Identification of aquatic ecological risk of bisphenol S in four Asian countries based on the SSD and alternative toxicity data of model species Danio rerio

被引:0
作者
Yooeun Chae
Seonhee Bae
Hi Gyu Moon
Yong-Jae Kim
Chang-Beom Park
June-Woo Park
Dae-Wook Kim
Jong-Su Seo
Sooyeon Kim
机构
[1] Gyeongnam Branch Institute,Ecological Risk Assessment Center
[2] Korea Institute of Toxicology (KIT),Medical Industry Venture Center
[3] Korea Testing Laboratory,Environmental Exposure & Toxicology Research Center
[4] Korea Institute of Toxicology (KIT),Environmental Safety
[5] Korea Institute of Toxicology (KIT),Assessment Center
[6] Korea Institute of Toxicology (KIT),Gyeongnam Branch Institute
来源
Environmental Science and Pollution Research | 2023年 / 30卷
关键词
Bisphenol S; Surface water; PNEC; SSD; Risk assessment; Zebrafish;
D O I
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中图分类号
学科分类号
摘要
Bisphenol S (BPS), an organic compound and bisphenol analog, is commonly used as a substitute for bisphenol A. BPS is widely used in epoxy glues, can coatings, and thermal receipt papers; however, its risks have not been fully determined and the probability of its toxicity has been continuously suggested. In this study, we conducted BPS toxicity tests on aquatic plants (acute), cladocerans (acute and chronic), and fish (chronic) to determine its adverse effects, and calculated the toxicity values. Additionally, we conducted an ecological risk assessment of BPS in freshwater ecosystems with toxicity data from previous studies using the species sensitivity distribution method and BPS exposure data from 14 rivers in four countries in Asia (China, Japan, India, and South Korea). The chronic-based risk quotient (RQ) values of BPS in one river in China and two rivers in India were > 1, indicating a high ecological risk of BPS to aquatic organisms. The other four rivers in China showed medium ecological risk (0.1 < RQ < 1) and those in Japan and South Korea showed negligible chronic risk (RQ < 0.1) to aquatic organisms. We also suggest sensitive indicators in the model organism Danio rerio and highlighted the importance of the development of new method of ecological risk assessment. This study could provide new information that will assist in managing BPS and bisphenol analogs in freshwater ecosystems.
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页码:77285 / 77298
页数:13
相关论文
共 234 条
[1]  
Barron MG(2021)Ecological thresholds of toxicological concern: a review Front Toxicol 3 640183-1325
[2]  
Otter RR(2020)Plastics derived endocrine-disrupting compounds and their effects on early development Birth Defects Res 112 1308-12414
[3]  
Connors KA(2017)How water’s properties are encoded in its molecular structure and energies Chem Rev 117 12385-1135
[4]  
Kienzler A(2018)A review on the effects of bisphenol A and its derivatives on skeletal health Int J Med Sci 15 1043-342
[5]  
Embry MR(2002)A multimedia assessment of the environmental fate of bisphenol A Hum Ecol Risk Assess 8 1107-235
[6]  
Basak S(2006)Environmental risk assessment of pharmaceutical residues in wastewater effluents, surface waters and sediments Talanta 69 334-8800
[7]  
Das MK(2018)The BPA-substitute bisphenol S alters the transcription of genes related to endocrine, stress response and biotransformation pathways in the aquatic midge PLoS One 13 e0193387-351
[8]  
Duttaroy AK(2018) (Diptera, Chironomidae) Arch Environ Contam Toxicol 75 224-130
[9]  
Brini E(2013)Occurrence and ecological risk assessment of eight endocrine-disrupting chemicals in urban river water and sediments of south China Environ Sci Technol 47 8793-1006
[10]  
Fennell CJ(2016)Effects of bisphenol S exposure on endocrine functions and reproduction of zebrafish Water Res 103 343-196