Abst'/> Can in vitro assays account for interactions between inorganic co- contaminants observed during in vivo relative bioavailability assessment?
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Can in vitro assays account for interactions between inorganic co- contaminants observed during in vivo relative bioavailability assessment?

机译:体外测定能否解释在体内相对生物利用度评估中观察到的无机共污染物之间的相互作用?

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摘要

AbstractIn vitro assays act as surrogate measurements of relative bioavailability (RBA) for inorganic contaminants. The values derived from these assays are routinely used to refine human health risk assessments (HHRA). Extensive in vitro research has been performed on three major inorganic contaminants; As, Cd and Pb. However, the majority of these studies have evaluated the contaminants individually, even in cases when they are found as co-contaminants. Recently, in vivo studies (animal model) have determined that when the three aforementioned contaminants are present in the same soil matrix, they have the ability to influence each other's individual bioavailability. Since in vitro assays are used to inform HHRA, this study investigated whether bioaccessibility methods including the Solubility/Bioavailability Research Consortium (SBRC) assay, and physiologically based extraction test (PBET), have the ability to detect interactions between As, Cd and Pb. Using a similar dosing methodology to recently published in vivo studies, spiked aged (12 years) soil was assessed by evaluating contaminant bioaccessibility individually, in addition to tertiary combinations. In two spiked aged soils (grey and brown chromosols), there was no influence on contaminant bioaccessibility when As, Cd and Pb we present as co-contaminants. However, in a red ferrosol, the presence of As and Pb significantly decreased (p < 0.05) the bioaccessibility of Cd when assessed using gastric and intestinal phases of the SBRC assay and the PBET. Conceivable, differences in key physico-chemical properties (TOC, Fe, Al, P) between the study soils influenced contaminant interactions and bioaccessibility outcomes. Although bioaccessibility methods may not account for interactions between elements as demonstrated in in vivo models, in vitro assessment provides a conservative prediction of contaminant RBA under co-contaminant scenarios.Graphical abstractDisplay OmittedHighlightsSpiked soil was assessed using in vitro methods SBRC and PBET to determine co-contaminant interaction.SBRC-G determined no co-contaminant interaction between Cd or Pb with As.SBRC-I determined no co-contaminant interaction between As or Cd with Pb.In vitro interaction between As and Pb with Cd is dependent on soil characteristics.This research is critical for determining the appropriateness of using in vitro assays as surrogate measurements of relative bioavailability at sites with multiple inorganic contaminants.
机译: 摘要 在体外分析中,可作为无机污染物相对生物利用度(RBA)的替代指标。从这些分析得出的值通常用于完善人类健康风险评估(HHRA)。已经对三种主要的无机污染物进行了广泛的体外研究;砷,镉和铅但是,这些研究中的大多数都对污染物进行了单独评估,即使在发现污染物为共污染物的情况下也是如此。最近,在体内研究(动物模型)中确定,当上述三种污染物存在于同一土壤基质中时,它们具有影响彼此的个别生物利用度的能力。由于体外测定法用于告知HHRA,因此本研究调查了包括可溶性/生物利用度研究联盟(SBRC)测定法和基于生理的提取试验(PBET)等生物可及性方法是否具有检测As,Cd和Pb之间相互作用的能力。使用与最近在体内研究中发表的相似的定量方法,除第三级组合外,还通过单独评估污染物的生物可及性来评估加标老化(12年)的土壤。在两种加标的老化土壤(灰色和棕色色溶胶)中,当我们将As,Cd和Pb作为共同污染物存在时,对污染物的生物可及性没有影响。但是,在红色铁氧体中,当使用SBRC分析的胃和肠相和PBET进行评估时,As和Pb的存在显着降低(p <0.05)Cd的生物可及性。可以想象,研究土壤之间关键物理化学性质(TOC,Fe,Al,P)的差异影响了污染物的相互作用和生物可及性。尽管生物可及性方法可能无法解释体内模型中所说明的元素之间的相互作用,但体外评估提供了在共污染情况下污染物RBA的保守预测。 < / ce:abstract> 图形摘要 省略显示 突出显示 使用体外方法SBRC和PBET对掺入的土壤进行了评估,以确定共同污染的相互作用。 SBRC-G确定没有合作镉或铅与砷之间的污染物相互作用。 SBRC-I确定As或Cd与Pb之间没有共污染相互作用。 As和Pb与Cd之间的体外相互作用取决于土壤特性。 这项研究对于确定在体外测定中替代具有多种无机污染物的位置的相对生物利用度的适当性至关重要。

著录项

  • 来源
    《Environmental pollution》 |2018年第2期|348-355|共8页
  • 作者单位

    Future Industries Institute, University of South Australia,Cooperative Research Centre for Contamination Assessment and Remediation of Environment (CRC CARE), University of Newcastle;

    Future Industries Institute, University of South Australia;

    Future Industries Institute, University of South Australia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Bioaccessibility; Arsenic; Lead; Cadmium; Spiked aged soil;

    机译:生物可利用性;砷;铅;镉;尖峰老化土壤;
  • 入库时间 2022-08-17 13:25:42

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