Department of Marine Science, Incheon National University, Incheon 22012, Republic of Korea.
Department of Engine Researach, Korea Institute of Machinery and Materials, Daejeon 34103, Republic of Korea.
J Hazard Mater. 2022 Sep 15;438:129417. doi: 10.1016/j.jhazmat.2022.129417. Epub 2022 Jun 21.
Tire-wear particles (TWPs) are potential source of microplastic (MP) pollution in marine environments. Although the hazardous effects of MPs on marine biota have received considerable attention, the toxicity of TWPs and associated leachates remain poorly understood. Here, to assess the toxicity of TWP leachate and the underlying mechanisms of toxicity, the phenotypic and transcriptomic responses of the rotifer Brachionus plicatilis were assessed with chemistry analysis of a TWP leachate. Although acute toxicity was induced, and a variety of metals and polyaromatic hydrocarbons were detected in the leachate, levels were below the threshold for acute toxicity. The results of particle analysis suggest that the acute toxicity observed in our study is the result of a toxic cocktail of micro- and/or nano-sized TWPs and other additives in TWP leachate. The adverse effects of TWP leachate were associated with differential expression of genes related to cellular processes, stress response, and impaired metabolism, with further oxidative stress responses. Our results imply that TWPs pose a greater threat to marine biota than other plastic particles as they constitute a major source of nano- and microplastics that have synergistic effects with the additives contained in TWP leachate.
轮胎磨损颗粒(Tire-wear particles,TWPs)是海洋环境中微塑料(Microplastics,MPs)污染的潜在来源。尽管 MPs 对海洋生物群的危害作用已受到广泛关注,但 TWPs 及其相关浸出物的毒性仍知之甚少。在这里,为了评估 TWP 浸出物的毒性及其潜在的毒性机制,我们利用 TWP 浸出物的化学分析评估了褶皱臂尾轮虫(Brachionus plicatilis)的表型和转录组反应。尽管急性毒性被诱发,并且浸出物中检测到多种金属和多环芳烃,但水平低于急性毒性的阈值。颗粒分析的结果表明,我们研究中观察到的急性毒性是 TWP 浸出物中微/纳米尺寸的 TWPs 和其他添加剂的有毒混合物的结果。TWP 浸出物的不良影响与与细胞过程、应激反应和受损代谢相关的基因的差异表达有关,并伴有进一步的氧化应激反应。我们的研究结果表明,TWPs 对海洋生物群构成的威胁大于其他塑料颗粒,因为它们是纳米和微塑料的主要来源,与 TWP 浸出物中所含的添加剂具有协同作用。