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聚乳酸(PLA)微塑料对枝角类动物大型溞的多层次毒性评估。

Multi-level toxicity assessment of polylactic acid (PLA) microplastics on the cladoceran Daphnia magna.

机构信息

University of Milan, Department of Environmental Science and Policy, via Celoria 26, I-20133 Milan, Italy.

University of Milan, Laboratory of Materials and Polymers (LaMPo), Department of Chemistry, via Golgi 19, I-20133 Milan, Italy.

出版信息

Aquat Toxicol. 2024 Jul;272:106966. doi: 10.1016/j.aquatox.2024.106966. Epub 2024 May 21.

Abstract

The accumulation of plastics waste in the environment has raised a worrisome concern, moving the society to seek out for sustainable solutions, such as the transition from the use of fossil-based, conventional plastics to bioplastics (BPs). However, once in the environment bioplastics have the same probability to accumulate and experience weathering processes than conventional plastics, leading to the formation of microplastics (MPs). However, to date the information on the potential toxicity of MPs originated from the weathering of bioplastics is limited. Thus, this study aimed at investigating the adverse effects induced by the exposure to MPs made of a bioplastic polymer, the polylactic acid (PLA), towards the freshwater cladoceran Daphnia magna. Organisms were exposed for 21 days to three concentrations (0.125 µg/mL, 1.25 µg/mL and 12.5 µg/mL) of PLA microplastics (hereafter PLA-MPs). A multi-level approach was performed to investigate the potential effects through the biological hierarchy, starting from the sub-individual up to the individual level. At the sub-individual level, changes in the oxidative status (i.e., the amount of reactive oxygen species and the activity of antioxidant and detoxifying enzymes) and oxidative damage (i.e., lipid peroxidation) were explored. Moreover, the total caloric content as well as the content of protein, carbohydrate and lipid content assess were used to investigate the effects on energy reserves. At individual level the changes in swimming activity (i.e., distance moved and swimming speed) were assessed. Our results showed that the exposure to PLA-MPs induced a slight modulation in the oxidative status and energy reserves, leading to an increase in swimming behavior of treated individuals compared to control conspecifics. These results suggest that the exposure to MPs made of a bioplastic polymer can induce adverse effects similar to those caused by conventional polymers.

摘要

塑料废物在环境中的积累引起了人们的担忧,促使社会寻求可持续的解决方案,例如从使用基于化石的传统塑料向生物塑料 (BPs) 转变。然而,一旦进入环境,生物塑料与传统塑料一样有积累和经历风化过程的可能性,导致微塑料 (MPs) 的形成。然而,迄今为止,关于生物塑料风化产生的 MPs 潜在毒性的信息有限。因此,本研究旨在研究暴露于由生物塑料聚合物聚乳酸 (PLA) 制成的 MPs 对淡水枝角类动物大型溞 (Daphnia magna) 产生的不良影响。生物在三个浓度 (0.125 µg/mL、1.25 µg/mL 和 12.5 µg/mL) 的 PLA 微塑料 (以下简称 PLA-MPs) 下暴露 21 天。采用多层次方法从亚个体到个体水平,通过生物学层次来研究潜在影响。在亚个体水平上,研究了氧化状态(即活性氧物质的数量和抗氧化和解毒酶的活性)和氧化损伤(即脂质过氧化)的变化。此外,还使用总热量含量以及蛋白质、碳水化合物和脂质含量评估来研究对能量储备的影响。在个体水平上,评估了游泳活动(即移动距离和游泳速度)的变化。我们的结果表明,暴露于 PLA-MPs 会轻微调节氧化状态和能量储备,导致处理个体的游泳行为与对照同物种相比有所增加。这些结果表明,暴露于由生物塑料聚合物制成的 MPs 可能会引起类似于传统聚合物引起的不良影响。

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