Cargando…
Drosophila melanogaster - an embryonic model for studying behavioral and biochemical effects of manganese exposure
Embryonic animals are especially susceptible to metal exposure. Manganese (Mn) is an essential element, but in excess it can induce toxicity. In this study we used Drosophila melanogaster as an embryonic model to investigate biochemical and behavioral alterations due to Mn exposure. Flies were treat...
Autores principales: | , , , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Leibniz Research Centre for Working Environment and Human Factors
2014
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4464430/ https://www.ncbi.nlm.nih.gov/pubmed/26417337 |
_version_ | 1782375968045793280 |
---|---|
author | Ternes, Ana Paula Lausmann Zemolin, Ana Paula da Cruz, Litiele Cezar da Silva, Gustavo Felipe Saidelles, Ana Paula Fleig de Paula, Mariane Trindade Wagner, Caroline Golombieski, Ronaldo Medeiros Flores, Érico Marlon de Moraes Picoloto, Rochele Sogari Pereira, Antônio Batista Franco, Jeferson Luis Posser, Thaís |
author_facet | Ternes, Ana Paula Lausmann Zemolin, Ana Paula da Cruz, Litiele Cezar da Silva, Gustavo Felipe Saidelles, Ana Paula Fleig de Paula, Mariane Trindade Wagner, Caroline Golombieski, Ronaldo Medeiros Flores, Érico Marlon de Moraes Picoloto, Rochele Sogari Pereira, Antônio Batista Franco, Jeferson Luis Posser, Thaís |
author_sort | Ternes, Ana Paula Lausmann |
collection | PubMed |
description | Embryonic animals are especially susceptible to metal exposure. Manganese (Mn) is an essential element, but in excess it can induce toxicity. In this study we used Drosophila melanogaster as an embryonic model to investigate biochemical and behavioral alterations due to Mn exposure. Flies were treated with standard medium supplemented with MnCl(2) at 0.1 mM, 0.5 mM or 1 mM from the egg to the adult stage. At 0.5 mM and 1 mM Mn, newly ecloded flies showed significantly enhanced locomotor activity when assessed by negative geotaxis behavior. In addition, a significant increase in Mn levels (p < 0.0001) was observed, while Ca, Fe, Cu, Zn and S levels were significantly decreased. A significant drop in cell viability occurred in flies exposed to 1 mM Mn. There was also an induction of reactive oxygen species at 0.5 mM and 1 mM Mn (p < 0.05). At 1 mM, Mn increased Catalase (p < 0.005), Superoxide Dismutase (p < 0.005) and Hsp83 (p < 0.0001) mRNA expression, without altering Catalase or Superoxide Dismutase activity; the activity of Thioredoxin reductase and Glutatione-S-transferase enzymes was increased. Mn treatment did not alter ERK or JNK1/2 phosphorylation, but at 1 mM caused an inhibition of p38(MAPK) phosphorylation. Together these data suggest mechanisms of adaptation in the fly response to Mn exposure in embryonic life. |
format | Online Article Text |
id | pubmed-4464430 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2014 |
publisher | Leibniz Research Centre for Working Environment and Human Factors |
record_format | MEDLINE/PubMed |
spelling | pubmed-44644302015-09-28 Drosophila melanogaster - an embryonic model for studying behavioral and biochemical effects of manganese exposure Ternes, Ana Paula Lausmann Zemolin, Ana Paula da Cruz, Litiele Cezar da Silva, Gustavo Felipe Saidelles, Ana Paula Fleig de Paula, Mariane Trindade Wagner, Caroline Golombieski, Ronaldo Medeiros Flores, Érico Marlon de Moraes Picoloto, Rochele Sogari Pereira, Antônio Batista Franco, Jeferson Luis Posser, Thaís EXCLI J Original Article Embryonic animals are especially susceptible to metal exposure. Manganese (Mn) is an essential element, but in excess it can induce toxicity. In this study we used Drosophila melanogaster as an embryonic model to investigate biochemical and behavioral alterations due to Mn exposure. Flies were treated with standard medium supplemented with MnCl(2) at 0.1 mM, 0.5 mM or 1 mM from the egg to the adult stage. At 0.5 mM and 1 mM Mn, newly ecloded flies showed significantly enhanced locomotor activity when assessed by negative geotaxis behavior. In addition, a significant increase in Mn levels (p < 0.0001) was observed, while Ca, Fe, Cu, Zn and S levels were significantly decreased. A significant drop in cell viability occurred in flies exposed to 1 mM Mn. There was also an induction of reactive oxygen species at 0.5 mM and 1 mM Mn (p < 0.05). At 1 mM, Mn increased Catalase (p < 0.005), Superoxide Dismutase (p < 0.005) and Hsp83 (p < 0.0001) mRNA expression, without altering Catalase or Superoxide Dismutase activity; the activity of Thioredoxin reductase and Glutatione-S-transferase enzymes was increased. Mn treatment did not alter ERK or JNK1/2 phosphorylation, but at 1 mM caused an inhibition of p38(MAPK) phosphorylation. Together these data suggest mechanisms of adaptation in the fly response to Mn exposure in embryonic life. Leibniz Research Centre for Working Environment and Human Factors 2014-11-21 /pmc/articles/PMC4464430/ /pubmed/26417337 Text en Copyright © 2014 Ternes et al. http://www.excli.de/documents/assignment_of_rights.pdf This is an Open Access article distributed under the following Assignment of Rights http://www.excli.de/documents/assignment_of_rights.pdf. You are free to copy, distribute and transmit the work, provided the original author and source are credited. |
spellingShingle | Original Article Ternes, Ana Paula Lausmann Zemolin, Ana Paula da Cruz, Litiele Cezar da Silva, Gustavo Felipe Saidelles, Ana Paula Fleig de Paula, Mariane Trindade Wagner, Caroline Golombieski, Ronaldo Medeiros Flores, Érico Marlon de Moraes Picoloto, Rochele Sogari Pereira, Antônio Batista Franco, Jeferson Luis Posser, Thaís Drosophila melanogaster - an embryonic model for studying behavioral and biochemical effects of manganese exposure |
title | Drosophila melanogaster - an embryonic model for studying behavioral and biochemical effects of manganese exposure |
title_full | Drosophila melanogaster - an embryonic model for studying behavioral and biochemical effects of manganese exposure |
title_fullStr | Drosophila melanogaster - an embryonic model for studying behavioral and biochemical effects of manganese exposure |
title_full_unstemmed | Drosophila melanogaster - an embryonic model for studying behavioral and biochemical effects of manganese exposure |
title_short | Drosophila melanogaster - an embryonic model for studying behavioral and biochemical effects of manganese exposure |
title_sort | drosophila melanogaster - an embryonic model for studying behavioral and biochemical effects of manganese exposure |
topic | Original Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4464430/ https://www.ncbi.nlm.nih.gov/pubmed/26417337 |
work_keys_str_mv | AT ternesanapaulalausmann drosophilamelanogasteranembryonicmodelforstudyingbehavioralandbiochemicaleffectsofmanganeseexposure AT zemolinanapaula drosophilamelanogasteranembryonicmodelforstudyingbehavioralandbiochemicaleffectsofmanganeseexposure AT dacruzlitielecezar drosophilamelanogasteranembryonicmodelforstudyingbehavioralandbiochemicaleffectsofmanganeseexposure AT dasilvagustavofelipe drosophilamelanogasteranembryonicmodelforstudyingbehavioralandbiochemicaleffectsofmanganeseexposure AT saidellesanapaulafleig drosophilamelanogasteranembryonicmodelforstudyingbehavioralandbiochemicaleffectsofmanganeseexposure AT depaulamarianetrindade drosophilamelanogasteranembryonicmodelforstudyingbehavioralandbiochemicaleffectsofmanganeseexposure AT wagnercaroline drosophilamelanogasteranembryonicmodelforstudyingbehavioralandbiochemicaleffectsofmanganeseexposure AT golombieskironaldomedeiros drosophilamelanogasteranembryonicmodelforstudyingbehavioralandbiochemicaleffectsofmanganeseexposure AT floresericomarlondemoraes drosophilamelanogasteranembryonicmodelforstudyingbehavioralandbiochemicaleffectsofmanganeseexposure AT picolotorochelesogari drosophilamelanogasteranembryonicmodelforstudyingbehavioralandbiochemicaleffectsofmanganeseexposure AT pereiraantoniobatista drosophilamelanogasteranembryonicmodelforstudyingbehavioralandbiochemicaleffectsofmanganeseexposure AT francojefersonluis drosophilamelanogasteranembryonicmodelforstudyingbehavioralandbiochemicaleffectsofmanganeseexposure AT posserthais drosophilamelanogasteranembryonicmodelforstudyingbehavioralandbiochemicaleffectsofmanganeseexposure |