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关于反应性污染物 BADGE 的分析方法、存在、转化和毒性的综合评述。

A comprehensive review on the analytical method, occurrence, transformation and toxicity of a reactive pollutant: BADGE.

机构信息

State Key Laboratory of Eco-hydraulics in Northwest Arid Region, Xi'an University of Technology, Xi'an, Shaanxi 710048, China.

School of Civil and Environmental Engineering, Nanyang Technological University, Singapore 639798, Singapore; Nanyang Environment & Water Research Institute, Nanyang Technological University, Singapore 637141, Singapore.

出版信息

Environ Int. 2021 Oct;155:106701. doi: 10.1016/j.envint.2021.106701. Epub 2021 Jun 17.

Abstract

Bisphenol A diglycidyl ether (BADGE)-based epoxy resin is one of the most widely used epoxy resins with an annual production amount of several million tons. Compared with all other legacy or emerging organic compounds, BADGE is special due to its toxicity and high reactivity in the environment. More and more studies are available on its analytical methods, occurrence, transformation and toxicity. Here, we provided a comprehensive review of the current BADGE-related studies, with focus on its production, application, available analytical methods, occurrences in the environment and human specimen, abiotic and biotic transformation, as well as the in vitro and in vivo toxicities. The available data show that BADGE and its derivatives are ubiquitous environmental chemicals and often well detected in human specimens. For their analysis, a water-free sample pretreatment should be considered to avoid hydrolysis. Additionally, their complex reactions with endogenous metabolites are areas of great interest. To date, the monitoring and further understanding of their transport and fate in the environment are still quite lacking, comparing with its analogues bisphenol A (BPA) and bisphenol S (BPS). In terms of toxicity, the summary of its current studies and Environmental Protection Agency (EPA) ToxCast toxicity database suggests BADGE might be an endocrine disruptor, though more detailed evidence is still needed to confirm this hypothesis in in vivo animal models. Future study of BADGE should focus on its metabolic transformation, reaction with protein and validation of its role as an endocrine disruptor. We believe that the elucidation of BADGEs can greatly enhance our understandings of those reactive compounds in the environment and human.

摘要

双酚 A 二缩水甘油醚(BADGE)基环氧树脂是应用最广泛的环氧树脂之一,年产量达数百万吨。与所有其他传统或新兴有机化合物相比,BADGE 因其在环境中的毒性和高反应性而具有特殊性。越来越多的研究关注其分析方法、环境中的存在、转化和毒性。在这里,我们对现有的 BADGE 相关研究进行了全面综述,重点介绍了其生产、应用、现有的分析方法、在环境和人体样本中的存在、非生物和生物转化以及体外和体内毒性。现有数据表明,BADGE 及其衍生物是普遍存在的环境化学物质,经常在人体样本中被很好地检测到。对于它们的分析,应该考虑采用无水样品预处理以避免水解。此外,它们与内源性代谢物的复杂反应是非常有趣的领域。迄今为止,与类似物双酚 A(BPA)和双酚 S(BPS)相比,其在环境中的传输和命运的监测和进一步理解仍相当缺乏。在毒性方面,对其现有研究的总结和环境保护署(EPA)ToxCast 毒性数据库表明,BADGE 可能是一种内分泌干扰物,尽管仍需要更详细的证据在体内动物模型中证实这一假设。未来对 BADGE 的研究应集中在其代谢转化、与蛋白质的反应以及验证其作为内分泌干扰物的作用。我们相信,对 BADGE 的阐明可以极大地提高我们对环境和人体中这些反应性化合物的理解。

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