Cosmetic Preservatives: Hazardous Micropollutants in Need of Greater Attention?

Int J Mol Sci. 2022 Nov 21;23(22):14495. doi: 10.3390/ijms232214495.

Abstract

In recent years, personal care products (PCPs) have surfaced as a novel class of pollutants due to their release into wastewater treatment plants (WWTPs) and receiving environments by sewage effluent and biosolid-augmentation soil, which poses potential risks to non-target organisms. Among PCPs, there are preservatives that are added to cosmetics for protection against microbial spoilage. This paper presents a review of the occurrence in different environmental matrices, toxicological effects, and mechanisms of microbial degradation of four selected preservatives (triclocarban, chloroxylenol, methylisothiazolinone, and benzalkonium chloride). Due to the insufficient removal from WWTPs, cosmetic preservatives have been widely detected in aquatic environments and sewage sludge at concentrations mainly below tens of µg L-1. These compounds are toxic to aquatic organisms, such as fish, algae, daphnids, and rotifers, as well as terrestrial organisms. A summary of the mechanisms of preservative biodegradation by micro-organisms and analysis of emerging intermediates is also provided. Formed metabolites are often characterized by lower toxicity compared to the parent compounds. Further studies are needed for an evaluation of environmental concentrations of preservatives in diverse matrices and toxicity to more species of aquatic and terrestrial organisms, and for an understanding of the mechanisms of microbial degradation. The research should focus on chloroxylenol and methylisothiazolinone because these compounds are the least understood.

Keywords: benzalkonium chloride; chloroxylenol; ecotoxicity; methylisothiazolinone; microbial degradation; personal care products; preservatives; triclocarban.

Publication types

  • Review

MeSH terms

  • Animals
  • Cosmetics*
  • Preservatives, Pharmaceutical / toxicity
  • Sewage*

Substances

  • 2-methyl-4-isothiazolin-3-one
  • chloroxylenol
  • Sewage
  • Preservatives, Pharmaceutical
  • Cosmetics

Grants and funding

This research received no external funding.