Nganda Armel, Kumar Manish, Uday Vismaya, Srivastava Pankaj, Deka Bhaskar Jyoti, Zitouni Faiza, Mahlknecht Jurgen
Energy Cluster, School of Engineering, University of Petroleum and Energy Studies, Dehradun, 248007, India.
Sustainability Cluster, School of Engineering, UPES, Dehradun, 248007, India; Escuela de Ingenieria y Ciencias, Tecnologico de Monterrey, Campus Monterrey, Eugenio Garza Sada 2501 Sur, Monterrey, 64849, Mexico.
Environ Res. 2023 Feb 1;218:114707. doi: 10.1016/j.envres.2022.114707. Epub 2022 Nov 24.
Various studies have been conducted on the perfluorochemicals (PFCs) family over the years. These compounds have been sought in various industrial aspects involving the synthesis of everyday utilities due to their broad range of applications. As a result, PFCs have built up in the environment, causing concern. The presence of PFCs in various environmental media, such as terrestrial and marine settings, as well as the mechanisms of transport, bioaccumulation, and physio-chemical interactions of PFCs within plants, aquatic organisms, microplastics, and, ultimately, the human body, are discussed in this review, which draws on a variety of research publications. The interaction of PFCs with proteins, translocation, and adsorption by hydrophobic interactions were observed, and this had an impact on the natural functioning of biological processes, resulting in events such as phylogenic clustering, competitive inhibition, and many others, posing potential hazards to human health and other relevant organisms in the ecosystem. However, further research is needed to have a better knowledge of PFCs and their interactions so that low-cost treatments can be developed to eliminate them. It is therefore, future research should focus on the role of soil matrix as a defensive mechanism for PFCs, as well as the impact of PFC chain length rejection.
多年来,人们对全氟化合物(PFCs)家族进行了各种研究。由于其广泛的应用,这些化合物在涉及日常用品合成的各种工业领域中被广泛使用。因此,全氟化合物在环境中不断积累,引发了人们的关注。本综述借鉴了各种研究出版物,讨论了全氟化合物在陆地和海洋等各种环境介质中的存在情况,以及全氟化合物在植物、水生生物、微塑料以及最终在人体中的运输、生物积累和物理化学相互作用机制。观察到全氟化合物与蛋白质的相互作用、通过疏水相互作用的转运和吸附,这对生物过程的自然功能产生了影响,导致了系统发生聚类、竞争性抑制等事件,对人类健康和生态系统中的其他相关生物构成潜在危害。然而,需要进一步研究以更好地了解全氟化合物及其相互作用,从而开发出低成本的处理方法来消除它们。因此,未来的研究应侧重于土壤基质作为全氟化合物防御机制的作用,以及全氟化合物链长排斥的影响。