Microplastics affect arsenic bioavailability by altering gut microbiota and metabolites in a mouse model

Microplastics exposure is a new human health crisis. Although progress in understanding health effects of microplastic exposure has been made, microplastic impacts on absorption of co-exposure toxic pollutants such as arsenic (As), i.e., oral bioavailability, remain unclear. Microplastic ingestion m...

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Veröffentlicht in:Environmental pollution (1987) 2023-05, Vol.324, p.121376-121376, Article 121376
Hauptverfasser: Chen, Shan, Yang, Jin-Lei, Zhang, Yao-Sheng, Wang, Hong-Yu, Lin, Xin-Ying, Xue, Rong-Yue, Li, Meng-Ya, Li, Shi-Wei, Juhasz, Albert L., Ma, Lena Q., Zhou, Dong-Mei, Li, Hong-Bo
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Sprache:eng
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Zusammenfassung:Microplastics exposure is a new human health crisis. Although progress in understanding health effects of microplastic exposure has been made, microplastic impacts on absorption of co-exposure toxic pollutants such as arsenic (As), i.e., oral bioavailability, remain unclear. Microplastic ingestion may interfere As biotransformation, gut microbiota, and/or gut metabolites, thereby affecting As oral bioavailability. Here, mice were exposed to arsenate (6 μg As g−1) alone and in combination with polyethylene particles of 30 and 200 μm (PE-30 and PE-200 having surface area of 2.17 × 103 and 3.23 × 102 cm2 g−1) in diet (2, 20, and 200 μg PE g−1) to determine the influence of microplastic co-ingestion on arsenic (As) oral bioavailability. By determining the percentage of cumulative As consumption recovered in urine of mice, As oral bioavailability increased significantly (P 
ISSN:0269-7491
1873-6424
DOI:10.1016/j.envpol.2023.121376