Comprehensive in vitro polymer type, concentration, and size correlation analysis to microplastic toxicity and inflammation

化学 毒性 粒径 生物物理学 细胞内 体内 聚苯乙烯 氧化应激 赫拉 活力测定 体外 聚合物 生物化学 生物 有机化学 生物技术 物理化学
作者
Walison Augusto da Silva Brito,Debora Singer,Lea Miebach,Fariba Saadati,Kristian Wende,Anke Schmidt,Sander Bekeschus
出处
期刊:Science of The Total Environment [Elsevier BV]
卷期号:854: 158731-158731 被引量:50
标识
DOI:10.1016/j.scitotenv.2022.158731
摘要

The ubiquitous nature of microplastic particles (MP) is a growing environmental and ecological concern due to their impact on aquatic and terrestrial systems and potentially on human health. The potential impact on human health may be due to MP daily exposure by several routes, but little is known about the cellular effects. Previous in vitro and in vivo studies have described inflammation, oxidative stress, and metabolic disruption upon plastic exposure, while the effect of individual plastic parameters is not fully unraveled. To this end, we investigated plastic exposure to different polymer types, sizes, and concentrations in three human cell lines (A549, HEK293, and HeLa). Particles were polystyrene (PS) or polymethylmethacrylate (PMMA) in three sizes and concentrations, and amine-modified PS served as positive control. After MP size validation using dynamic light scattering, a high-throughput high-content imaging-based and algorithm-driven multi-z-stack analysis was established to quantify intracellular fluorescent particle accumulation in 3D objects and cell maximum intensity projections. MP uptake correlated with concentration and for PS with size (1.040 μm), while for PMMA it was maximal for 400 nm MP. Uptake increased in HEK cells independent of MP parameters. Except for positive controls, no major effect on metabolic activity, viability, and cell cycle was observed, while intracellular thiol content and cytokine secretion were affected to a considerable extent. Interestingly, particle uptake was correlated significantly with particle size and concentration, underlining the dependence of MP parameters on biological effects.
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