Bhuvaneshwari M, Sagar Bhawana, Doshi Siddharth, Chandrasekaran N, Mukherjee Amitava
Centre for Nanobiotechnology, VIT University, Vellore, 632014, India.
Environ Sci Pollut Res Int. 2017 Feb;24(6):5633-5646. doi: 10.1007/s11356-016-8328-z. Epub 2016 Dec 30.
This study evaluated the toxicity potential of ZnO and TiO 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) and visible light (0.18 mW/cm) 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 values were found to be 27.62 and 71.63 mg/L for ZnO NPs and 117 and 120.9 mg/L for TiO NPs under pre-UV-A and visible light conditions. ZnO NPs were found to be more toxic to A. salina as compared to TiO NPs. The enhanced toxicity was observed under pre-UV-A-irradiated ZnO NPs, signifying its phototoxicity. Accumulation of ZnO and TiO 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 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 NPs as related to the effects of pre-UV-A and visible light irradiation.
本研究评估了氧化锌(ZnO)和二氧化钛(TiO)纳米颗粒在紫外线A(UV-A)预照射和可见光条件下对卤虫的潜在毒性。纳米颗粒悬浮液在海水介质中制备,并在UV-A预照射(0.23 mW/cm)和可见光(0.18 mW/cm)条件下进行暴露。研究了两种纳米颗粒(NPs)在不同动力学时间间隔(1、24、48小时)的聚集情况以及ZnO NPs在两种照射条件下的溶解情况。在UV-A预照射和可见光条件下,ZnO NPs的48小时半数致死浓度(LC)值分别为27.62和71.63 mg/L,TiO NPs的48小时LC值分别为117和120.9 mg/L。结果发现,与TiO NPs相比,ZnO NPs对卤虫的毒性更大。在UV-A预照射的ZnO NPs中观察到毒性增强,表明其具有光毒性。ZnO和TiO NPs在卤虫中的积累取决于颗粒浓度和照射类型。在两种照射条件下,积累的纳米颗粒的消除也很明显。除了ZnO NPs外,溶解的锌对卤虫的毒性和积累也有显著影响。卤虫中过氧化氢酶(CAT)活性的增加表明由于纳米颗粒相互作用产生了氧化应激。因此,本研究提供了对光反应性ZnO和TiO NPs毒性的理解,这与UV-A预照射和可见光照射的影响有关。