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◆ Toxicology2026-09-12

UVB-aged polystyrene microplastics induce enhanced stress responses in human proximal tubular cells.

Sebastiano La Maestra, Linda Ferrea, Noemi Rumeo, Mario Passalacqua, Pasquale Esposito, Nicoletta Mancianti, Edoardo La Porta, Daniela Verzola

一句话结论

Exposed human renal proximal tubular cells (HK-2) to 1µm polystyrene MPs in virgin (MPsV) and UVB-oxidised (MPsOx) forms at 25 and 50µg/mL and evaluated multiple endpoints related to cellular stress and genomic stability. UVB-aged MPsOx generally elicited stronger effects than MPsV, including increased oxidative stress, lysosome-associated cellular responses, genomic instability, stress-responsive molecular pathway activation, and cytoskeletal perturbation. Environmentally aged polystyrene MPs elicit more evident cellular stress responses than their virgin counterparts in HK-2 cells.

原始摘要(原文)
Microplastics (MPs) are increasingly detected in human biological matrices, raising concerns about their potential systemic effects, including on the kidney. However, the cellular responses of renal tubular epithelium to MPs and the role of environmental aging processes in modulating their biological activity remain poorly defined. Under environmental conditions, MPs undergo photo-oxidative transformations that alter their surface chemistry and may influence their interactions with biological systems. In this study, we investigated the effects of 1µm polystyrene MPs in virgin (MPsV) and UVB-oxidised (MPsOx) forms in a human renal proximal tubular cell line (HK-2). Cells were exposed to MPs (25 and 50µg/mL), and multiple endpoints related to cellular stress and genomic stability were evaluated, including lysosome-associated responses, oxidative damage, DNA integrity, micronucleus formation, DNA-content distribution profiles as an indirect proxy of proliferative status, and cytoskeletal organisation. Exposure to MPs induced measurable stress responses in tubular cells, with oxidised particles generally eliciting stronger effects than MPsV. These responses were consistent with increased oxidative stress, lysosome-associated cellular responses, genomic instability-associated alterations, activation of stress-responsive molecular pathways, and cytoskeletal perturbation. Collectively, these findings indicate that environmentally aged polystyrene MPs elicit more evident cellular stress responses than their virgin counterparts in HK-2 cells. Our results highlight the importance of incorporating environmentally transformed MPs into toxicological testing frameworks to improve the biological relevance of hazard assessment.
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UVB-aged polystyrene microplastics induce enhanced stress responses in human proximal tubular cells. — 科研速览 Science Skim