Genotoxic effects of chlorinated disinfection by-products of 1,3-diphenyl-guanidine (DPG): Cell-based in-vitro testing and formation potential during water disinfection

被引:24
作者
Santos, Mauricius Marques dos [1 ]
Cheriaux, Camille [2 ,3 ]
Jia, Shenglan [1 ]
Thomas, Mikael [4 ]
Gallard, Herve [4 ]
Croue, Jean-Philippe [4 ]
Carato, Pascal [2 ,3 ]
Snyder, Shane Allen [1 ]
机构
[1] Nanyang Technol Univ, Nanyang Environm & Water Res Inst NEWRI, CleanTech One, 1 Cleantech Loop, Singapore 637141, Singapore
[2] Univ Poitiers, Lab Ecol & Biol Interact, UMR 7267, CNRS, Poitiers, France
[3] Univ Poitiers, INSERM CIC1402, IHES Res Grp, Poitiers, France
[4] Univ Poitiers, Inst Chim Milieux & Materiaux Poitiers, UMR 7285,IC2MP, CNRS, Poitiers, France
基金
新加坡国家研究基金会;
关键词
3-diphenylguanidine; Genotoxicity; Chlorination; Disinfection by-products; Toxicity; DNA-DAMAGE; REAL-TIME; CYTOTOXICITY ASSAY; TOXICITY; CHEMICALS; RUBBER; TIRE; TRANSFORMATION; EXTRACTS; STRESS;
D O I
10.1016/j.jhazmat.2022.129114
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
1,3-diphenylguanidine (DPG) is a commonly used rubber and polymer additive, that has been found to be one of the main leachate products of tire wear particles and from HDPE pipes. Its introduction to aquatic environments and potentially water supplies lead to further questions regarding the effects of disinfection by-products potentially formed. Using different bioassay approaches and NGS RNA-sequencing, we show that some of the chlorinated by-products of DPG exert significant toxicity. DPG and its chlorinated by-products also can alter cell bioenergetic processes, affecting cellular basal respiration rates and ATP production, moreover, DPG and its two chlorination products, 1,3-bis-(4-chlorophenyl)guanidine (CC04) and 1-(4-chlorophenyl)-3-(2,4-dichlorophenyl)guanidine (CC11), have an impact on mitochondrial proton leak, which is an indicator of mitochondria damage. Evidence of genotoxic effects in the form of DNA double strand breaks (DSBs) was suggested by RNA sequencing results and further validated by an increased expression of genes associated with DNA damage response (DDR), specifically the canonical non-homologous end joining (c-NHEJ) pathway, as determined by qPCR analysis of different pathway specific genes (XRCC6, PRKDC, LIG4 and XRCC4). Immunofluorescence analysis of phosphorylated histone H2AX, another DSB biomarker, also confirmed the potential genotoxic effects observed for the chlorinated products. In addition, chlorination of DPG leads to the formation of different chlorinated products (CC04, CC05 and CC15), with analysed compounds representing up to 42% of formed products, monochloramine is not able to effectively react with DPG. These findings indicate that DPG reaction with free chlorine doses commonly applied during drinking water treatment or in water distribution networks (0.2-0.5 mg/L) can lead to the formation of toxic and genotoxic chlorinated products.
引用
收藏
页数:11
相关论文
共 58 条
  • [41] A ubiquitous tire rubber-derived chemical induces acute mortality in coho salmon
    Tian, Zhenyu
    Zhao, Haoqi
    Peter, Katherine T.
    Gonzalez, Melissa
    Wetzel, Jill
    Wu, Christopher
    Hu, Ximin
    Prat, Jasmine
    Mudrock, Emma
    Hettinger, Rachel
    Cortina, Allan E.
    Biswas, Rajshree Ghosh
    Kock, Flavio Vinicius Crizostomo
    Soong, Ronald
    Jenne, Amy
    Du, Bowen
    Hou, Fan
    He, Huan
    Lundeen, Rachel
    Gilbreath, Alicia
    Sutton, Rebecca
    Scholz, Nathaniel L.
    Davis, Jay W.
    Dodd, Michael C.
    Simpson, Andre
    McIntyre, Jenifer K.
    Kolodziej, Edward P.
    [J]. SCIENCE, 2021, 371 (6525) : 185 - 189
  • [42] DNA repair mechanisms in cancer development and therapy
    Torgovnick, Alessandro
    Schumacher, Bjoern
    [J]. FRONTIERS IN GENETICS, 2015, 6
  • [43] Experimental methodology for assessing the environmental fate of organic chemicals in polymer matrices using column leaching studies and OECD 308 water/sediment systems: Application to tire and road wear particles
    Unice, Kenneth M.
    Bare, Jennifer L.
    Kreider, Marisa L.
    Panko, Julie M.
    [J]. SCIENCE OF THE TOTAL ENVIRONMENT, 2015, 533 : 476 - 487
  • [44] A SPECTROPHOTOMETRIC STUDY OF THE FORMATION OF AN UNIDENTIFIED MONOCHLORAMINE DECOMPOSITION PRODUCT
    VALENTINE, RL
    BRANDT, KI
    JAFVERT, CT
    [J]. WATER RESEARCH, 1986, 20 (08) : 1067 - 1074
  • [45] Impact of EfOM in the elimination of PPCPs by UV/chlorine: Radical chemistry and toxicity bioassays
    Wang, Yuru
    dos Santos, Mauricius Marques
    Ding, Xinxin
    Labanowski, Jerome
    Gombert, Bertrand
    Snyder, Shane Allen
    Croue, Jean-Philippe
    [J]. WATER RESEARCH, 2021, 204
  • [46] Drinking Water Disinfection Byproduct lodoacetic Acid Induces Tumorigenic Transformation of NIH3T3 Cells
    Wei, Xiao
    Wang, Shu
    Zheng, Weiwei
    Wang, Xia
    Liu, Xiaolin
    Jiang, Songhui
    Pi, Jingbo
    Zheng, Yuxin
    He, Gengsheng
    Qu, Weidong
    [J]. ENVIRONMENTAL SCIENCE & TECHNOLOGY, 2013, 47 (11) : 5913 - 5920
  • [47] Occurrence and effects of tire wear particles in the environment - A critical review and an initial risk assessment
    Wik, Anna
    Dave, Goeran
    [J]. ENVIRONMENTAL POLLUTION, 2009, 157 (01) : 1 - 11
  • [48] Simultaneous screening for chemically diverse micropollutants in public water bodies in Japan by high-performance liquid chromatography-Orbitrap mass spectrometry
    Xie, Li
    Nakajima, Fumiyuki
    Kasuga, Ikuro
    Kurisu, Futoshi
    [J]. CHEMOSPHERE, 2021, 273
  • [49] DNA Damage and Oxidative Stress in Human Liver Cell L-02 Caused by Surface Water Extracts During Drinking Water Treatment in a Waterworks in China
    Xie, Shao-Hua
    Liu, Ai-Lin
    Chen, Yan-Yan
    Zhang, Li
    Zhang, Hui-Juan
    Jin, Bang-Xiong
    Lu, Wen-Hong
    Li, Xiao-Yan
    Lu, Wen-Qing
    [J]. ENVIRONMENTAL AND MOLECULAR MUTAGENESIS, 2010, 51 (03) : 229 - 235
  • [50] Synthesis of Symmetrical and Unsymmetrical N,N′-Diaryl Guanidines via Copper/N-Methylglycine-Catalyzed Arylation of Guanidine Nitrate
    Xing, Hui
    Zhang, Ye
    Lai, Yisheng
    Jiang, Yongwen
    Ma, Dawei
    [J]. JOURNAL OF ORGANIC CHEMISTRY, 2012, 77 (12) : 5449 - 5453