Exposure of Drosophila melanogaster to Mancozeb Induces Oxidative Damage and Modulates Nrf2 and HSP70/83

Author:

Saraiva Miriane Acosta1,da Rosa Ávila Eduardo1,da Silva Gustavo Felipe2,Macedo Giulianna Echeverria1,Rodrigues Nathane Rosa1,de Brum Vieira Patrícia3,Nascimento Mariele Samuel4,Picoloto Rochele Sogari4,Martins Illana Kemmerich1,de Carvalho Nelson Rodrigues5,Franco Jeferson Luis1ORCID,Posser Thais1ORCID

Affiliation:

1. Oxidative Stress and Cell Signaling Research Group, Universidade Federal do Pampa, Campus São Gabriel, 97300-000 São Gabriel, RS, Brazil

2. Departamento de Medicina-Núcleo de Saúde, Universidade Federal de Rondônia, 76801-059 Porto Velho, RO, Brazil

3. Centro Interdisciplinar de Pesquisas em Biotecnologia (CIPBIOTEC), Universidade Federal do Pampa, Campus São Gabriel, 97300-000 São Gabriel, RS, Brazil

4. Departamento de Química (DQ), Centro de Ciências Naturais e Exatas (CCNE), Universidade Federal de Santa Maria, 97105-900 Santa Maria, RS, Brazil

5. Instituto Federal Farroupilha, Campus Santo Ângelo, 98806-700 Santo Ângelo, RS, Brazil

Abstract

Mancozeb (MZ), a manganese- and zinc-containing ethylene-bis-dithiocarbamate, is a broad-spectrum fungicide. Harmful effects of this fungicide have been reported in nontarget organisms via a not fully understood mechanism. Drosophila melanogaster has provided remarkable contributions for toxicological studies. This work was aimed at evaluating the biochemical targets and implication of oxidative stress in MZ-mediated toxicity in drosophilas. Exposure of flies for fifteen days to MZ at 5 and 10 mg/mL through the diet impaired locomotor performance and induced fly mortality. In parallel, it caused lipid peroxidation and reactive oxygen species (ROS) formation and Mn overload. MZ inhibited superoxide dismutase and inducted catalase and glutathione S-transferase activities. Nitric oxide and reduced glutathione levels were significantly decreased by MZ. Heat shock proteins (HSP70 and HSP83) and Nrf2 mRNA levels were significantly augmented in MZ-exposed flies. Our study reinforced the use of Drosophila melanogaster as a reliable model for the study of biochemical targets of pesticides, and based on our data, MZ induced oxidative damage and Mn accumulation in a concentration-dependent manner. An adaptative cellular state was inducted by the lower concentration of pesticide, possibly contributing to the slighter damage observed.

Funder

Fundação de Amparo à Pesquisa do Estado do Rio Grande do Sul

Publisher

Hindawi Limited

Subject

Cell Biology,Ageing,General Medicine,Biochemistry

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