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Dissolved Organic Matter Modulates Algal Oxidative Stress and Membrane System Responses to Binary Mixtures of Nano-Metal-Oxides (nCeO2 nMgO and nFe3O4) and Sulfadiazine

机译:溶解的有机物调节藻类氧化应激和膜系统对纳米金属氧化物(nCeO2nMgO和nFe3O4)和磺胺嘧啶二元混合物的响应

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摘要

Joint biomarker responses, oxidative stress and membrane systems, were determined for nano-metal-oxides (nMeO, i.e., nCeO2, nMgO, and nFe3O4) and sulfadiazine (SDZ) exposed at relevant low concentrations to two freshwater microalgae Scenedesmus obliquus and Chlorella pyrenoidosa. The impacts of dissolved organic matter (DOM) on the joint biomarker responses were also investigated. Results indicated that the presence of SDZ significantly decreased the level of intercellular reactive oxygen species (ROS) in the algal cells exposed to each nMeO. Reduction of cell membrane permeability (CMP) and mitochondrial membrane potential (MMP) in the algal cells was observed when the algae were exposed to the mixture of SDZ and the nMeO. The degree of reduction of the ROS level, CMP, and MMP significantly went down with the addition of DOM to a certain extent. Changes in cellular oxidative stress and membrane function depended on the types of both nMeO and algal species. This contribution provides an insight into the hazard assessment of a mixture consisting of emerging contaminants and DOM, as they can coexist in the aquatic environment.
机译:确定了纳米金属氧化物(nMeO,即nCeO2,nMgO和nFe3O4)和磺胺嘧啶(SDZ)在较低浓度下暴露于两种淡水微藻斜Scene藻和吡喃小球藻的联合生物标志物响应,氧化应激和膜系统。还研究了溶解有机物(DOM)对联合生物标志物响应的影响。结果表明,SDZ的存在显着降低了暴露于每种nMeO的藻类细胞中细胞间活性氧(ROS)的水平。当藻类暴露于SDZ和nMeO的混合物中时,观察到藻类细胞中细胞膜通透性(CMP)和线粒体膜电位(MMP)的降低。随着DOM的增加,ROS水平,CMP和MMP的降低程度显着下降。细胞氧化应激和膜功能的变化取决于nMeO和藻类的类型。该贡献可洞悉由新兴污染物和DOM组成的混合物的危害评估,因为它们可以共存于水生环境中。

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