Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
6968198 | Journal of Hazardous Materials | 2018 | 28 Pages |
Abstract
This study was performed to reveal the health risks of co-exposure to organophosphorus flame retardants (OPFRs) and microplastics (MPs). We exposed mice to polyethylene (PE) and polystyrene (PS) MPs and OPFRs [tris (2-chloroethy) phosphate (TCEP) and tris (1,3-dichloro-2-propyl) phosphate (TDCPP)] for 90 days. Biochemical markers and metabolomics were used to determine whether MPs could enhance the toxicity of OPFRs. Superoxide dismutase (SOD) and catalase (CAT) increased (pâ¯<â¯0.05) by 21% and 26% respectively in 10â¯Î¼g/L TDCPPâ¯+â¯PE group compared to TDCPP group. Lactate dehydrogenase (LDH) in TDCPPâ¯+â¯MPs groups were higher (18%-30%) than that in TDCPP groups (pâ¯<â¯0.05). Acetylcholinesterase (AChE) in TCEPâ¯+â¯PE groups were lower (10%-19%) than those in TCEP groups (pâ¯<â¯0.05). These results suggested that OPFR co-exposure with MPs induced more toxicity than OPFR exposure alone. Finally, in comparison to controls we observed that 29, 41, 41, 26, 40 and 37 metabolites changed significantly (pâ¯<â¯0.05; fold-changeâ¯>â¯1.2) in TCEP, TCEPâ¯+â¯PS, TCEPâ¯+â¯PE, TDCPP, TDCPPâ¯+â¯PS and TDCPPâ¯+â¯PE groups, respectively. Most of these metabolites are related to pathways of amino acid and energy metabolism. Our results indicate that MPs aggravate the toxicity of OPFRs and highlight the health risks of MP co-exposure with other pollutants.
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Authors
Yongfeng Deng, Yan Zhang, Ruxia Qiao, Melvin M. Bonilla, Xiaoliang Yang, Hongqiang Ren, Bernardo Lemos,