧盟目前使用的评估因子(AF)相比,这些 AF 具有足够保护作用的概率范围从 10%到 95%不等,具体取决于外推步骤。这些结果有助于以透明和知情的方式选择 AF,并通过允许比较所达到的保护水平,协调推导 OEL 的方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ebd1/9314728/244f2db35621/JAT-42-898-g001.jpg

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