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毒理学分析和代谢组学分析,以评估新鲜和老化的微塑料及纳米塑料对SH-SY5Y人神经母细胞瘤细胞的影响。

Toxicological assays and metabolomic profiling to evaluate the effects of virgin and aged micro- and nano- polystyrene plastics in SH-SY5Y human neuroblastoma cells.

作者信息

Laganà Antonio, Billè Barbara, Visalli Giuseppa, Facciolà Alessio, Cappello Tiziana, Maisano Maria, Di Pietro Angela

机构信息

Department of Biomedical and Dental Sciences and Morphofunctional Imaging, University of Messina, 98125 Messina, Italy.

Department of Chemical, Biological, Pharmaceutical and Environmental Sciences, University of Messina, 98166 Messina, Italy.

出版信息

Sci Total Environ. 2025 May 1;975:179262. doi: 10.1016/j.scitotenv.2025.179262. Epub 2025 Mar 29.

Abstract

In the contemporary era, named plasticene, the extensive presence of micro- and nanoplastics (MPs/NPs) in all environmental matrices constitutes a global challenge that impacts on living beings, including humans. Regardless of the route of exposure, the internalized MPs/NPs may reach the central nervous system and cause cytotoxicity. The effects of nano- and micro- polystyrene particles (n/mPS; 100 μg/mL), both in virgin (v) and home oxidized (ox) form, were assessed on the human neuroblastoma cells SH-SY5Y, treated for 24 h, using toxicological endpoints and H NMR-based metabolomics. A pro-oxidant effect was shown by reactive oxygen species (ROS) overproduction, present in virgin and oxidized particles, albeit 27.6 % and 29.5 % higher in ox-nPS and ox-mPS. DNA damage, mitochondrial impairment, and lipid peroxidation were found to be directly related to particle size and oxidation state (v-nPS < ox-nPS < v-mPS < ox-mPS). The metabolic changes induced by v- and ox- n/mPS in neuroblastoma cells involved the amino acid and energy metabolism, osmoregulation, oxidative stress, and neurotransmission. Interestingly, it was highlighted the ability of SH-SY5Y cells exposed to ox-nPS to counteract more effectively oxidative damage by reshaping metabolic pathways. Overall, the combination of toxicological assays and metabolic profiling confirmed the harmful effects induced by n/mPS to SH-SY5Y cells, always enhanced by the in home-oxidized counterpart, that led to cytotoxic effects and changes in cell metabolism. Despite a variable capacity for cellular homeostasis, the results shed light on the potential risks that these ubiquitous xenobiotics pose to human health, acting also as "triggers" for neurodegenerative diseases.

摘要

在当代所谓的“橡皮泥时代”,微塑料和纳米塑料(MPs/NPs)在所有环境基质中的广泛存在构成了一项全球性挑战,对包括人类在内的生物产生影响。无论暴露途径如何,内化的 MPs/NPs 都可能到达中枢神经系统并引起细胞毒性。使用毒理学终点和基于核磁共振氢谱(H NMR)的代谢组学方法,评估了原始态(v)和原位氧化态(ox)的纳米和微米聚苯乙烯颗粒(n/mPS;100 μg/mL)对人神经母细胞瘤 SH-SY5Y 细胞处理 24 小时后的影响。原始态和氧化态颗粒均表现出活性氧(ROS)过量产生的促氧化作用,尽管氧化态纳米聚苯乙烯(ox-nPS)和氧化态微米聚苯乙烯(ox-mPS)中的 ROS 分别高出 27.6%和 29.5%。发现 DNA 损伤、线粒体损伤和脂质过氧化与颗粒大小和氧化状态直接相关(v-nPS < ox-nPS < v-mPS < ox-mPS)。原始态和氧化态 n/mPS 在神经母细胞瘤细胞中诱导的代谢变化涉及氨基酸和能量代谢、渗透调节、氧化应激和神经传递。有趣的是,研究强调了暴露于氧化态纳米聚苯乙烯的 SH-SY5Y 细胞通过重塑代谢途径更有效地对抗氧化损伤的能力。总体而言,毒理学测定和代谢谱分析相结合证实了 n/mPS 对 SH-SY5Y 细胞的有害作用,原位氧化态的 n/mPS 总是会增强这种作用,从而导致细胞毒性效应和细胞代谢变化。尽管细胞内稳态能力存在差异,但这些结果揭示了这些普遍存在的外源性物质对人类健康构成的潜在风险,它们还可能作为神经退行性疾病的“触发因素”。

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