Water contamination by delorazepam induces epigenetic defects in the embryos of the clawed frog Xenopus laevis

570 DNA methylation Benzodiazepine Xenopus 610 COVID-19 Water Amphibian 6. Clean water 3. Good health Epigenesis, Genetic Environmental stressor Genotoxicity, Amphibian,DNA methylation,Environmental stressor, Benzodiazepine Xenopus laevis Benzodiazepines [SDV.TOX]Life Sciences [q-bio]/Toxicology Animals Genotoxicity [SDV.BDD]Life Sciences [q-bio]/Development Biology
DOI: 10.1016/j.scitotenv.2023.165300 Publication Date: 2023-07-04T15:09:36Z
ABSTRACT
Delorazepam, a derivative of diazepam, is a psychotropic drug belonging to the benzodiazepine class. Used as a nervous-system inhibitor, it treats anxiety, insomnia, and epilepsy, but is also associated with misuse and abuse. Nowadays benzodiazepines are considered emerging pollutants: conventional wastewater treatment plants indeed are unable to eliminate these compounds. Consequently, they persist in the environment and bioaccumulate in non-target aquatic organisms with consequences still not fully clear. To collect more information, we investigated the possible epigenetic activity of delorazepam, at three concentrations (1, 5 and 10 μg/L) using Xenopus laevis embryos as a model. Analyses demonstrated a significant increase in genomic DNA methylation and differential methylation of the promoters of some early developmental genes (otx2, sox3, sox9, pax6, rax1, foxf1, and myod1). Moreover, studies on gene expression highlighted an unbalancing in apoptosis/proliferation pathways and an aberrant expression of DNA-repair genes. Results are alarming considering the growing trend of benzodiazepine concentrations in superficial waters, especially after the peak occurred as a consequence of the pandemic COVID-19, and the fact that benzodiazepine GABA-A receptors are highly conserved and present in all aquatic organisms.
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