Key Laboratory of Bio-Inspired Smart Interfacial Science and Technology of Ministry of Education, School of Chemistry and Environment, Beihang University, Beijing, PR China.
Environ Sci Technol. 2012 Sep 18;46(18):10255-62. doi: 10.1021/es3011578. Epub 2012 Aug 27.
This study attempts to understand the impact of different shapes of an individual micro/nanomaterial on their biotoxicities to aquatic organisms. Two differently shaped Cu(2)O micro/nanocrystals (cubes and octahedrons with side lengths of 900 nm) were exposed to Daphnia magna for 72 h, afterward several antioxidant biomarkers such as reactive oxygen species (ROS), catalase (CAT), total antioxidant capacity (T-AOC), and malondialdehyde (MDA) in D. magna were measured. We demonstrated the differential influences of two crystallographic Cu(2)O nanocrystals on the antioxidant process. Specifically, octahedral Cu(2)O nanocrystals showed a higher level of oxidative stress, possibly because of its larger surface area and higher reaction activity of the octahedron. The biomarker results further showed that the oxidative stress and antioxidant mechanism process involved three stages-antioxidant response, oxidation inhibition, and antioxidant inactivation. Furthermore, the accumulation of MDA was mainly responsible for the ROS-induced toxicity.
本研究试图了解个体微/纳材料不同形状对其水生生物毒性的影响。将两种不同形状的 Cu2O 微/纳晶体(边长为 900nm 的立方体和八面体)暴露于大型溞(Daphnia magna)中 72 小时,之后测量大型溞中的几种抗氧化生物标志物,如活性氧(ROS)、过氧化氢酶(CAT)、总抗氧化能力(T-AOC)和丙二醛(MDA)。我们证明了两种结晶 Cu2O 纳米晶体对抗氧化过程的差异影响。具体来说,八面体 Cu2O 纳米晶体表现出更高水平的氧化应激,这可能是由于其更大的表面积和八面体更高的反应活性。生物标志物结果进一步表明,氧化应激和抗氧化机制过程涉及三个阶段——抗氧化反应、氧化抑制和抗氧化失活。此外,MDA 的积累主要导致 ROS 诱导的毒性。