Improving the predictive value of bioaccessibility assays and their use to provide mechanistic insights into bioavailability for toxic metals/metalloids - A research prospectus.

IF 8.1 2区 医学 Q1 ENVIRONMENTAL SCIENCES Journal of Toxicology and Environmental Health-Part B-Critical Reviews Pub Date : 2021-10-03 Epub Date: 2021-06-06 DOI:10.1080/10937404.2021.1934764
Jennifer L Griggs, David J Thomas, Rebecca Fry, Karen D Bradham
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Abstract

Widespread contamination of soil, dust, and food with toxic metal(loid)s pose a significant public health concern. Only a portion of orally ingested metal(loid) contaminants are bioavailable, which is defined as the fraction of ingested metal(loid)s absorbed across the gastrointestinal barrier and into systemic circulation. Bioaccessibility tools are a class of in vitro assays used as a surrogate to estimate risk of oral exposure and bioavailability. Although development and use of bioaccessibility tools have contributed to our understanding of the factors influencing oral bioavailability of metal(loid)s, some of these assays may lack data that support their use in decisions concerning adverse health risks and soil remediation. This review discusses the factors known to influence bioaccessibility of metal(loid) contaminants and evaluates experimental approaches and key findings of SW-846 Test Method 1340, Unified BARGE Method, Simulated Human Intestinal Microbial Ecosystem, Solubility Bioaccessibility Research Consortium assay, In Vitro Gastrointestinal model, TNO-Gastrointestinal Model, and Dutch National Institute for Public Health and the Environment bioaccessibility models which are used to assess oral absolute bioavailability and relative bioavailability in solid matrices. The aim of this review was to identify emerging knowledge gaps and research needs with an emphasis on research required to evaluate these models on (1) standardization of assay techniques and methodology, and (2) use of common criteria for assessing the performance of bioaccessibility models.

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提高生物利用率测定的预测价值,并利用这些测定从机理上深入了解有毒金属/金属化合物的生物利用率--研究展望。
土壤、灰尘和食物普遍受到有毒金属(loid)的污染,对公众健康构成了严重威胁。口服金属(loid)污染物中只有一部分具有生物可利用性,生物可利用性是指摄入的金属(loid)通过胃肠道屏障被吸收并进入全身循环的比例。生物可利用性工具是一类体外检测工具,可用作估算口服暴露风险和生物可利用性的替代物。虽然生物可利用性工具的开发和使用有助于我们了解影响金属(松散物)口服生物利用率的因素,但其中一些检测方法可能缺乏数据支持,无法用于有关不利健康风险和土壤修复的决策。本综述讨论了已知的影响金属(loid)污染物生物利用度的因素,并评估了 SW-846 测试方法 1340、统一 BARGE 方法、模拟人体肠道微生物生态系统、溶解性生物利用度研究联合会测定法、体外胃肠道模型、TNO-胃肠道模型和荷兰国家公共卫生与环境研究所生物利用度模型的实验方法和主要研究结果,这些模型用于评估固体基质中的口服绝对生物利用度和相对生物利用度。本综述旨在确定新出现的知识差距和研究需求,重点是评估这些模型所需的研究:(1) 检测技术和方法的标准化;(2) 使用通用标准评估生物利用度模型的性能。
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来源期刊
CiteScore
13.80
自引率
6.90%
发文量
13
审稿时长
>24 weeks
期刊介绍: "Journal of Toxicology and Environmental Health: Part B - Critical Reviews" is an academic journal published by Taylor & Francis, focusing on the critical examination of research in the areas of environmental exposure and population health. With an ISSN identifier of 1093-7404, this journal has established itself as a significant source of scholarly content in the field of toxicology and environmental health. Since its inception, the journal has published over 424 articles that have garnered 35,097 citations, reflecting its impact and relevance in the scientific community. Known for its comprehensive reviews, the journal also goes by the names "Critical Reviews" and "Journal of Toxicology & Environmental Health, Part B, Critical Reviews." The journal's mission is to provide a platform for in-depth analysis and critical discussion of the latest findings in toxicology, environmental health, and related disciplines. By doing so, it contributes to the advancement of knowledge and understanding of the complex interactions between environmental factors and human health, aiding in the development of strategies to protect and improve public health.
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