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Nanoplastics and Arsenic Co-Exposures Exacerbate Oncogenic Biomarkers under an In Vitro Long-Term Exposure Scenario

International Journal of Molecular Sciences 2022 41 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 55 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Josefa Domenech, Josefa Domenech, Josefa Domenech, Ricard Marcos, Irene Barguilla, Laura Rubio, Irene Barguilla, Irene Barguilla, Laura Rubio, Josefa Domenech, Josefa Domenech, Josefa Domenech, Alba Hernández Josefa Domenech, Josefa Domenech, Josefa Domenech, Laura Rubio, Alba Hernández Alba Hernández Irene Barguilla, Irene Barguilla, Josefa Domenech, Ricard Marcos, Ricard Marcos, Alba Hernández Laura Rubio, Laura Rubio, Irene Barguilla, Laura Rubio, Ricard Marcos, Irene Barguilla, Josefa Domenech, Josefa Domenech, Josefa Domenech, Alba Hernández Alba Hernández Laura Rubio, Alba Hernández Laura Rubio, Alba Hernández Alba Hernández Alba Hernández Alba Hernández Alba Hernández Alba Hernández Alba Hernández Alba Hernández Alba Hernández Alba Hernández Alba Hernández Ricard Marcos, Ricard Marcos, Ricard Marcos, Ricard Marcos, Laura Rubio, Alba Hernández Ricard Marcos, Ricard Marcos, Ricard Marcos, Ricard Marcos, Ricard Marcos, Ricard Marcos, Ricard Marcos, Ricard Marcos, Ricard Marcos, Alba Hernández Alba Hernández Ricard Marcos, Ricard Marcos, Ricard Marcos, Ricard Marcos, Ricard Marcos, Ricard Marcos, Alba Hernández Alba Hernández Alba Hernández Ricard Marcos, Laura Rubio, Alba Hernández Alba Hernández Alba Hernández Alba Hernández Ricard Marcos, Ricard Marcos, Ricard Marcos, Ricard Marcos, Alba Hernández Irene Barguilla, Alba Hernández Alba Hernández Alba Hernández Alba Hernández Irene Barguilla, Ricard Marcos, Ricard Marcos, Laura Rubio, Ricard Marcos, Ricard Marcos, Alba Hernández Alba Hernández Ricard Marcos, Laura Rubio, Ricard Marcos, Ricard Marcos, Ricard Marcos, Alba Hernández Irene Barguilla, Alba Hernández Alba Hernández Alba Hernández Ricard Marcos, Alba Hernández Ricard Marcos, Alba Hernández Irene Barguilla, Ricard Marcos, Ricard Marcos, Alba Hernández Alba Hernández Alba Hernández Alba Hernández Alba Hernández Ricard Marcos, Ricard Marcos, Laura Rubio, Alba Hernández Ricard Marcos, Laura Rubio, Alba Hernández Alba Hernández Ricard Marcos, Laura Rubio, Irene Barguilla, Alba Hernández Alba Hernández Alba Hernández Alba Hernández Ricard Marcos, Ricard Marcos, Alba Hernández Alba Hernández

Summary

Researchers examined the combined effects of polystyrene nanoplastics and arsenic on oncogenic biomarkers using an in vitro long-term exposure model. The study found that co-exposure to nanoplastics and arsenic exacerbated oncogenic biomarker responses compared to individual exposures. The findings suggest that nanoplastics may act as carriers for arsenic, potentially modulating its uptake and amplifying harmful effects in cellular systems.

Polymers
Models
Study Type In vitro

The increasing accumulation of plastic waste and the widespread presence of its derivatives, micro- and nanoplastics (MNPLs), call for an urgent evaluation of their potential health risks. In the environment, MNPLs coexist with other known hazardous contaminants and, thus, an interesting question arises as to whether MNPLs can act as carriers of such pollutants, modulating their uptake and their harmful effects. In this context, we have examined the interaction and joint effects of two relevant water contaminants: arsenic and polystyrene nanoplastics (PSNPLs), the latter being a model of nanoplastics. Since both agents are persistent pollutants, their potential effects have been evaluated under a chronic exposure scenario and measuring different effect biomarkers involved in the cell transformation process. Mouse embryonic fibroblasts deficient for oxidative DNA damage repair mechanisms, and showing a cell transformation status, were used as a sensitive cell model. Such cells were exposed to PSNPLs, arsenic, and a combination PSNPLs/arsenic for 12 weeks. Interestingly, a physical interaction between both pollutants was demonstrated by using TEM/EDX methodologies. Results also indicate that the continuous co-exposure enhances the DNA damage and the aggressive features of the initially transformed phenotype. Remarkably, co-exposed cells present a higher proportion of spindle-like cells within the population, an increased capacity to grow independently of anchorage, as well as enhanced migrating and invading potential when compared to cells exposed to arsenic or PSNPLs alone. This study highlights the need for further studies exploring the long-term effects of contaminants of emerging concern, such as MNPLs, and the importance of considering the behavior of mixtures as part of the hazard and human risk assessment approaches.

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