Exposure and Risk Assessment of Hg, Cd, As, Tl, Se, and Mo in Women of Reproductive Age Using Urinary Biomonitoring

生物监测 百分位 危险系数 参考剂量 风险评估 尿 背景(考古学) 泌尿系统 毒理 鱼类消费 每日容许摄入量 动物科学 环境卫生 环境化学 生物 医学 化学 健康风险 内分泌学 体重 数学 古生物学 统计 计算机安全 有机化学 渔业 计算机科学
作者
Clara Coscollà,Alfredo Sánchez,Francisca Corpas‐Burgos,Antonio López,Rosa Ana Pérez,Julia Kuligowski,Máximo Vento,Vicent Yusà
出处
期刊:Environmental Toxicology and Chemistry [Wiley]
卷期号:40 (5): 1477-1490 被引量:7
标识
DOI:10.1002/etc.4996
摘要

Abstract The present study analyzed the exposure and risk assessment of 4 toxic (Hg, Cd, As, Tl) and 2 essential (Se, Mo) elements in 119 Spanish women of reproductive age. The focus was on the elements for which risk‐based benchmark, biomonitoring equivalents, or health‐related human biomonitoring values have already been established. All elements presented frequencies of detection of 100% (greater than the limit of detection), except for Cd (99%). The 95th percentile concentrations were, for the toxic metals, 358.37 µg/L (total As), 1.10 µg/L (Cd), 0.41 µg/L (Tl), and 3.03 µg/L (total Hg) and, for the essential elements, 68.95 µg/L (total Se) and 154.67 (Mo). We examined sociodemographic factors and dietary habits of women as predictors of urinary metal concentrations. Arsenic was positively associated with fish, shellfish, and canned fish consumption, whereas Mo was found to be associated with the consumption of cereals and pastry products. Maternal urine levels of As were negatively correlated with gestational age. In a risk‐assessment context, hazard quotients (HQs) using the 95th percentile ranged from 0.08 (Tl) to 15.1 (urinary speciated As), with Cd presenting an HQ of 1.1 (95th percentile). None of the essential metals presented concentrations higher than their upper intake level; however, 3% of the mothers showed lower levels of Se than the estimated average requirement (EAR) biomonitoring equivalent, and 20% of the mothers were found to have lower levels of Mo than the EAR biomonitoring equivalent, suggesting a nutritionally inadequate diet. Environ Toxicol Chem 2021;40:1477–1490. © 2021 SETAC

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