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化妆品中光老化微珠上环境持久性自由基的产生通过氧化应激增强了毒性。

The generation of environmentally persistent free radicals on photoaged microbeads from cosmetics enhances the toxicity via oxidative stress.

作者信息

Chen Haibo, Jiang Yongqi, Gu Yulun, Ding Ping, Wang Chen, Pan Ruolin, Shi Chongli, Zeng Lingjun, Chen Xiaoxia, Li Hui

机构信息

Institute for Environmental Pollution and Health, School of Environmental and Chemical Engineering, Shanghai University, Shanghai 200444, China.

State Environmental Protection Key Laboratory of Environmental Pollution Health Risk Assessment, South China Institute of Environmental Sciences, Ministry of Ecology and Environment, Guangzhou 510655, China.

出版信息

Environ Int. 2023 Apr;174:107875. doi: 10.1016/j.envint.2023.107875. Epub 2023 Mar 13.

Abstract

Microbeads used in personal care products have been one of the important sources of microplastics (MPs), and little has been reported on their environmental behaviors and health risks. The characteristics of environmentally persistent free radicals (EPFRs) and the toxicity assessment of MPs (environmentally relevant concentrations) from cosmetics during photoaging remains largely unknown. In this study, the formation of EPFRs on polyethylene (PE) microbeads from facial scrubs under light irradiation and their toxicity were investigated using C. elegans as a model organism. The results suggested that light irradiation induced the generation of EPFRs, which accelerates the aging process and alters the physicochemical properties of PE microbeads. Acute exposure to PE (1 mg/L) at photoaged times of 45-60 d significantly decreased the physiological indicators (e.g., head thrashes, body bends, and brood size). The oxidative stress response and stress-related gene expression were also enhanced in nematodes. The addition of N-acetyl-l-cysteine induced significant inhibition of toxicity and oxidative stress in nematodes exposed to 45-60 d of photoaged PE. The Pearson correlation results showed that the concentration of EPFRs was significantly correlated with physiological indicators, oxidative stress, and related-genes expression in nematodes. The data confirmed that the generation of EPFRs combined with heavy metals and organics contributed to toxicity induced by photoaged PE, and oxidative stress might be involved in regulating adverse effects in C. elegans. The study provides new insight into the potential risks of microbeads released into the environment during photoaging. The findings also highlight the necessity for considering the role of EPFRs formation in evaluating the impacts of microbeads.

摘要

个人护理产品中使用的微珠一直是微塑料的重要来源之一,但其环境行为和健康风险的报道较少。在光老化过程中,来自化妆品的微塑料(环境相关浓度)的环境持久性自由基(EPFRs)特征及其毒性评估在很大程度上仍不清楚。在本研究中,以秀丽隐杆线虫为模式生物,研究了面部磨砂膏中聚乙烯(PE)微珠在光照下EPFRs的形成及其毒性。结果表明,光照诱导了EPFRs的产生,加速了老化过程,并改变了PE微珠的物理化学性质。在45 - 60天的光老化时间下,急性暴露于1mg/L的PE显著降低了生理指标(如头部摆动、身体弯曲和产卵量)。线虫的氧化应激反应和应激相关基因表达也增强。添加N-乙酰-L-半胱氨酸可显著抑制暴露于45 - 60天光老化PE的线虫的毒性和氧化应激。Pearson相关性结果表明,EPFRs的浓度与线虫的生理指标、氧化应激和相关基因表达显著相关。数据证实,EPFRs与重金属和有机物的结合导致了光老化PE诱导的毒性,氧化应激可能参与调节秀丽隐杆线虫的不良反应。该研究为光老化过程中释放到环境中的微珠的潜在风险提供了新的见解。研究结果还强调了在评估微珠影响时考虑EPFRs形成作用的必要性。

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