Rutkoski_2021_Environ.Sci.Pollut.Res.Int_28_4377

Reference

Title : Cypermethrin- and fipronil-based insecticides cause biochemical changes in Physalaemus gracilis tadpoles - Rutkoski_2021_Environ.Sci.Pollut.Res.Int_28_4377
Author(s) : Rutkoski CF , Macagnan N , Folador A , Skovronski VJ , do Amaral AMB , Leitemperger JW , Costa MD , Hartmann PA , Muller C , Loro VL , Hartmann MT
Ref : Environ Sci Pollut Res Int , 28 :4377 , 2021
Abstract :

Insecticides used for agricultural pest control, as cypermethrin-based insecticide (CBI) and fipronil-based insecticide (FBI), are constant threats to non-target aquatic organisms. This study aimed to investigate the effect of different concentrations of cypermethrin and fipronil on neurotoxicity and oxidative stress in Physalaemus gracilis. Physalaemus gracilis tadpoles were exposed to five insecticide concentrations and a control treatment, with six replicates. During the experimental period, the tadpole mortality rate was evaluated and after 168 h, the neurotoxic enzyme activity and metabolite quantification related to the antioxidant system were measured. Tadpoles reduced acetylcholinesterase (AChE) and butyrylcholinesterase (BChE) activities when exposed to 20 microg L(-1) CBI and at all FBI concentrations, respectively. Glutathione S-transferase (GST) and superoxide dismutase (SOD) activities showed an increase from concentrations of 6 microg L(-1) and 20 microg L(-1) of CBI, respectively. After exposure of P. gracilis tadpoles to FBI, inhibitions of AChE and BChE were observed at the highest concentrations evaluated (500 and 1500 microg L(-1)). SOD activity decreased from 50 microg L(-1) of FBI; however, catalase (CAT) and GST activities and carbonyl protein levels increased, regardless of the evaluated dose. We observed that both insecticides promoted oxidative stress and neurotoxic effects in P. gracilis tadpoles. These results suggest that biochemical biomarkers can be used for monitoring toxicity insecticides for the purpose of preservation of P. gracilis.

PubMedSearch : Rutkoski_2021_Environ.Sci.Pollut.Res.Int_28_4377
PubMedID: 32940837

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Citations formats

Rutkoski CF, Macagnan N, Folador A, Skovronski VJ, do Amaral AMB, Leitemperger JW, Costa MD, Hartmann PA, Muller C, Loro VL, Hartmann MT (2021)
Cypermethrin- and fipronil-based insecticides cause biochemical changes in Physalaemus gracilis tadpoles
Environ Sci Pollut Res Int 28 :4377

Rutkoski CF, Macagnan N, Folador A, Skovronski VJ, do Amaral AMB, Leitemperger JW, Costa MD, Hartmann PA, Muller C, Loro VL, Hartmann MT (2021)
Environ Sci Pollut Res Int 28 :4377