Hazard Assessment of the Effects of Acute and Chronic Exposure to Permethrin, Copper Hydroxide, Acephate, and Validamycin Nanopesticides on the Physiology of Drosophila: Novel Insights into the Cellular Internalization and Biological Effects

Int J Mol Sci. 2022 Aug 14;23(16):9121. doi: 10.3390/ijms23169121.

Abstract

New insights into the interactions between nanopesticides and edible plants are required in order to elucidate their impacts on human health and agriculture. Nanopesticides include formulations consisting of organic/inorganic nanoparticles. Drosophila melanogaster has become a powerful model in genetic research thanks to its genetic similarity to mammals. This project mainly aimed to generate new evidence for the toxic/genotoxic properties of different nanopesticides (a nanoemulsion (permethrin nanopesticides, 20 ± 5 nm), an inorganic nanoparticle as an active ingredient (copper(II) hydroxide [Cu(OH)2] nanopesticides, 15 ± 6 nm), a polymer-based nanopesticide (acephate nanopesticides, 55 ± 25 nm), and an inorganic nanoparticle associated with an organic active ingredient (validamycin nanopesticides, 1177 ± 220 nm)) and their microparticulate forms (i.e., permethrin, copper(II) sulfate pentahydrate (CuSO4·5H2O), acephate, and validamycin) widely used against agricultural pests, while also showing the merits of using Drosophila-a non-target in vivo eukaryotic model organism-in nanogenotoxicology studies. Significant biological effects were noted at the highest doses of permethrin (0.06 and 0.1 mM), permethrin nanopesticides (1 and 2.5 mM), CuSO4·5H2O (1 and 5 mM), acephate and acephate nanopesticides (1 and 5 mM, respectively), and validamycin and validamycin nanopesticides (1 and 2.5 mM, respectively). The results demonstrating the toxic/genotoxic potential of these nanopesticides through their impact on cellular internalization and gene expression represent significant contributions to future nanogenotoxicology studies.

Keywords: DNA damage; Drosophila melanogaster; acephate nanopesticides; copper hydroxide nanopesticides; gene expression; internalization; lipid peroxidation; locomotor ability; nanogenotoxicity; nanopesticides; oxidative stress; permethrin nanopesticides; phenotypic variations; risk assessment; validamycin nanopesticides.

MeSH terms

  • Animals
  • Copper* / toxicity
  • Drosophila
  • Drosophila melanogaster
  • Humans
  • Hydroxides
  • Inositol / analogs & derivatives
  • Mammals
  • Organothiophosphorus Compounds
  • Permethrin* / toxicity
  • Phosphoramides

Substances

  • Hydroxides
  • Organothiophosphorus Compounds
  • Phosphoramides
  • copper hydroxide
  • acephate
  • Inositol
  • validamycins
  • Permethrin
  • Copper