氢键介导的相互作用是镉增强化学转化聚苯乙烯微塑料膜毒性的基础。

Journal of hazardous materials Pub Date : 2024-10-05 Epub Date: 2024-08-22 DOI:10.1016/j.jhazmat.2024.135562
Wanqing Zhao, Tong Ye, Jianwen Zhou, Xuan Zhang, Ke Wang, Hong Zhang, Jiansheng Cui, Shuping Zhang, Lixin Wang
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摘要

近年来,全球对微塑料污染及其对人类健康影响的关注与日俱增。此外,重金属的共存可能会显著改变微塑料的理化特性,从而有可能放大其整体毒性--这一点目前还不太清楚。在这项研究中,我们重点研究了经过镉(Cd)预处理的改性聚苯乙烯微塑料(PS-MPs)的膜毒性。我们的研究结果表明,镉预处理后的 PS-MPs 会加剧其毒性效应,包括降低膜的完整性和改变模拟脂膜巨型单纤毛泡(GUVs)中的相流动性,以及提高红细胞和巨噬细胞的膜渗透性、蛋白质损伤和脂质过氧化。从机理上讲,这些增加的膜毒性可部分归因于镉预处理过的 PS-MPs 表面粗糙度和亲水性的改变,以及 PS-MPs 和脂质双分子层之间的相互作用。值得注意的是,氢键是 PS-MPs 与脂质双分子层相互作用增强的一个重要机制。
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Hydrogen bonding-mediated interaction underlies the enhanced membrane toxicity of chemically transformed polystyrene microplastics by cadmium.

The global attention on microplastic pollution and its implications for human health has grown in recent years. Additionally, the co-existence of heavy metals may significantly alter microplastics' physicochemical characteristics, potentially amplifying their overall toxicity-a facet that remains less understood. In this study, we focused the membrane toxicity of modified polystyrene microplastics (PS-MPs) following cadmium (Cd) pretreatment. Our findings revealed that Cd-pretreated PS-MPs exacerbated their toxic effects, including diminished membrane integrity and altered phase fluidity in simulated lipid membrane giant unilamellar vesicles (GUVs), as well as heightened membrane permeability, protein damage, and lipid peroxidation in red blood cells and macrophages. Mechanistically, these augmented membrane toxicities can be partially ascribed to modifications in the surface roughness and hydrophilicity of Cd-pretreated PS-MPs, as well as to interactions between PS-MPs and lipid bilayers. Notably, hydrogen bonds emerged as a crucial mechanism underlying the enhanced interaction of PS-MPs with lipid bilayers.

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