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首页> 外文期刊>Journal of occupational and environmental hygiene >Derivation of internal dose-based thresholds of toxicological concern for occupational inhalation exposure to systemically acting organic chemicals
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Derivation of internal dose-based thresholds of toxicological concern for occupational inhalation exposure to systemically acting organic chemicals

机译:衍生基于内部剂量的毒理学关怀阈值,以便职业吸入暴露于全身作用的有机化学品

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This study aimed at deriving occupational thresholds of toxicological concern for inhalation exposure to systemically-acting organic chemicals using predicted internal doses. The latter were also used to evaluate the quantitative relationship between occupational exposure limit and internal dose. Three internal dose measures were identified for investigation: (i) the daily area under the venous blood concentration vs. time curve, (ii) the daily rate of the amount of parent chemical metabolized, and (iii) the maximum venous blood concentration at the end of an 8-hr work shift. A dataset of 276 organic chemicals with 8-hr threshold limit values-time-weighted average was compiled along with their molecular structure and Cramer classes (Class I: low toxicity, Class II: intermediate toxicity, Class III: suggestive of significant toxicity). Using a human physiologically-based pharmacokinetic model, the three identified dose metrics were predicted for an 8-hr occupational inhalation exposure to the threshold limit value for each chemical. Distributional analyses of the predicted dose metrics were performed to identify the percentile values corresponding to the occupational thresholds of toxicological concern. Also, simple linear regression analyses were performed to evaluate the relationship between the 8-hr threshold limit value and each of the predicted dose metrics, respectively. No threshold of toxicological concern could be derived for class II due to few chemicals. Based on the daily rate of the amount of parent chemical metabolized, the proposed internal dose-based occupational thresholds of toxicological concern were 5.61 x 10(-2) and 9 x 10(-4) mmol/d at the 10th percentile level for classes I and III, respectively, while they were 4.55 x 10(-1) and 8.5 x 10(-3) mmol/d at the 25th percentile level. Even though high and significant correlations were observed between the 8-hr threshold limit values and the predicted dose metrics, the one with the rate of the amount of chemical metabolized was remarkable regardless of the Cramer class (r(2) = 0.81; n = 276). The proposed internal dose-based occupational thresholds of toxicological concern are potentially useful for screening-level assessments as well as prioritization within an integrated occupational risk assessment framework.
机译:本研究旨在使用预测的内剂量导出吸入暴露于全身作用的有机化学品的毒理学关注的职业阈值。后者还用于评估职业暴露极限和内剂量之间的定量关系。确定了三种内部剂量措施进行调查:(i)静脉血液浓度下的每日区域与时间曲线,(ii)母体化学代谢量的日常率,和(iii)最大的静脉血液浓度8小时工作班次结束。 276个有机化学物质的数据集与8小时阈值限制值 - 时间加权平均值一起编制以及它们的分子结构和克拉伯类(I类:低毒性,II类:中间毒性,III类:提示显着毒性)。使用人类生理学的药代动力学模型,预测了三个鉴定的剂量度量,用于8小时职业吸入暴露于每种化学物质的阈值极限值。进行预测剂量度量的分布分析,以确定对应于毒理学关注的职业阈值的百分比值。此外,执行简单的线性回归分析以分别评估8-HR阈值极限值和每个预测剂量度量之间的关系。由于少量的化学品,II级没有毒理学关注的阈值。基于母体化学代谢量的日期率,所提出的基于内部剂量的毒理学关注阈值为5.61×10(-2)和9×10(-4)摩尔/ d,用于等级的第10位等级I和III分别在25百分位水平下分别为4.55×10(-1)和8.5×10(-3)mmol / d。尽管在8-HR阈值限制值和预测的剂量指标之间观察到高而显着的相关性,但由于爬坡等级(R(2)= 0.81; n = 276)。拟议的内部剂量的毒理学职业阈值潜在可用于筛查级别评估以及综合职业风险评估框架内的优先级。

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