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贻贝中稀土元素钕的毒理学效应。

Toxicological effects of the rare earth element neodymium in Mytilus galloprovincialis.

机构信息

Departamento de Biologia & CESAM, Universidade de Aveiro, 3810-193, Aveiro, Portugal.

Departamento de Biologia & CESAM, Universidade de Aveiro, 3810-193, Aveiro, Portugal.

出版信息

Chemosphere. 2020 Apr;244:125457. doi: 10.1016/j.chemosphere.2019.125457. Epub 2019 Nov 23.

Abstract

The wide range of applications of rare earth elements (REE) is leading to their occurrence in worldwide aquatic environments. Among the most popular REE is Neodymium (Nd), being widely used in permanent magnets, lasers, and glass additives. Neodymium-iron-boron (NdFeB) magnets is the main application of Nd since they are used in electric motors, hard disk drives, speakers and generators for wind turbines. Recent studies have already evaluated the toxic potential of different REE, but no information is available on the effects of Nd towards marine bivalves. Thus, the present study evaluated the biochemical alterations caused by Nd in the mussel Mytilus galloprovincialis exposed to this element for 28 days. The results obtained clearly demonstrated that Nd was accumulated by mussels, leading to mussel's metabolic capacity increase and GLY expenditure, in an attempt to fuel up defense mechanisms. Antioxidant and biotransformation defenses were insufficient in the elimination of ROS excess, resulting from the presence of Nd and increased electron transport system activity, which caused cellular damages (measured by lipid peroxidation) and loss of redox balance (assessed by the ratio between reduced and oxidized glutathione). The results obtained clearly highlight the potential toxicity of REEs and, in particular of Nd, with impacts at cellular level, which may have consequences in mussel's survival, growth and reproduction, affecting mussel's population.

摘要

稀土元素(REE)的广泛应用导致它们在全球水生环境中出现。在最受欢迎的 REE 中,钕(Nd)被广泛用于永磁体、激光器和玻璃添加剂。钕铁硼(NdFeB)磁铁是 Nd 的主要应用,因为它们用于电动汽车、硬盘驱动器、扬声器和风力涡轮机的发电机。最近的研究已经评估了不同 REE 的毒性潜力,但没有关于 Nd 对海洋双壳类动物影响的信息。因此,本研究评估了在 28 天内暴露于这种元素的贻贝 Mytilus galloprovincialis 中由 Nd 引起的生化变化。研究结果清楚地表明,Nd 被贻贝积累,导致贻贝代谢能力增加和 GLY 支出增加,试图为防御机制提供燃料。抗氧化和生物转化防御不足以消除来自 Nd 和增加的电子传递系统活性的过量 ROS,导致细胞损伤(通过脂质过氧化测量)和氧化还原平衡丧失(通过还原和氧化谷胱甘肽的比例评估)。研究结果清楚地强调了 REE 的潜在毒性,特别是 Nd 的毒性,对细胞水平有影响,这可能对贻贝的生存、生长和繁殖产生影响,从而影响贻贝的种群。

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