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Age-Related Differences in Susceptibility to Carcinogenesis. II. Approaches for Application and Uncertainty Analyses for Individual Genetically Acting Carcinogens

机译:与年龄相关的致癌性差异。二。个别遗传作用致癌物的应用方法和不确定性分析

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摘要

In an earlier report we developed a quantitative likelihood-based analysis of the differences in sensitivity of rodents to mutagenic carcinogens across three life stages (fetal, birth to weaning, and weaning to 60 days) relative to exposures in adult life. Here we draw implications for assessing human risks for full lifetime exposures, taking into account three types of uncertainties in making projections from the rodent data: uncertainty in the central estimates of the life-stage–specific sensitivity factors estimated earlier, uncertainty from chemical-to-chemical differences in life-stage–specific sensitivities for carcinogenesis, and uncertainty in the mapping of rodent life stages to human ages/exposure periods. Among the uncertainties analyzed, the mapping of rodent life stages to human ages/exposure periods is most important quantitatively (a range of several-fold in estimates of the duration of the human equivalent of the highest sensitivity “birth to weaning” period in rodents). The combined effects of these uncertainties are estimated with Monte Carlo analyses. Overall, the estimated population arithmetic mean risk from lifetime exposures at a constant milligrams per kilogram body weight level to a generic mutagenic carcinogen is about 2.8-fold larger than expected from adult-only exposure with 5–95% confidence limits of 1.5-to 6-fold. The mean estimates for the 0- to 2-year and 2- to 15-year periods are about 35–55% larger than the 10- and 3-fold sensitivity factor adjustments recently proposed by the U.S. Environmental Protection Agency. The present results are based on data for only nine chemicals, including five mutagens. Risk inferences will be altered as data become available for other chemicals.
机译:在较早的一份报告中,我们开发了基于定量似然分析的啮齿类动物,相对于成年暴露,在三个生命阶段(胎儿,断奶和断奶至60天)对诱变致癌物的敏感性差异。在这里,我们从评估啮齿类动物数据的过程中考虑了三种不确定性,从而得出了评估整个生命周期中的人为风险的含义:生命周期中央估计中的不确定性,即较早估计出的特定敏感性因素,化学物到化学物的不确定性。生命阶段对致癌作用的敏感性之间的化学差异,以及啮齿动物生命阶段到人类年龄/暴露时期的映射中的不确定性。在分析的不确定性中,啮齿动物的生命阶段到人类年龄/暴露时间的映射在数量上是最重要的(在啮齿动物中,最高敏感性的“断奶至出生”时期的人类等效时间的估计值的范围是几倍) 。这些不确定性的综合影响通过蒙特卡洛分析进行估计。总体而言,估计的群体算术平均寿命中,以恒定毫克/千克体重水平暴露于一般诱变致癌物的终生风险,比仅成人暴露的预期风险大约2.8倍,置信区间为5–95%,为1.5至6 -折。 0至2年期和2至15年期的平均估算值比美国环境保护局最近提议的10倍和3倍灵敏度系数调整高约35-55%。目前的结果是基于仅九种化学品的数据,其中包括五种诱变剂。随着数据可用于其他化学品,风险推断将发生变化。

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