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In vitro digestion and DGT techniques for estimating cadmium and lead bioavailability in contaminated soils: Influence of gastric juice pH

机译:体外消化和DGT技术估算污染土壤中镉和铅的生物利用度:胃液pH值的影响

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摘要

A sensitivity analysis was conducted on an in vitro gastrointestinal digestion test (i) to investigate the influence of a low variation of gastric juice pH on the bioaccessibility of Cd and Pb in smelter-contaminated soils (FB, using the unified bioaccessibility method UBM) and fractions of metals that may be transported across the intestinal epithelium (FA, using the diffusive gradient in thin film technique), and (ii) to provide a better understanding of the significance of pH in health risk assessment through ingestion of soil by children. The risk of metal exposure to children (hazard quotient, HQj was determined for conditions that represent a worst-case scenario (i.e., ingestion rate of 200 mg day"1) using three separate calculations of metal daily intake: estimated daily intake (EDI), bioaccessible EDI (EDJ-FB), and oral bioavailable EDI {EDI-FA). The increasing pH from 1.2 to 1.7 resulted in: (i) no significant variation in Cd-FB in the gastric phase but a decrease in the gastrointestinal phase; (ii) a decrease in soluble Pb in the gastric phase and a significant variation in Pb-FB in the gastrointestinal phase; (iii) a significant decrease in Cd-FA and no variation in Pb-FA; (iv) no change in ED1-FB and EDI-FA HQs for Cd; (v) a significant decrease in £D/-FB HQs and no significant variation in EDI-FA HQ for Pb. In the analytical conditions, these results show that risk to children decreases when the bioavailability of Pb in soils is taken into account and that the studied pH values do not affect the EDI-FA HQs. The present results provide evidence that the inclusion of bioavailability analysis during health risk assessment could provide a more realistic estimate of Cd and Pb exposure, and opens a wide field of practical research on this topic (e.g., in contaminated site management).
机译:在体外胃肠消化试验中进行了敏感性分析(i),以研究胃液pH值的低变化对冶炼厂污染土壤(FB,使用统一的生物可及性方法UBM)中Cd和Pb的生物可及性的影响,以及可能通过肠上皮运输的金属部分(FA,使用薄膜扩散梯度技术),以及(ii)通过儿童摄入土壤来更好地理解pH在健康风险评估中的重要性。使用三种单独的每日金属摄入量计算方法,确定代表最坏情况(例如,摄食量200 mg天“ 1”)的儿童对儿童的金属暴露风险(危险商,HQj):估计的每日摄入量(EDI) ,可生物利用的EDI(EDJ-FB)和口服可利用的EDI(EDI-FA),pH从1.2升高到1.7导致:(i)胃相中Cd-FB的变化不明显,而胃肠道中的Cd-FB则降低了;(ii)胃相中可溶性Pb的减少和胃肠道中Pb-FB的显着变化;(iii)Cd-FA显着降低且Pb-FA没有变化;(iv)镉的ED1-FB和EDI-FA总部;(v)铅的£D / -FB总部显着下降,而Eb-的EDI-FA总部无显着变化。考虑到土壤中铅的生物利用度,并且所研究的pH值不会影响EDI-FA总部。目前的结果提供了证据,证明在健康风险评估中纳入生物利用度分析可以提供对Cd和Pb暴露的更现实的估计,并为该主题开辟了广泛的实践研究领域(例如,受污染场地的管理)。

著录项

  • 来源
    《Science of the total environment》 |2011年第23期|p.5076-5085|共10页
  • 作者单位

    Universite Lille Nord de France, Lille, France,Croupe ISA, Equipe Sols et Environnement, Laboratoire Genie Civil et gio-Environnement (LCCgE) Lille Nord de France (EA 4515), 48 boulevard Vauban, 59046 Lille cedex, France;

    Universite Lille Nord de France, Lille, France,Croupe ISA, Equipe Sols et Environnement, Laboratoire Genie Civil et gio-Environnement (LCCgE) Lille Nord de France (EA 4515), 48 boulevard Vauban, 59046 Lille cedex, France;

    Universite Lille Nord de France, Lille, France,Croupe ISA, Equipe Sols et Environnement, Laboratoire Genie Civil et gio-Environnement (LCCgE) Lille Nord de France (EA 4515), 48 boulevard Vauban, 59046 Lille cedex, France;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    cadmium; lead; contaminated soils; oral bioaccessibility; diffusive gradient in thin film; human health risk;

    机译:镉;铅;受污染的土壤;口服生物可及性;薄膜中的扩散梯度;人类健康风险;

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