Comparative study on toxicity of ZnO and TiO sub(2) nanoparticles on Artemia salina: effect of pre-UV-A and visible light irradiation
This study evaluated the toxicity potential of ZnO and TiO sub(2) nanoparticles under pre-UV-A irradiation and visible light condition on Artemia salina. The nanoparticle suspension was prepared in seawater medium and exposed under pre-UV-A (0.23 mW/cm super(2)) and visible light (0.18 mW/cm super(2...
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Veröffentlicht in: | Environmental science and pollution research international 2017-02, Vol.24 (6), p.5633-5646 |
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Sprache: | eng |
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Zusammenfassung: | This study evaluated the toxicity potential of ZnO and TiO sub(2) nanoparticles under pre-UV-A irradiation and visible light condition on Artemia salina. The nanoparticle suspension was prepared in seawater medium and exposed under pre-UV-A (0.23 mW/cm super(2)) and visible light (0.18 mW/cm super(2)) conditions. The aggregation profiles of both nanoparticles (NPs) and dissolution of ZnO NPs under both irradiation conditions at various kinetic intervals (1, 24, 48 h) were studied. The 48-h LC sub(50) values were found to be 27.62 and 71.63 mg/L for ZnO NPs and 117 and 120.9 mg/L for TiO sub(2) NPs under pre-UV-A and visible light conditions. ZnO NPs were found to be more toxic to A. salina as compared to TiO sub(2) NPs. The enhanced toxicity was observed under pre-UV-A-irradiated ZnO NPs, signifying its phototoxicity. Accumulation of ZnO and TiO sub(2) NPs into A. salina depends on the concentration of particles and type irradiations. Elimination of accumulated nanoparticles was also evident under both irradiation conditions. Other than ZnO NPs, the dissolved Zn super(2+) also had a significant effect on toxicity and accumulation in A. salina. Increased catalase (CAT) activity in A. salina indicates the generation of oxidative stress due to NP interaction. Thus, this study provides an understanding of the toxicity of photoreactive ZnO and TiO sub(2) NPs as related to the effects of pre-UV-A and visible light irradiation. |
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ISSN: | 0944-1344 1614-7499 |
DOI: | 10.1007/s11356-016-8328-z |