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Relationship Between Total and Bioaccessible Lead on Children’s Blood Lead Levels in Urban Residential Philadelphia Soils

机译:费城城市居民土壤中总铅与可生物利用铅对儿童血铅水平的关系

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摘要

Relationships between total soil or bioaccessible lead (Pb), measured using an in vitro bioaccessibility assay, and children’s blood lead levels (BLL) were investigated in an urban neighborhood in Philadelphia, Pennsylvania, USA, with a history of soil Pb contamination. Soil samples from 38 homes were analyzed to determine whether accounting for the bioaccessible Pb fraction improves statistical relationships with children’s BLLs. Total soil Pb ranged from 58 to 2,821 mg/kg; the bioaccessible Pb fraction ranged from 47 to 2,567 mg/kg. Children’s BLLs ranged from 0.3 to 9.8 μg/dL. Hierarchical models were used to compare relationships between total or bioaccessible Pb in soil and children’s BLLs. Total soil Pb as the predictor accounted for 25% of the variability in child BLL; bioaccessible soil Pb as the predictor accounted for 28% of BLL variability. A bootstrapping analysis confirmed a significant increase in R2 for the model using bioaccessible soil Pb as the predictor with 99.3% of bootstraps showing a positive increase. Estimated increases of 1.4 μg/dL and 1.6 μg/dL in BLL per 1,000 mg/kg Pb in soil were observed for this study area using total and bioaccessible Pb, respectively. Children’s age did not contribute significantly to the prediction of BLLs.
机译:在美国宾夕法尼亚州的一个城市社区中,对使用体外生物可及性测定法测量的总土壤或生物可利用铅(Pb)与儿童血铅水平(BLL)之间的关系进行了调查,并记录了土壤铅的污染史。分析了来自38个家庭的土壤样本,以确定对可生物利用的铅含量的会计处理是否能改善与儿童BLL的统计关系。土壤总铅的范围为58至2,821 mg / kg;生物可利用的铅含量范围为47至2,567 mg / kg。儿童的BLL范围为0.3至9.8μg/ dL。分层模型用于比较土壤中总铅或可生物利用铅与儿童BLL之间的关系。土壤总铅作为预测因子,占儿童BLL变异性的25%;生物可利用的土壤铅作为预测因子占BLL变异性的28%。引导分析证实,使用可生物接触的土壤铅作为预测因子的模型,R 2 显着增加,其中99.3%的引导程序显示为正增加。使用总铅和生物可利用铅,分别在该研究区域中观察到每1000 mg / kg铅在土壤中BLL的估计增加量为1.4μg/ dL和1.6μg/ dL。儿童的年龄对预测BLL的贡献不大。

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