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Use of a Dual-Labeled Bioaccumulation Method to Quantify Microplastic Vector Effects for Hydrophobic Organic Contaminants in Soil

ACS Environmental Au 2023 14 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 50 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Yuanze Sun, Yuanze Sun, Yuanze Sun, Yuanze Sun, Yuanze Sun, Jie Wang Jie Wang Jie Wang Yuanze Sun, Yuanze Sun, Yuanze Sun, Yuanze Sun, Yuanze Sun, Yuanze Sun, Yuanze Sun, Jie Wang Jie Wang Jie Wang Jie Wang Jie Wang Jie Wang Jie Wang Yuanze Sun, Yuanze Sun, Yuanze Sun, Yuanze Sun, Yuanze Sun, Yuanze Sun, Yuanze Sun, Yuanze Sun, Yuanze Sun, Yuanze Sun, Yuanze Sun, Yuanze Sun, Yuanze Sun, Yuanze Sun, Yuanze Sun, Yuanze Sun, Yuanze Sun, Yuanze Sun, Yuanze Sun, Yuanze Sun, Jie Wang Yuanze Sun, Jie Wang Yuanze Sun, Yuanze Sun, Jie Wang Jianguo Tao, Mochen Wu, Mochen Wu, Mochen Wu, Jun Li, Jianghao Ji, Yuanze Sun, Yuanze Sun, Yuanze Sun, Mochen Wu, Mochen Wu, Mochen Wu, Jianghao Ji, Yuanze Sun, Jianghao Ji, Yuanze Sun, Yuanze Sun, Yuanze Sun, Yuanze Sun, Mochen Wu, Yuanze Sun, Yuanze Sun, Mochen Wu, Jay Gan, Jianghao Ji, Yuanze Sun, Yuanze Sun, Jie Wang Jay Gan, Yuanze Sun, Jianguo Tao, Jie Wang Mochen Wu, Yuanze Sun, Yuanze Sun, Yuanze Sun, Jie Wang Jianguo Tao, Mochen Wu, Mochen Wu, Mochen Wu, Mochen Wu, Yuanze Sun, Mochen Wu, Jie Wang Jay Gan, Yuanze Sun, Mochen Wu, Jie Wang Mochen Wu, Jie Wang Yuanze Sun, Yuanze Sun, Jie Wang Jie Wang Jay Gan, Yuanze Sun, Jie Wang Jie Wang Jie Wang Jianguo Tao, Jay Gan, Jianguo Tao, Jianguo Tao, Jianguo Tao, Jianguo Tao, Jie Wang Jie Wang Jie Wang Jie Wang Jianguo Tao, Jay Gan, Jay Gan, Jun Li, Jie Wang Jie Wang Jie Wang Jie Wang Jie Wang Jie Wang Jay Gan, Jay Gan, Jay Gan, Jay Gan, Jie Wang Jay Gan, Jie Wang Jie Wang Jie Wang Jun Li, Jie Wang Jie Wang Jie Wang Jie Wang Jay Gan, Jie Wang Jie Wang Jay Gan, Jie Wang Jie Wang Jie Wang

Summary

Researchers developed a dual-labeled method using isotope-tagged contaminants on microplastics to directly quantify the vector effect of microplastics for hydrophobic organic contaminants in soil, finding that earthworms can assimilate pollutants from both soil and microplastic sources.

Polymers
Body Systems
Study Type In vivo

Although in vitro simulation and in vivo feeding experiments are commonly used to evaluate the carrier role of microplastics in the bioaccumulation of toxic chemicals, there is no direct method for quantitatively determining their vector effect. In this study, we propose a dual-labeled method based on spiking unlabeled hydrophobic organic contaminants (HOCs) into soils and spiking their respective isotope-labeled reference compounds into microplastic particles. The bioaccumulation of the unlabeled and isotope-labeled HOCs in <i>Eisenia fetida</i> earthworms was compared. Earthworms can assimilate both unlabeled and isotope-labeled HOCs via three routes: dermal uptake, soil ingestion, and microplastic ingestion. After 28 days of exposure, the relative fractions of bioaccumulated isotope-labeled HOCs in the soil treated with 1% microplastics ranged from 15.5 to 55.8%, which were 2.9-47.6 times higher than those in the soils treated with 0.1% microplastics. Polyethylene microplastics were observed to have higher relative fractions of bioaccumulated isotope-labeled HOCs, potentially because of their surface hydrophobicity and amorphous rubbery state. The general linear models suggested that the vector effects were mainly due to the microplastic concentration, followed by polymer properties and HOC hydrophobicity. This proposed method and the derived empirical formula contribute to a more comprehensive understanding of the vector effects of microplastics for HOC bioaccumulation.

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