Occurrence, Fate, Human Exposure, and Toxicity of Commercial Photoinitiators

Environ Sci Technol. 2023 Aug 15;57(32):11704-11717. doi: 10.1021/acs.est.3c02857. Epub 2023 Jul 29.

Abstract

Photoinitiators (PIs) are a family of anthropogenic chemicals used in polymerization systems that generate active substances to initiate polymerization reactions under certain radiations. Although polymerization is considered a green method, its wide application in various commercial products, such as UV-curable inks, paints, and varnishes, has led to ubiquitous environmental issues caused by PIs. In this study, we present an overview of the current knowledge on the environmental occurrence, human exposure, and toxicity of PIs and provide suggestions for future research based on numerous available studies. The residual concentrations of PIs in commercial products, such as food packaging materials, are at microgram per gram levels. The migration of PIs from food packaging materials to foodstuffs has been confirmed by more than 100 reports of food contamination caused by PIs. Furthermore, more than 20 PIs have been detected in water, sediment, sewage sludge, and indoor dust collected from Asia, the United States, and Europe. Human internal exposure was also confirmed by the detection of PIs in serum. In addition, PIs were present in human breast milk, indicating that breastfeeding is an exposure pathway for infants. Among the most available studies, benzophenone is the dominant congener detected in the environment and humans. Toxicity studies of PIs reveal multiple toxic end points, such as carcinogenicity and endocrine-disrupting effects. Future investigations should focus on synergistic/antagonistic toxicity effects caused by PIs coexposure and metabolism/transformation pathways of newly identified PIs. Furthermore, future research should aim to develop "greener" PIs with high efficiency, low migration, and low toxicity.

Keywords: environmental occurrence; human exposure; novel organic contaminants; photoinitiators; toxicity effects.

Publication types

  • Review
  • Research Support, Non-U.S. Gov't

MeSH terms

  • Asia
  • Benzophenones / chemistry
  • Dust*
  • Female
  • Food Packaging*
  • Humans
  • Water

Substances

  • Dust
  • Benzophenones
  • Water