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农药毒性研究中动力学研究的案例分析,以确定内暴露的非线性以及非线性对农药残留毒理学解释的影响。

Case analysis of kinetics investigations in toxicity studies of pesticides to identify the nonlinearity of internal exposure and the influences of nonlinearity on the toxicological interpretation of pesticide residue.

机构信息

Food Safety Commission, Cabinet Office of Japan. Akasaka Park Bld. 22F, 5-2-20 Akasaka, Minato-ku, Tokyo, 107-6122, Japan.

Faculty of Agriculture, Iwate University. 3-18-8 Ueda, Morioka, Iwate, 020-8550, Japan.

出版信息

Regul Toxicol Pharmacol. 2021 Aug;124:104958. doi: 10.1016/j.yrtph.2021.104958. Epub 2021 May 12.

Abstract

The nonlinearity of internal exposure to 8 pesticides was investigated in toxicity studies using kinetics to identify nonlinearity visually and to investigate the influence of nonlinearity on toxicological evaluation. Data were obtained from risk assessment reports published by the Food Safety Commission (FSCJ). Nonlinearity was defined using 2 indicators: the lowest visual inflection point (LVIP) and the second lowest visual inflection point (SVIP) of kinetics by drawing a linear distribution chart. The area under the curve and 24-h urine concentrations were stable parameters used to identify the LVIP/SVIP. The sampling timing affected the blood concentrations, and the LVIP/SVIP was detected for 6 pesticides using the parent compounds or their metabolites as analytes. The subproportional nonlinearity was significant for these pesticides. The LVIP/SVIP values were consistent in the same species up to a 1-year period, but the values showed species-specific differences in several compounds. In all compounds found to be nonlinear, apical outcomes were observed at the SVIP or above. The presence of nonlinearity was recognized by the FSCJ. The recognition influenced their judgment of no-observed-adverse-effect levels (NOAELs) for carcinogenicity or health-based guidance values, indicating the importance of appropriate kinetics to identify the nonlinearity for toxicological evaluation of pesticide residue.

摘要

本研究采用动力学方法探讨了 8 种农药体内暴露的非线性,旨在通过直观观察识别非线性,并探讨其对毒理学评价的影响。数据来源于食品安全委员会(FSCJ)发布的风险评估报告。采用 2 种指标定义非线性:动力学线性分布图表上的最低视觉转折点(LVIP)和第二低视觉转折点(SVIP)。曲线下面积和 24 小时尿液浓度是用于识别 LVIP/SVIP 的稳定参数。采样时间会影响血药浓度,因此使用母体化合物或其代谢物作为分析物来检测 6 种农药的 LVIP/SVIP。这些农药的亚比例非线性显著。在同一种物种中,LVIP/SVIP 值在 1 年内是一致的,但在几种化合物中,值存在种属特异性差异。在所有被发现为非线性的化合物中,SVIP 或更高水平出现了顶极结果。FSCJ 已经认识到非线性的存在。这种认识影响了他们对致癌性或基于健康的指导值的无观察不良效应水平(NOAEL)的判断,表明适当的动力学对于识别农药残留毒理学评价中的非线性非常重要。

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