| Literature DB >> 29503109 |
Xizhi Huang1, Zekang Liu2, Zhe Xie2, Sam Dupont3, Wei Huang4, Fangli Wu2, Hui Kong2, Liping Liu2, Yanming Sui2, Daohui Lin5, Weiqun Lu2, Menghong Hu6, Youji Wang7.
Abstract
Biochemical responses of the mussel Mytilus coruscus exposed to different concentrations of titanium dioxide nanoparticles (nano-TiO2) (0, 2.5, 10 mg L-1) and two pH levels (pH 8.1 and pH 7.3) for 14 days. Mussel responses were also investigated after a 7 days recovery period (pH 8.1 and no nanoparticle). Exposure to nano-TiO2 led changes in antioxidant indexes (superoxide dismutase (SOD), catalase (CAT), glutathione peroxidase (GPx), glutathione (GSH)), biotransformation enzyme activity (GST) and malondialdehyde level (MDA) in gills and digestive glands. An increase in MDA level and a decrease in SOD and GSH activities were observed in gill of mussels exposed to 10 mg L-1 nano-TiO2. This effect was more severe in mussels kept at pH 7.3 as compared to pH 8.1. A different response was observed in the digestive gland as SOD, CAT and GSH levels increased in mussels exposed to nano-TiO2. These contrasting results in digestive glands and gills were only evident at high concentration of nano-TiO2 and low pH. A 7 days recovery period was not sufficient to fully restore SOD, GPx, GST, GSH and MDA levels to levels before exposure to nano-TiO2 and low pH. Overall, our results confirmed that seawater acidification modulates effects of nanoparticles in mussels, and that gills are more sensitive to these stressors as compared with digestive glands.Entities:
Keywords: Biochemical responses; Digestive gland; Gill; Nano-TiO(2); pH
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Year: 2018 PMID: 29503109 DOI: 10.1016/j.marenvres.2018.02.029
Source DB: PubMed Journal: Mar Environ Res ISSN: 0141-1136 Impact factor: 3.130