Photolytic degradation elevated the toxicity of polylactic acid microplastics to developing zebrafish by triggering mitochondrial dysfunction and apoptosis

微塑料 聚乳酸 斑马鱼 降级(电信) 毒性 细胞凋亡 氧化应激 生物累积 化学 活性氧 致癌物 环境化学 药理学 细胞生物学 生物 生物化学 基因 聚合物 有机化学 电信 计算机科学
作者
Xingli Zhang,Mengli Xia,Xiaojuan Su,Peng Yuan,Xiaokang Li,Chunyu Zhou,Zepeng Wan,Wei Zou
出处
期刊:Journal of Hazardous Materials [Elsevier]
卷期号:413: 125321-125321 被引量:82
标识
DOI:10.1016/j.jhazmat.2021.125321
摘要

Biodegradable plastics (BPs), as alternatives to conventional plastics, are increasingly consumed, but pose potential threats to aquatic ecosystems. In addition, the impact of natural aging on the toxicity of BPs is poorly understood. In this study, the photodegradation of polylactic acid (PLA, a typical BP) microplastics (MPs) under ultraviolet irradiation in water for 90 days was investigated, and the toxicities of virgin and degraded PLA to infantile zebrafish were compared. The results revealed that the size of MPs was reduced from ~25.56 to ~11.22 µm after degradation and nanoparticles were generated with a maximum yield of 7.13%. The formation of abundant oxygen–containing groups (i.e. C˭O and C–O–C) improved the hydrophilia and stability of MPs. Compared with pristine PLA, the efflux and detoxification of degraded PLA mediated by ABC transporters and P450 enzymes were slower, leading to higher bioaccumulation and skeletal development inhibition of zebrafish. Further, oxidative stress–triggered mitochondrial structural damage, depolarization, fission inhibition, and apoptosis were identified as crucial mechanisms underlying the elevated toxicity of PLA after degradation. These findings highlight the importance and necessity of considering natural degradation of BPs and related toxicity, which poses great implications for risk assessment and management of BPs.
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