Key Laboratory of Groundwater Resources and Environment of the Ministry of Education, College of New Energy and Environment, Jilin University, China.
Key Laboratory of Groundwater Resources and Environment of the Ministry of Education, College of New Energy and Environment, Jilin University, China.
J Hazard Mater. 2024 Jan 15;462:132737. doi: 10.1016/j.jhazmat.2023.132737. Epub 2023 Oct 6.
Aged microplastics (MPs) alter the interaction with heavy metals due to changes in surface properties. However, the combined toxicological effects of aged MPs on heavy metals in soil remain poorly understood. In this study, earthworms were employed as model animals to investigate the effects of aged MPs on the biotoxicity of cadmium (Cd) by simulating the exposure patterns of original and UV-aged MPs (polylactic acid (PLA) and polyethylene (PE)) with Cd. The results showed that UV-aging decreased the zeta potential and increased the specific surface area of the MPs, which enhanced the bioaccumulation of Cd and caused more severe oxidative stress to earthworms. Meanwhile, the earthworm intestines exhibited increased tissue damage, including chloragogenous tissue congestion lesions, and typhlosole damage. Furthermore, the combined exposure to UV-aged MPs and Cd enhanced the complexity of the microbial network in the earthworm gut and interfered with endocrine disruption, membrane structure, and energy metabolic pathways in earthworms. The results emphasized the need to consider the degradation of MPs in the environment. Hence, we recommend that future toxicological studies use aged MPs that are more representative of the actual environmental conditions, with the results being important for the risk assessment and management of MPs.
老化的微塑料(MPs)由于表面性质的变化而改变与重金属的相互作用。然而,土壤中老化 MPs 与重金属的联合毒理学效应仍知之甚少。在这项研究中,我们使用蚯蚓作为模型动物,通过模拟原始和紫外线老化 MPs(聚乳酸(PLA)和聚乙烯(PE)与 Cd 的暴露模式,研究老化 MPs 对镉(Cd)生物毒性的影响。结果表明,紫外线老化降低了 MPs 的表面zeta 电位并增加了比表面积,这增强了 Cd 的生物累积,并对蚯蚓造成更严重的氧化应激。同时,蚯蚓肠道表现出组织损伤增加,包括胆绿素组织充血病变和环带损伤。此外,紫外线老化 MPs 和 Cd 的联合暴露增强了蚯蚓肠道微生物网络的复杂性,并干扰了蚯蚓的内分泌紊乱、膜结构和能量代谢途径。研究结果强调需要考虑 MPs 在环境中的降解。因此,我们建议未来的毒理学研究使用更能代表实际环境条件的老化 MPs,这对于 MPs 的风险评估和管理非常重要。