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高精度血铅放射性同位素特征在一个社区暴露于 Pb 污染土壤和当前 Pb 暴露的欧洲人口的影响。

High precision blood lead radiogenic isotope signatures in a community exposed to Pb contaminated soils and implications for the current Pb exposure of the European population.

机构信息

Institut Scientifique de Service Public, Rue du Chéra 200, 4000 Liège, Belgium.

Laboratoire G-TIME, Faculté des Sciences, Université Libre de Bruxelles, Av. F.D. Roosevelt 50 CP106/02 1050, Bruxelles, Belgium.

出版信息

Sci Total Environ. 2024 Nov 10;950:174763. doi: 10.1016/j.scitotenv.2024.174763. Epub 2024 Aug 2.

Abstract

Our study provides the most comprehensive dataset for high-precision radiogenic isotopes of lead (Pb) in blood for the western European population. It investigates their potential for elucidating the contribution of soil Pb to blood Pb using a human biomonitoring survey involving 81 adults and 4 children living in the urban area of Liège (Belgium). Soils in the area show moderate (median of 360 mg/kg) to high (95th percentile of 1000 mg/kg) Pb concentrations, due to former metal processing activities. Blood lead levels (BLL) measured in the study population are, on average, quantitatively consistent with a ∼ 20 % increase due to the exposure to Pb from soils, as estimated by a single-compartment biokinetic model. Consistently, its isotopic composition does not represent an endmember that fully accounts for the variability of Blood lead isotope (BLI) compositions measured in the study population. While some individuals show more thorogenic BLI ratios (relatively more enriched in Pb), which could be consistent with a greater exposure to local soils and/or by their country of birth, the BLI data mostly follow a trend roughly parallel to the European Standard Lead Pollution (ESLP) line, within the European leaded gasoline field, even two decades after the withdrawal of this source. Differences in BLI are probably associated with factors related to the presence of Pb in dwellings (pipes, paint) and drinking water distribution system, suggesting that the anthropogenic Pb in use, relevant to human exposure, may contain ore components of different origins, including the Australian Pb ore signature.

摘要

我们的研究为西欧人群的高精度放射成因铅(Pb)同位素在血液中的应用提供了最全面的数据集。它通过一项涉及 81 名成年人和 4 名儿童的人体生物监测调查,研究了利用土壤 Pb 阐明血液 Pb 贡献的潜力,这些人居住在比利时列日市的城区。由于以前的金属加工活动,该地区的土壤 Pb 浓度较高(中位数为 360mg/kg)至极高(第 95 个百分位为 1000mg/kg)。研究人群的血铅水平(BLL)平均与因暴露于土壤中的 Pb 而导致的约 20%的增加定量一致,这是通过单室生物动力学模型估计的。一致地,其同位素组成并不能代表完全说明研究人群中测量的血铅同位素(BLI)组成变化的端元。虽然一些个体显示出更多的放射性同位素比值(相对更富集 Pb),这可能与更大的局部土壤暴露有关,或者与他们的出生地有关,但 BLI 数据大多遵循与欧洲含铅汽油领域的欧洲标准铅污染(ESLP)线大致平行的趋势,即使在这种来源被撤销二十年后也是如此。BLI 的差异可能与与居住环境(管道、油漆)和饮用水分配系统中 Pb 存在相关的因素有关,这表明与人类暴露相关的人为使用的 Pb 可能含有不同来源的矿石成分,包括澳大利亚 Pb 矿石特征。

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