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Differential sensitivity of marine algae Dunaliella salina and Chlorella sp. to P25 TiO2 NPs

机译:海藻藻犬丹麦利菌萨利纳和小球藻SP的差异敏感性。 到P25 TiO2 NPS

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The use of P25 TiO2 NPs in consumer products, their release, and environmental accumulation will have harmful effects on the coastal ecosystems. The sensitivity to TiO2 NPs may vary depending on the structural property and physiological mechanism of algal species. Therefore, the present study investigates the differences in sensitivity of two marine algae, Dunaliella salina and Chlorella sp., towards P25 TiO2 NPs. Among the two species, Chlorella sp. was more sensitive to TiO2 NPs than Dunaliella salina. The different working concentrations of TiO2 NPs, 0.1, 1, and 10 mg L-1, were selected based on the EC50 value. The EC50 value of TiO2 NPs for Dunaliella salina was found to be 1.8 and 13.3 mg L-1 under UV-A and dark conditions, respectively. The EC50 value of TiO2 NPs for Chlorella sp. was found to be 1.6 and 5.0 mg L-1 under UV-A and dark conditions, respectively. The decrease in cell viability was significantly higher for Chlorella sp. compared to Dunaliella salina at all concentrations except 0.1 mg L-1. The cellular viability data was in correlation with the oxidative stress markers such as total ROS and LPO. A concentration-dependent increase in ROS and lipid peroxidation was noted under UV-A exposure, which was higher in Chlorella sp. compared to Dunaliella salina. The decrease in the SOD activity with NP concentration was more in Dunaliella salina than Chlorella sp. under both conditions, whereas Chlorella sp. showed increased CAT activity with increasing concentration. The uptake of TiO2 NPs was more in Chlorella sp. than Dunaliella salina.
机译:使用P25 TiO2 NPS在消费品,释放和环境积累中对沿海生态系统产生有害影响。对TiO2 NPS的敏感性可能根据藻类种类的结构性和生理机制而变化。因此,本研究调查了两种海藻藻类,Dunaliella Salina和小球藻SP的敏感性差异。朝向P25 TiO2 NPS。在两种物种中,小球藻SP。对TiO2 NPS比Dunaliella Salina更敏感。基于EC50值选择不同的TiO 2 NPS,0.1,1和10mg L-1的不同工作浓度。在UV-A和暗条件下,发现Dunaliella Salina的TiO2 NPS的EC50值为1.8和13.3mg L-1。小球藻SP的TiO2 NPS的EC50值。在UV-A和暗条件下发现是1.6和5.0mg的L-1。对于小球藻SP,细胞活力的降低显着高。与除0.1mg L-1外的所有浓度相比,除了Dunaliella Salina。细胞活力数据与氧化应激标记物相关,例如总ROS和LPO。在UV-A暴露下,注意到在UV-A暴露下依赖于ROS和脂质过氧化的浓度增加,其在小球藻SP中较高。与Dunaliella Salina相比。在Dunaliella Salina比小球藻SP,NP浓度的SOD活性降低更多。在两个条件下,Hereas sp。随着浓度的增加,猫活动增加。 TiO2 NPS的摄取更多在小球藻SP中。比Dunaliella Salina。

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