Literature DB >> 30120660

Genotoxic, biochemical and bioconcentration effects of manganese on Oreochromis niloticus (Cichlidae).

Gabriel Carvalho Coppo1, Larissa Souza Passos1, Taciana Onesorge Miranda Lopes1, Tatiana Miura Pereira1, Julia Merçon1, Dandara Silva Cabral1, Bianca Vieira Barbosa2, Lívia Sperandio Caetano1, Edgar Hell Kampke1, Adriana Regina Chippari-Gomes3.   

Abstract

Manganese and iron were found at high concentrations (3.61 mg/L and 19.8 mg/L, respectively) in the water of the Rio Doce after the dams of Fundão and Santarém broke in Mariana/MG (Brazil). These same metals were found in fish and crustacean muscle (15 mg/kg and 8 mg/kg wet weight, respectively) in the specimens collected near the Rio Doce's outfall. Due to the variation in Mn concentration found in the lower Rio Doce, this study aimed to determine the effects of Mn in Oreochromis niloticus, at the concentrations allowed by CONAMA, and in concentrations found in the Rio Doce after the dams broke. The animals were exposed to the following dissolved concentrations: control group (0.0 mg/L), 0.2; 1.5 and 2.9 mg/L manganese for 96 h. In addition, a positive control was conducted, injecting intraperitoneally with cyclophosphamide (at 25 mg/kg). These exposures caused significant erythrocyte micronucleus formation in the organisms exposed to the highest concentration, as well a significant increase in the DNA damage index of erythrocytes from organisms exposed to 1.5 mg/L and 2.9 mg/L treatments. The glutathione S-transferase enzyme activity also showed a significant increase in the liver of the organisms exposed to 2.9 mg/L. However, catalase activity increased significantly in the gills of the animals exposed to all concentrations of manganese that were tested. Manganese bioconcentrated in greater quantities in the liver than the gills. Thus, manganese causes significant damage to genetic material, generates nuclear abnormalities, activates the body's detoxification system and can accumulate in animal tissue.

Entities:  

Keywords:  Bioconcentration; Comet assay; Fish; Metal; Micronucleus test.

Mesh:

Substances:

Year:  2018        PMID: 30120660     DOI: 10.1007/s10646-018-1970-0

Source DB:  PubMed          Journal:  Ecotoxicology        ISSN: 0963-9292            Impact factor:   2.823


  42 in total

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