4.7 Article

Multiple toxicity endpoints induced by carbon nanofibers in Amazon turtle juveniles: Outspreading warns about toxicological risks to reptiles

期刊

SCIENCE OF THE TOTAL ENVIRONMENT
卷 779, 期 -, 页码 -

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ELSEVIER
DOI: 10.1016/j.scitotenv.2021.146514

关键词

Nanotoxicology; Nanomaterials; Reptiles; Water pollution

资金

  1. Brazilian National Research Council (CNPq)(Brazilian research agency) [426531/2018-3]
  2. Instituto Federal Goiano [23219.001309.2020-19]
  3. CNPq [307743/2018-7]

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The study investigated the chronic effects of carbon nanofibers (CNFs) on juveniles of Podocnemis expansa (Amazon turtle) and found that CNFs uptake was associated with changes in REDOX systems, increased levels of antioxidants, and higher frequencies of erythrocyte abnormalities. Furthermore, the study revealed mutagenic, genotoxic, cytotoxic, and neurotoxic effects of CNFs on the turtles, reinforcing their toxic potential.
The toxicity of carbon-based nanomaterials (CNs) has been observed in different organisms; however, little is known about the impact of water polluted with carbon nanofibers (CNFs) on reptiles. Thus, the aim of the current study was to assess the chronic effects (7.5 months) of 1 and 10 mg/L of CNF on Podocnemis expansa (Amazon turtle) juveniles (4 months old) based on different biomarkers. Increased total organic carbon (TOC) concentrations observed in the liver and brain (which suggests CNF uptake) were closely correlated to changes in REDOX systems of turtles exposed to CNFs, mainly to higher nitrite, hydrogen peroxide and lipid peroxidation levels. Increased levels of antioxidants such as total glutathione, catalase and superoxide dismutase in the exposed animals were also observed. The uptake of CNFs and the observed biochemical changes were associated with higher frequency of erythrocyte nuclear abnormalities (assessed through micronucleus assays), as well as with both damage in erythrocyte DNA (assessed through comet assays) and higher apoptosis and necrosis rates in erythrocytes of exposed turtles. Cerebral and hepatic acetylcholinesterase (AChE) increased in turtles exposed to CNFs, and this finding suggested the neurotoxic effect of these nanomaterials. Data in the current study reinforced the toxic potential of CNFs and evidenced the biochemical, mutagenic, genotoxic, cytotoxic, and neurotoxic effects of CNFs on P. expansa. (c) 2021 Published by Elsevier B.V.

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