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Photodegradation of Plastic Leachate: Revealing the Key Role of Halogen in Reduced Cytotoxicity in Marine Systems

Research output: Journal Publications and ReviewsRGC 21 - Publication in refereed journalpeer-review

Abstract

Understanding the cytotoxicity of plastic leachate from photodegraded sunscreen-derived microplastics (SDMPs) in various aquatic environments remains a challenge. This study reveals the crucial role of halogens in reducing leachate toxicity by examining the photodegradation of SDMPs in freshwater and seawater settings. Microplastics (MPs) extracted from three different commercial sunscreens, predominantly composed of methacrylate-based polymers, exhibited reduced photodegradation, leachate release, and leachate transformation in seawater. The diminished degradation in seawater can be attributed to halogens, especially bromide (Br-), which hinder photocatalytic oxidation by suppressing the activity of hydroxyl radicals (•OH). Consequently, leachates from SDMPs photoaged in seawater exhibited notably reduced cytotoxicity, as evidenced by minimal mitochondrial dysfunction involving mitochondrial dehydrogenases and membrane potential, fragmented mitochondria, and regulated metabolic processes. This included the alleviation of amino acid catabolism inhibition, coenzyme A (CoA) biosynthesis inhibition, glycolysis activation, and the enhancement of the compensatory antioxidant system. In the absence of halogen protection, photodegradation is predicted to produce oxidative byproducts such as hydroperoxides as toxic agents that induce cytotoxicity in the freshwater leachate. These findings underscore the critical influence of water chemistry on shaping the photodegradation and toxicity of SDMP leachates, emphasizing the necessity of conducting region-specific risk assessments for MPs in personal care products.
© 2025 American Chemical Society
Original languageEnglish
Pages (from-to)17822-17833
Number of pages12
JournalEnvironmental Science & Technology
Volume59
Issue number33
Online published11 Aug 2025
DOIs
Publication statusPublished - 26 Aug 2025

Funding

This study was supported by the National Science Foundation of China (42430709) and the General Research Fund of the Hong Kong Research Grants Council (11103022). W.-X.W. was supported by a 5-year Senior Research Fellowship from the Hong Kong Research Grants Council (SRFS2425-1S06).

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 14 - Life Below Water
    SDG 14 Life Below Water

Research Keywords

  • halogen
  • mitochondrial toxicity
  • nontargeted analysis
  • photodegradation
  • plastic leachate

RGC Funding Information

  • RGC-funded

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