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Aging Changes the Vector Effects of Various Microplastics on the Bioaccumulation of Decabromodiphenyl Ethane in Earthworms

Journal of Agricultural and Food Chemistry 2025 Score: 48 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Yanna Han, Yanna Han, Yanna Han, Yanna Han, Yanna Han, Zhiyong Zhang Mengru Fu, Mengru Fu, Wei Zhang, Yanna Han, Mengru Fu, Yanna Han, Yanna Han, Yanna Han, Mengru Fu, Shanqi Zhou, Mengru Fu, Mengru Fu, Mengru Fu, Mengru Fu, Shanqi Zhou, Jiaqi Tan, Tianzi Liu, Cheng Peng, Cheng Peng, Cheng Peng, Mengru Fu, Zhiyong Zhang Mengru Fu, Mengru Fu, Wei Zhang, Wei Zhang, Mengru Fu, Jiaqi Tan, Shanqi Zhou, Mengru Fu, Wei Zhang, Wei Zhang, Zhiyong Zhang Shanqi Zhou, Shanqi Zhou, Mengru Fu, Shanqi Zhou, Shanqi Zhou, Shanqi Zhou, Shanqi Zhou, Zhihua Qiao, Zhihua Qiao, Cheng Peng, Zhiyong Zhang Tianzi Liu, Shanqi Zhou, Zhiyong Zhang Cheng Peng, Cheng Peng, Tianzi Liu, Wei Zhang, Mengru Fu, Mengru Fu, Mengru Fu, Mengru Fu, Zhihua Qiao, Zhihua Qiao, Wei Zhang, Zhihua Qiao, Zhihua Qiao, Zhihua Qiao, Shanqi Zhou, Shanqi Zhou, Tianzi Liu, Cheng Peng, Cheng Peng, Wei Zhang, Yanna Han, Shanqi Zhou, Shanqi Zhou, Shanqi Zhou, Zhihua Qiao, Zhihua Qiao, Shanqi Zhou, Tianzi Liu, Cheng Peng, Cheng Peng, Cheng Peng, Zhihua Qiao, Wei Zhang, Wei Zhang, Zhihua Qiao, Yanna Han, Cheng Peng, Cheng Peng, Cheng Peng, Wei Zhang, Wei Zhang, Wei Zhang, Cheng Peng, Jiaqi Tan, Cheng Peng, Zhiyong Zhang Cheng Peng, Zhiyong Zhang Zhiyong Zhang Zhiyong Zhang Zhiyong Zhang

Summary

Researchers examined how UV aging of polyethylene and polylactic acid microplastics changes their ability to carry the flame retardant DBDPE into earthworm intestines, finding that aged biodegradable PLA-MPs increased bioaccumulation by 15% while aged PE-MPs decreased it by 21%, demonstrating polymer-specific vector effects.

The widespread use and nonstandard disposal of plastic products led to inevitable copollution of microplastics (MPs) and novel brominated flame retardants (NBFRs). However, gaps remain in understanding the influence of aged MPs on the bioaccumulation and biotoxicity of NBFRs in terrestrial environments. We assessed the effects of UV-aged MPs derived from poly(lactic acid) (PLA) and polyethylene (PE) on the bioaccumulation of decabromodiphenyl ethane (DBDPE) in a soil-earthworm system. After 28-d exposure, DBDPE bioaccumulation in the intestine of earthworms under coexposure (0.1% or 1% MPs in 10 mg kg<sup>-1</sup> DBDPE soil) exhibited better impacts of MPs than that in the whole tissue. Overall, the aging of biodegradable PLA-MPs promoted DBDPE bioaccumulation in the intestine of earthworms through ingestion and thus reduced DBDPE attachment on the aged PLA-MPs in soil, which relied on their increased adsorption to DBDPE. Similarly, the aging of PE-MPs reduced DBDPE bioaccumulation in the intestine due to the decreased adsorption ability to DBDPE. Specifically, aged PLA-MPs increased DBDPE in the intestine by 15%, while aged PE-MPs decreased it by 21%. Aged PE-MPs formed stable biofilms in soil with strong binding to DBDPE, thereby reducing DBDPE bioaccumulation in earthworms but exacerbating its migration risks. This reflected the "vector effect" of aged MPs on DBDPE bioaccumulation in earthworms with ingestion. Furthermore, SR-FTIR confirmed that MPs remained in tissues and DBDPE was loaded on the MPs' surface in the intestine, indirectly verifying the vector effect of MPs. This work highlights discrepant risks between biobased degradable and fuel-based hydrocarbon MPs in HOC-contaminated soil in realistic environmental scenarios.

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