Acute exposure and biomarkers assessment in rainbow trout exposed to selected pharmaceuticals.

Environ Toxicol Pharmacol

Aquatic Contaminants Research Division, Environment and Climate Change Canada, 105 McGill, Montréal, Québec H2Y 2E7, Canada. Electronic address:

Published: June 2024

AI Article Synopsis

  • Pharmaceuticals in municipal wastewater can harm aquatic life, particularly rainbow trout.
  • Five drugs—olanzapine, erythromycin, mycophenoate, pinaverium, and trazodone—were tested for toxicity, with olanzapine showing the highest lethality.
  • Factors like drug mass, pKa, and hydrophobicity influence toxicity, with certain characteristics leading to greater harm, including effects on metabolic activity and DNA damage in fish.

Article Abstract

Pharmaceuticals released from municipal effluents discharges pose a risk to aquatic organisms. The toxicity of 5 pharmaceuticals with distinct therapeutic actions were assessed in rainbow trout: olanzapine (antipsychotic), erythromycin (antibiotic), mycophenoate (immunosuppression), pinaverium (anti-inflammatory) and trazodone (sedative). Juveniles were exposed to these drugs for 96 h at concentrations between 64 µg/L up to 40 mg/L to reach lethality. Survival was determined and a suite of biomarkers was analyzed for drug biotransformation, oxidative stress/damage and metabolic activity at sublethal concentrations. The data revealed the following toxicity: olanzapine >trazodone>mycophenolate>pinaverium∼erythromycin based on mortality. The data also revealed that toxicity was associated to mass, pKa and hydrophobicity and the following sublethal effects: GST, LPO and DNA strand breaks. Pharmaceuticals with lower molecular weight, physiological pKa, moderate hydrophobicity, low biotransformation and DNA strand breaks were generally more toxic to fish. However, this should be considered as a general guide in identifying toxic pharmaceuticals in non-target organisms.

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Source
http://dx.doi.org/10.1016/j.etap.2024.104472DOI Listing

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