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多环芳烃生物有效性/生物可利用性评估的过去、现在和未来展望:基于科学计量经济学的 20 年系统评价。

Past, present, and future perspectives on the assessment of bioavailability/bioaccessibility of polycyclic aromatic hydrocarbons: A 20-year systemic review based on scientific econometrics.

机构信息

School of Environment, Nanjing Normal University, Jiangsu Engineering Lab of Water and Soil Eco-Remediation, Nanjing 210023, PR China.

School of Environment, Nanjing Normal University, Jiangsu Engineering Lab of Water and Soil Eco-Remediation, Nanjing 210023, PR China.

出版信息

Sci Total Environ. 2021 Jun 20;774:145585. doi: 10.1016/j.scitotenv.2021.145585. Epub 2021 Feb 5.

DOI:10.1016/j.scitotenv.2021.145585
PMID:33607432
Abstract

Bioaccessibility/bioavailability (bioac-bioav) is an important criterion in the risk assessment of polycyclic aromatic hydrocarbons (PAHs), especially in the restoration of contaminated sites. Although, the bioac-bioav concept is widely employed in PAH risk assessment for both humans and wildlife, their growth and integration in risk assessment models are seldom discussed. Consequently, the relevant literature listed on Web of Science (WOS)™ was retrieved and analyzed using the bibliometric software Citespace in order to gain a comprehensive understanding of this issue. Due to the limitations of the literature search software, we manually searched the articles about PAHs bioac-bioav that were published before 2000. This stage focuses on research on the distribution coefficient of PAHs between different environmental phases and laid the foundation for the adsorption-desorption of PAHs in subsequent studies of the bioac-bioav of PAHs. The research progress on PAH bioac-bioav from 2000 to the present was evaluated using the Citespace software based on country- and discipline-wise publication volumes and research hotspots. The development stages of PAH bioac-bioav after 2000 were divided into four time segments. The first three segments (2000-2005, 2006-2010, and 2011-2015) focused on the degradation of PAHs and their in vivo (bioavailability)-in vitro (bioaccessibility) evaluation method and risk assessment. Meanwhile, the current (2016-present) research focuses on the establishment of analytical methods for assessing PAH derivatives at environmental concentrations and the optimization of various in vitro digestion methods, including chemical optimization (sorptive sink) and biological optimization (Caco-2 cell). The contents are aimed at supplying researchers with a deeper understanding of the development of PAH bioac-bioav.

摘要

生物可及性/生物利用度(bioac-bioav)是多环芳烃(PAHs)风险评估中的一个重要标准,尤其是在污染场地修复方面。尽管 bioac-bioav 概念在人类和野生动物的 PAH 风险评估中得到广泛应用,但它们在风险评估模型中的发展和整合很少被讨论。因此,我们检索了 Web of Science(WOS)™ 上列出的相关文献,并使用文献计量软件 Citespace 进行分析,以全面了解这一问题。由于文献搜索软件的限制,我们手动搜索了 2000 年以前发表的有关 PAHs bioac-bioav 的文章。这一阶段侧重于研究 PAHs 在不同环境相之间的分配系数,并为随后研究 PAHs 的 bioac-bioav 中 PAHs 的吸附-解吸奠定了基础。我们使用 Citespace 软件,根据国家和学科的出版物数量和研究热点,评估了 2000 年至今 PAH bioac-bioav 的研究进展。基于 2000 年以后 PAH bioac-bioav 的发展阶段,我们将其分为四个时间段。前三个时间段(2000-2005 年、2006-2010 年和 2011-2015 年)主要集中在 PAHs 的降解及其体内(生物利用度)-体外(生物可及性)评价方法和风险评估上。而当前(2016 年至今)的研究则侧重于建立环境浓度下评估 PAH 衍生物的分析方法,以及优化各种体外消化方法,包括化学优化(吸附阱)和生物优化(Caco-2 细胞)。这些内容旨在为研究人员提供更深入地了解 PAH bioac-bioav 的发展。

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