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Structure-related endocrine-disrupting potential of environmental transformation products of benzophenone-type UV filters: A review

期刊

JOURNAL OF HAZARDOUS MATERIALS
卷 430, 期 -, 页码 -

出版社

ELSEVIER
DOI: 10.1016/j.jhazmat.2022.128495

关键词

Benzophenone-type UV filters; Biodegradation; Endocrine disruption; Redox conditions; Transformation products

资金

  1. German Federal Ministry of Education and Research (BMBF) through the AquaViet project [02WCL1472B]

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Benzophenone-type UV filters (BPs) are a diverse group of chemicals used in various industries worldwide. They can be found in different environmental compartments and have endocrine disrupting effects. Biodegradation and photolytic decomposition are the major elimination processes for BPs, with the formation of hydroxylated BPs during biodegradation showing increased endocrine activity.
Benzophenone-type UV filters (BPs) represent a very diverse group of chemicals that are used across a range of industrial sectors around the world. They are found within different environmental compartments (e.g. surface water, groundwater, wastewater, sediments and biota) at concentrations ranging from ng/L to mg/L. Some are known as endocrine disruptors and are currently within the scope of international regulations. A structural alert for high potential of endocrine disrupting activity was assigned to 11 BP derivatives. Due to the widespread use, distribution and disruptive effects of some BPs, knowledge of their elimination pathways is required. This review demonstrates that biodegradation and photolytic decomposition are the major elimination processes for BP-type UV filters in the environment. Under aerobic conditions, transformation pathways have only been reported for BP, BP-3 and BP-4, which are also the most common derivatives. Primary biodegradation mainly results in the formation of hydroxylated BPs, which exhibit a structure-related increase in endocrine activity when compared to their parent substances. By combining 76 literature-based transformation products (TPs) with in silico results relating to their receptor activity, it is demonstrated that 32 TPs may retain activity and that further knowledge of the degradation of BPs in the environment is needed.

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