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Toxic effect of different types of titanium dioxide nanoparticles on Ceriodaphnia dubia in a freshwater system

机译:不同类型不同类型二氧化钛纳米粒子在淡水系统中Ceriodaphnia Dubia的毒性作用

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In the current study, the effect of different types of titanium dioxide (TiO2) nanoparticles (NPs) (rutile, anatase, and mixture) was analyzed on Ceriodaphnia dubia in the presence of algae under distinct irradiation conditions such as visible and UV-A. The toxicity experiments were performed in sterile freshwater to mimic the chemical composition of the freshwater system. In addition, the oxidative stress biomarkers such as MDA, catalase, and GSH were analyzed to elucidate the stress induced by the NPs on daphnids. Individually, both rutile and anatase NPs induced similar mortality under both visible and UV-A irradiations at all the test concentrations except 600 and 1200M where rutile induced higher mortality under UV-A. Upon visible irradiation, the binary mixture exhibited a synergistic effect at their lower concentration and an additive effect at higher concentrations. In contrast, UV-A irradiation demonstrated the additive effect of mixture except for 1200M which elucidated antagonistic effect. Mathematical model confirmed the effects of the binary mixture. The surface interaction between the individual NPs in the form of aggregation played a pivotal role in the induction of specific effects exhibited by the binary mixture. Oxidative stress biomarkers were highly increased upon NPs exposure especially under visible irradiation. These observations elucidated that the irradiation and crystallinity effect of TiO2 NPs were noted only on certain biomarkers and not on the mortality.
机译:在目前的研究中,在不同的照射条件下在藻类存在下分析不同类型的二氧化钛(TiO 2)纳米颗粒(NPS)(NPS)(金红石,锐钛矿和混合物)的影响,例如可见和UV-A。毒性实验在无菌淡水中进行,以模拟淡水系统的化学成分。此外,分析了氧化应激生物标志物,如MDA,过氧化氢酶和GSH,以阐明NPS在Daphnids上诱导的应力。单独地,金红石和锐钛矿NPS在除了600和1200m之外的所有测试浓度的所有测试浓度下的辐射下诱导了类似的死亡率,其中金红石在UV-A下诱导较高的死亡率。在可见辐照后,二元混合物在其较低浓度和较高浓度下表现出协同效应和添加剂效果。相反,UV-A辐照证明了混合物的添加效果,除了1200M,阐明拮抗作用。数学模型证实了二元混合物的影响。聚集形式的个体NPS之间的表面相互作用在诱导二元混合物呈现的特定效果的诱导中起枢转作用。在NPS暴露时,氧化应激生物标志物尤其在可见的照射下高度增加。这些观察结果阐明了仅在某些生物标志物上仅注意到TiO2 NP的辐照和结晶作用,而不是对死亡率产生的影响。

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