Title : Waterborne atenolol disrupts neurobehavioral and neurochemical responses in adult zebrafish - Adedara_2024_Environ.Sci.Pollut.Res.Int__ |
Author(s) : Adedara IA , Goncalves FL , Mohammed KA , Borba JV , Canzian J , Resmim CM , Claro MT , Macedo GT , Mostardeiro VB , Assmann CE , Monteiro CS , Emanuelli T , Schetinger MRC , Barbosa NV , Rosemberg DB |
Ref : Environ Sci Pollut Res Int , : , 2024 |
Abstract :
Environmental contamination by pharmaceuticals from industrial waste and anthropogenic activities poses adverse health effects on non-target organisms. We evaluated the neurobehavioral and biochemical responses accompanying exposure to ecological relevant concentrations of atenolol (0, 0.1, 1.0, and 10 microg/L) for seven uninterrupted days in adult zebrafish (Danio rerio). Atenolol-exposed fish exhibited anxiety-like behavior, characterized by significant bottom-dwelling with marked reduction in vertical exploration. Atenolol-exposed fish exhibited marked increase in the duration and frequency of aggressive events without altering their preference for conspecifics. Biochemical data using brain samples indicated that atenolol disrupted antioxidant enzyme activities and induced oxidative stress. Exposure to atenolol markedly decreased ATP and AMP hydrolysis without affecting ADP hydrolysis and acetylcholinesterase (AChE) activity. Atenolol significantly upregulated tryptophan hydroxylase 1 (tph1) mRNA expression but downregulated brain-derived neurotrophic factor (bdnf) mRNA. Collectively, waterborne atenolol elicits aggressive and anxiety-like responses in adult zebrafish, accompanied by oxidative stress, reduced nucleotide hydrolysis, altered tph1 and bdnf mRNA expression, which may impact the survival and health of fish in aquatic environment. |
PubMedSearch : Adedara_2024_Environ.Sci.Pollut.Res.Int__ |
PubMedID: 39048857 |
Adedara IA, Goncalves FL, Mohammed KA, Borba JV, Canzian J, Resmim CM, Claro MT, Macedo GT, Mostardeiro VB, Assmann CE, Monteiro CS, Emanuelli T, Schetinger MRC, Barbosa NV, Rosemberg DB (2024)
Waterborne atenolol disrupts neurobehavioral and neurochemical responses in adult zebrafish
Environ Sci Pollut Res Int
:
Adedara IA, Goncalves FL, Mohammed KA, Borba JV, Canzian J, Resmim CM, Claro MT, Macedo GT, Mostardeiro VB, Assmann CE, Monteiro CS, Emanuelli T, Schetinger MRC, Barbosa NV, Rosemberg DB (2024)
Environ Sci Pollut Res Int
: