Joint toxicity of sediment-associated permethrin and cadmium to Chironomus dilutus: The role of bioavailability and enzymatic activities

Environ Pollut. 2015 Dec:207:138-44. doi: 10.1016/j.envpol.2015.09.012. Epub 2015 Sep 12.

Abstract

Pyrethroid insecticides and metals commonly co-occurred in sediment and caused toxicity to benthic organisms jointly. To improve accuracy in assessing risk of the sediments contaminated by insecticides and metals, it is of great importance to understand interaction between the contaminants and reasons for the interaction. In the current study, permethrin and cadmium were chosen as representative contaminants to study joint toxicity of pyrethroids and metals to a benthic invertebrate Chironomus dilutus. A median effect/combination index-isobologram was applied to evaluate the interaction between sediment-bound permethrin and cadmium at three dose ratios. Antagonistic interaction was observed in the midges for all treatments. Comparatively, cadmium-dominated group (the ratio of toxicity contribution from permethrin and cadmium was 1:3) showed stronger antagonism than equitoxicity (1:1) and permethrin-dominated groups (3:1). The reasons for the observed antagonism were elucidated from two aspects, including bioavailability and enzymatic activity. The bioavailability of permethrin, expressed as the freely dissolved concentrations in sediment porewater and measured by solid phase microextraction, was not altered by the addition of cadmium, suggesting the change in permethrin bioavailability was not the reason for the antagonism. On the other hand, the activities of metabolic enzymes, glutathione S-transferase and carboxylesterase in the midges which were exposed to mixtures of permethrin and cadmium were significantly higher than those in the midges exposed to permethrin solely. Cadmium considerably enhanced the detoxifying processes of permethrin in the midges, which largely explained the observed antagonistic interaction between permethrin and cadmium.

Keywords: Bioavailability; Cadmium; Joint sediment toxicity; Metabolic enzymes; Permethrin.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Animals
  • Biological Availability
  • Cadmium / pharmacokinetics
  • Cadmium / toxicity*
  • Carboxylesterase / metabolism
  • Chironomidae / drug effects*
  • Chironomidae / metabolism
  • Drug Interactions
  • Geologic Sediments
  • Glutathione Transferase / metabolism
  • Insecticides / pharmacokinetics
  • Insecticides / toxicity*
  • Permethrin / pharmacokinetics
  • Permethrin / toxicity*
  • Solid Phase Microextraction
  • Water Pollutants, Chemical / pharmacokinetics
  • Water Pollutants, Chemical / toxicity*

Substances

  • Insecticides
  • Water Pollutants, Chemical
  • Cadmium
  • Permethrin
  • Glutathione Transferase
  • Carboxylesterase