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Hippocampal Dysfunction Provoked by Mercury Chloride Exposure: Evaluation of Cognitive Impairment, Oxidative Stress, Tissue Injury and Nature of Cell Death

Mercury (Hg) is a highly toxic metal, which can be found in its inorganic form in the environment. This form presents lower liposolubility and lower absorption in the body. In order to elucidate the possible toxicity of inorganic Hg in the hippocampus, we investigated the potential of low doses of m...

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Autores principales: Aragão, Walessa Alana Bragança, Teixeira, Francisco Bruno, Fagundes, Nathalia Carolina Fernandes, Fernandes, Rafael Monteiro, Fernandes, Luanna Melo Pereira, da Silva, Márcia Cristina Freitas, Amado, Lilian Lund, Sagica, Fernanda Espírito Santo, Oliveira, Edivaldo Herculano Correa, Crespo-Lopez, Maria Elena, Maia, Cristiane Socorro Ferraz, Lima, Rafael Rodrigues
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5914100/
https://www.ncbi.nlm.nih.gov/pubmed/29849915
http://dx.doi.org/10.1155/2018/7878050
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author Aragão, Walessa Alana Bragança
Teixeira, Francisco Bruno
Fagundes, Nathalia Carolina Fernandes
Fernandes, Rafael Monteiro
Fernandes, Luanna Melo Pereira
da Silva, Márcia Cristina Freitas
Amado, Lilian Lund
Sagica, Fernanda Espírito Santo
Oliveira, Edivaldo Herculano Correa
Crespo-Lopez, Maria Elena
Maia, Cristiane Socorro Ferraz
Lima, Rafael Rodrigues
author_facet Aragão, Walessa Alana Bragança
Teixeira, Francisco Bruno
Fagundes, Nathalia Carolina Fernandes
Fernandes, Rafael Monteiro
Fernandes, Luanna Melo Pereira
da Silva, Márcia Cristina Freitas
Amado, Lilian Lund
Sagica, Fernanda Espírito Santo
Oliveira, Edivaldo Herculano Correa
Crespo-Lopez, Maria Elena
Maia, Cristiane Socorro Ferraz
Lima, Rafael Rodrigues
author_sort Aragão, Walessa Alana Bragança
collection PubMed
description Mercury (Hg) is a highly toxic metal, which can be found in its inorganic form in the environment. This form presents lower liposolubility and lower absorption in the body. In order to elucidate the possible toxicity of inorganic Hg in the hippocampus, we investigated the potential of low doses of mercury chloride (HgCl(2)) to promote hippocampal dysfunction by employing a chronic exposure model. For this, 56 rats were exposed to HgCl(2) (0.375 mg/kg/day) via the oral route for 45 days. After the exposure period, the animals were submitted to the cognitive test of fear memory. The hippocampus was collected for the measurement of total Hg levels, analysis of oxidative stress, and evaluation of cytotoxicity, apoptosis, and tissue injury. It was observed that chronic exposure to inorganic Hg promotes an increase in mercury levels in this region and damage to short- and long-term memory. Furthermore, we found that this exposure model provoked oxidative stress, which led to cytotoxicity and cell death by apoptosis, affecting astrocytes and neurons in the hippocampus. Our study demonstrated that inorganic Hg, even with its low liposolubility, is able to produce deleterious effects in the central nervous system, resulting in cognitive impairment and hippocampal damage when administered for a long time at low doses in rats.
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spelling pubmed-59141002018-05-30 Hippocampal Dysfunction Provoked by Mercury Chloride Exposure: Evaluation of Cognitive Impairment, Oxidative Stress, Tissue Injury and Nature of Cell Death Aragão, Walessa Alana Bragança Teixeira, Francisco Bruno Fagundes, Nathalia Carolina Fernandes Fernandes, Rafael Monteiro Fernandes, Luanna Melo Pereira da Silva, Márcia Cristina Freitas Amado, Lilian Lund Sagica, Fernanda Espírito Santo Oliveira, Edivaldo Herculano Correa Crespo-Lopez, Maria Elena Maia, Cristiane Socorro Ferraz Lima, Rafael Rodrigues Oxid Med Cell Longev Research Article Mercury (Hg) is a highly toxic metal, which can be found in its inorganic form in the environment. This form presents lower liposolubility and lower absorption in the body. In order to elucidate the possible toxicity of inorganic Hg in the hippocampus, we investigated the potential of low doses of mercury chloride (HgCl(2)) to promote hippocampal dysfunction by employing a chronic exposure model. For this, 56 rats were exposed to HgCl(2) (0.375 mg/kg/day) via the oral route for 45 days. After the exposure period, the animals were submitted to the cognitive test of fear memory. The hippocampus was collected for the measurement of total Hg levels, analysis of oxidative stress, and evaluation of cytotoxicity, apoptosis, and tissue injury. It was observed that chronic exposure to inorganic Hg promotes an increase in mercury levels in this region and damage to short- and long-term memory. Furthermore, we found that this exposure model provoked oxidative stress, which led to cytotoxicity and cell death by apoptosis, affecting astrocytes and neurons in the hippocampus. Our study demonstrated that inorganic Hg, even with its low liposolubility, is able to produce deleterious effects in the central nervous system, resulting in cognitive impairment and hippocampal damage when administered for a long time at low doses in rats. Hindawi 2018-04-10 /pmc/articles/PMC5914100/ /pubmed/29849915 http://dx.doi.org/10.1155/2018/7878050 Text en Copyright © 2018 Walessa Alana Bragança Aragão et al. http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Aragão, Walessa Alana Bragança
Teixeira, Francisco Bruno
Fagundes, Nathalia Carolina Fernandes
Fernandes, Rafael Monteiro
Fernandes, Luanna Melo Pereira
da Silva, Márcia Cristina Freitas
Amado, Lilian Lund
Sagica, Fernanda Espírito Santo
Oliveira, Edivaldo Herculano Correa
Crespo-Lopez, Maria Elena
Maia, Cristiane Socorro Ferraz
Lima, Rafael Rodrigues
Hippocampal Dysfunction Provoked by Mercury Chloride Exposure: Evaluation of Cognitive Impairment, Oxidative Stress, Tissue Injury and Nature of Cell Death
title Hippocampal Dysfunction Provoked by Mercury Chloride Exposure: Evaluation of Cognitive Impairment, Oxidative Stress, Tissue Injury and Nature of Cell Death
title_full Hippocampal Dysfunction Provoked by Mercury Chloride Exposure: Evaluation of Cognitive Impairment, Oxidative Stress, Tissue Injury and Nature of Cell Death
title_fullStr Hippocampal Dysfunction Provoked by Mercury Chloride Exposure: Evaluation of Cognitive Impairment, Oxidative Stress, Tissue Injury and Nature of Cell Death
title_full_unstemmed Hippocampal Dysfunction Provoked by Mercury Chloride Exposure: Evaluation of Cognitive Impairment, Oxidative Stress, Tissue Injury and Nature of Cell Death
title_short Hippocampal Dysfunction Provoked by Mercury Chloride Exposure: Evaluation of Cognitive Impairment, Oxidative Stress, Tissue Injury and Nature of Cell Death
title_sort hippocampal dysfunction provoked by mercury chloride exposure: evaluation of cognitive impairment, oxidative stress, tissue injury and nature of cell death
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5914100/
https://www.ncbi.nlm.nih.gov/pubmed/29849915
http://dx.doi.org/10.1155/2018/7878050
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