Unveiling nanoplastic release from single-use eyedrop vials: A particle-based approach for identification and quantification

  • Cho, Minsong
  • Le, Yen Thi-Hoang
  • Yoo, Hanjin
  • Tran, Ngoc Minh
  • Seo, Jeong-Won
  • ... Jeon, Ki-Joon
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초록

Microplastics have been detected in vitreous samples, providing evidence of ocular health risks associated with direct exposure to micro-nanoplastics (MNPs). However, the primary sources, abundance, morphology and size distribution of these particles remain unclear. Here, we employed pyrolysis-gas chromatography-mass spectroscopy (Pyr-GC/MS) to verify the release of synthetic polymers from commercial disposable eye-drop containers. Due to small sample volumes, this conventional mass-based analytical method struggled to quantify the MNPs concentration effectively. In contrast, the single particle-based analytical techniques, including surface-enhanced Raman spectroscopy (SERS) and scanning electron microscopy, reveal thousands of MNPs released upon opening the container, with 88 % of particles measuring less than 5 mu m. Another release mechanism is attributed to pre-existing particles within the container. The detection of oxygenated MNPs further suggests an increased potential for ocular toxicity. This research highlights the feasibility of particle-based methods when it comes for targeting the nanoscale of plastic particles. Furthermore, integration of SERS and SEM identifies a previously uncharacterized direct exposure route of nanoplastics to the human eye via commercial eye drops and emphasizes the importance of single-particle characterization in accurately assessing their implications for ocular health.

키워드

Micro-nanoplasticsDisposable eye dropsParticle-based analysisAging potentialRelease mechanismPotential daily exposure
제목
Unveiling nanoplastic release from single-use eyedrop vials: A particle-based approach for identification and quantification
저자
Cho, MinsongLe, Yen Thi-HoangYoo, HanjinTran, Ngoc MinhSeo, Jeong-WonJeon, Ki-Joon
DOI
10.1016/j.ecoenv.2026.119702
발행일
2026-01-01
유형
Article
저널명
Ecotoxicology and Environmental Safety
309