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December 5, 2025Environmental Science & Technology3 citations

Fate of Bisphenol AF (BPAF) in Soil-Earthworm System: Dual Role of Bioaccumulation and Biotransformation

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XGXiaoran GuoXWXuan WuXYXiaoming Yun

Key Points

  • Bioaccumulation of total BPAF-derived residues was 6.3-fold higher than extractable parent BPAF in earthworms.
  • The dominant transformation product in earthworms was the monosulfate conjugate of BPAF, a novel finding in soil animals.
  • Assessment using radiotracer methods showed earthworms promoted both accumulation and detoxification processes for BPAF in soil systems.
  • These processes highlight the dual role of earthworms, affecting both dissipation and persistence of BPAF in terrestrial environments.

Abstract

Bisphenol AF (BPAF) contamination in soil from plastic and rubber use is widespread, yet its bioaccumulation and biotransformation in terrestrial invertebrates and its effects on the fate of BPAF in soil remain unknown. Here, we used 14C-radiotracer to study the accumulation, distribution, metabolism, and excretion of BPAF in the geophagous earthworm Metaphire guillelmi. Earthworms significantly promoted the formation of nonextractable BPAF residues in soil, accelerating BPAF dissipation. After 21 days of exposure, bioaccumulation of total BPAF-derived residues was 6.3-fold higher than that of extractable parent BPAF in earthworms, primarily located in the gut (73.6%), followed by skin (14.7%), body fluid (7.0%), and organs (4.7%), with 47.4% overall existing as tissue-bound residues (TBRs). TBRs showed limited elimination from earthworms but might release BPAF and its transformation products (TPs), predominantly BPAF, into the soil upon earthworm death, increasing BPAF persistence. The dominant TP in earthworms was the monosulfate conjugate of BPAF, the first such conjugate reported in soil animals. Both the TBR formation and excretion of BPAF monosulfate could contribute to the detoxification of BPAF in M. guillelmi. The results underscore a dual role of earthworms in the fate of BPAF in soil (accelerating dissipation vs. increasing persistence) and highlight risks associated with BPAF conjugation and TBR formation.

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Cite This Study

Guo et al. (2025) studied this question.

synapsesocial.com/papers/6932311e8e51979591dce31fhttps://doi.org/10.1021/acs.est.5c05982
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