• Title of article

    Toxicity of fullerene and nanosilver nanomaterials against bacteria associated to the body surface of the estuarine worm Laeonereis acuta (Polychaeta, Nereididae)

  • Author/Authors

    Cordeiro، نويسنده , , Lucas Freitas and Marques، نويسنده , , Bianca Fell and Kist، نويسنده , , Luiza Wilges and Bogo، نويسنده , , Maurيcio Reis and Lَpez، نويسنده , , Gerardo and Pagano، نويسنده , , Gisela and Külkamp-Guerreiro، نويسنده , , Irene Clemes and Monserrat، نويسنده , , José Maria، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2014
  • Pages
    8
  • From page
    52
  • To page
    59
  • Abstract
    This study analyzed the growth and biochemical responses of six bacterial colonies isolated from the mucus of the estuarine polychaeta Laeonereis acuta (Nereididae) after exposure to a water suspension of fullerene (nC60) and nanosilver (nAg) separately (0.01; 0.10; and 1.00 mg/L) and together (0.01; 0.10; and 1.00 mg/L of nanosilver and 1.00 mg/L of fullerene added to each nAg concentration). Exposures were performed in darkness during 24 h and then samples were taken from the worms and inoculated on agar during 24 h to analyze colonies growth. After this the material was analyzed biochemically. Colonies growth (tested by wet biomass weight) was inhibited at 0.01 and 0.10 mg/L of nAg and 0.01 and 0.10 mg/L nAg + constant 1.00 mg/L of nC60 (p < 0.05). Lipid peroxidation damage was significant from the control for the concentrations of 0.01 and 0.10 mg/L of nC60 and glutathione-S-transferase (GST) activity was significantly higher for the concentration of 1.00 mg/L mg/L nAg + constant 1.00 mg/L of nC60 (p < 0.05). Although nC60 did not induced growth inhibition, it triggered lipid peroxidation alone and increased GST activity together with nAg.60 Contrary to nC60, nanosilver inhibited bacterial growth, although the biochemical measurements indicate that this response is not due to reactive oxygen species generation.
  • Keywords
    Fullerene , Nanosilver , Bacteria , Laeonereis acuta , nanotoxicology
  • Journal title
    Marine Environmental Research
  • Serial Year
    2014
  • Journal title
    Marine Environmental Research
  • Record number

    2256687