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新兴全氟化合物GenX:环境与生物归宿及风险

Emerging Perfluorinated Chemical GenX: Environmental and Biological Fates and Risks.

作者信息

Guo Wanqian, Hao Weidong, Xiao Wusheng

机构信息

Department of Toxicology, School of Public Health, Peking University, Beijing 100191, China.

Beijing Key Laboratory of Toxicological Research and Risk Assessment for Food Safety, School of Public Health, Peking University, Beijing 100191, China.

出版信息

Environ Health (Wash). 2024 Dec 17;3(4):338-351. doi: 10.1021/envhealth.4c00164. eCollection 2025 Apr 18.

Abstract

Perfluorinated chemical GenX, formally known as hexafluoropropylene oxide dimer acid (HFPO-DA), has been applied as an alternative to the forever chemical perfluorooctanoic acid (PFOA). The applications of HFPO-DA have rapidly expanded from traditional nonstick coating industries into high-tech semiconductor manufacturing. Because of such facts in conjunction with its low biodegradation rate and high potential of long-distance atmospheric transport, the presence and accumulation of HFPO-DA have been ubiquitously detected in environmental media and biological species, including animals and human beings, posing alarming and urgent needs for the risk assessment of HFPO-DA. Building on the United States Environmental Protection Agency's evaluation of HFPO-DA in 2021, this review first summarizes the interaction of HFPO-DA with the environment, elaborates on its known toxicities and potential carcinogenicity, along with their possible mechanisms, and briefly addresses its current exposure assessment and risk management strategies. These lines of evidence support that the safety of HFPO-DA necessitates further investigation and monitoring, albeit being considered as a less toxic and low persistence substitute of traditional PFOA.

摘要

全氟化合物GenX,原名六氟环氧丙烷二聚酸(HFPO-DA),已被用作永久性化学物质全氟辛酸(PFOA)的替代品。HFPO-DA的应用已迅速从传统的不粘涂层行业扩展到高科技半导体制造领域。鉴于这些情况,再加上其低生物降解率和高远距离大气传输潜力,在包括动物和人类在内的环境介质和生物物种中普遍检测到了HFPO-DA的存在和积累,这对HFPO-DA的风险评估提出了紧迫且令人担忧的需求。基于美国环境保护局2021年对HFPO-DA的评估,本综述首先总结了HFPO-DA与环境的相互作用,阐述了其已知的毒性和潜在致癌性及其可能的机制,并简要介绍了其当前的暴露评估和风险管理策略。这些证据表明,尽管HFPO-DA被认为是传统PFOA毒性较小且持久性较低的替代品,但其安全性仍需进一步调查和监测。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e7f6/12012656/ea4cca614e6f/eh4c00164_0001.jpg

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