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Long-Term Lead Exposure Since Adolescence Causes Proteomic and Morphological Alterations in the Cerebellum Associated with Motor Deficits in Adult Rats

Lead (Pb) is an environmental contaminant that presents a high risk for human health. We aimed to investigate the possible alterations triggered by the exposure to Pb acetate for a long period in motor performance and the possible relationship with biochemical, proteomic and morphological alteration...

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Autores principales: Leão, Luana Ketlen Reis, Bittencourt, Leonardo Oliveira, Oliveira, Ana Carolina, Nascimento, Priscila Cunha, Miranda, Giza Hellen Nonato, Ferreira, Railson Oliveira, Nabiça, Mariane, Dantas, Kelly, Dionizio, Aline, Cartágenes, Sabrina, Buzalaf, Marília Afonso Rabelo, Crespo-Lopez, Maria Elena, Maia, Cristiane S F, Lima, Rafael Rodrigues
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7279001/
https://www.ncbi.nlm.nih.gov/pubmed/32443589
http://dx.doi.org/10.3390/ijms21103571
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author Leão, Luana Ketlen Reis
Bittencourt, Leonardo Oliveira
Oliveira, Ana Carolina
Nascimento, Priscila Cunha
Miranda, Giza Hellen Nonato
Ferreira, Railson Oliveira
Nabiça, Mariane
Dantas, Kelly
Dionizio, Aline
Cartágenes, Sabrina
Buzalaf, Marília Afonso Rabelo
Crespo-Lopez, Maria Elena
Maia, Cristiane S F
Lima, Rafael Rodrigues
author_facet Leão, Luana Ketlen Reis
Bittencourt, Leonardo Oliveira
Oliveira, Ana Carolina
Nascimento, Priscila Cunha
Miranda, Giza Hellen Nonato
Ferreira, Railson Oliveira
Nabiça, Mariane
Dantas, Kelly
Dionizio, Aline
Cartágenes, Sabrina
Buzalaf, Marília Afonso Rabelo
Crespo-Lopez, Maria Elena
Maia, Cristiane S F
Lima, Rafael Rodrigues
author_sort Leão, Luana Ketlen Reis
collection PubMed
description Lead (Pb) is an environmental contaminant that presents a high risk for human health. We aimed to investigate the possible alterations triggered by the exposure to Pb acetate for a long period in motor performance and the possible relationship with biochemical, proteomic and morphological alterations in the cerebellum of rats. Male Wistar rats were exposed for 55 days, at 50 mg/Kg of Pb acetate, and the control animals received distilled water. Open field (OF) and rotarod tests; biochemistry parameters (MDA and nitrite); staining/immunostaining of Purkinje cells (PC), mature neurons (MN), myelin sheath (MS) and synaptic vesicles (SYN) and proteomic profile were analyzed. Pb deposition on the cerebellum area and this study drove to exploratory and locomotion deficits and a decrease in the number of PC, MN, SYN and MS staining/immunostaining. The levels of MDA and nitrite remained unchanged. The proteomic profile showed alterations in proteins responsible for neurotransmitters release, as well as receptor function and second messengers signaling, and also proteins involved in the process of apoptosis. Thus, we conclude that the long-term exposure to low Pb dose promoted locomotion and histological tracings, associated with alterations in the process of cell signaling, as well as death by apoptosis.
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spelling pubmed-72790012020-06-15 Long-Term Lead Exposure Since Adolescence Causes Proteomic and Morphological Alterations in the Cerebellum Associated with Motor Deficits in Adult Rats Leão, Luana Ketlen Reis Bittencourt, Leonardo Oliveira Oliveira, Ana Carolina Nascimento, Priscila Cunha Miranda, Giza Hellen Nonato Ferreira, Railson Oliveira Nabiça, Mariane Dantas, Kelly Dionizio, Aline Cartágenes, Sabrina Buzalaf, Marília Afonso Rabelo Crespo-Lopez, Maria Elena Maia, Cristiane S F Lima, Rafael Rodrigues Int J Mol Sci Article Lead (Pb) is an environmental contaminant that presents a high risk for human health. We aimed to investigate the possible alterations triggered by the exposure to Pb acetate for a long period in motor performance and the possible relationship with biochemical, proteomic and morphological alterations in the cerebellum of rats. Male Wistar rats were exposed for 55 days, at 50 mg/Kg of Pb acetate, and the control animals received distilled water. Open field (OF) and rotarod tests; biochemistry parameters (MDA and nitrite); staining/immunostaining of Purkinje cells (PC), mature neurons (MN), myelin sheath (MS) and synaptic vesicles (SYN) and proteomic profile were analyzed. Pb deposition on the cerebellum area and this study drove to exploratory and locomotion deficits and a decrease in the number of PC, MN, SYN and MS staining/immunostaining. The levels of MDA and nitrite remained unchanged. The proteomic profile showed alterations in proteins responsible for neurotransmitters release, as well as receptor function and second messengers signaling, and also proteins involved in the process of apoptosis. Thus, we conclude that the long-term exposure to low Pb dose promoted locomotion and histological tracings, associated with alterations in the process of cell signaling, as well as death by apoptosis. MDPI 2020-05-18 /pmc/articles/PMC7279001/ /pubmed/32443589 http://dx.doi.org/10.3390/ijms21103571 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Leão, Luana Ketlen Reis
Bittencourt, Leonardo Oliveira
Oliveira, Ana Carolina
Nascimento, Priscila Cunha
Miranda, Giza Hellen Nonato
Ferreira, Railson Oliveira
Nabiça, Mariane
Dantas, Kelly
Dionizio, Aline
Cartágenes, Sabrina
Buzalaf, Marília Afonso Rabelo
Crespo-Lopez, Maria Elena
Maia, Cristiane S F
Lima, Rafael Rodrigues
Long-Term Lead Exposure Since Adolescence Causes Proteomic and Morphological Alterations in the Cerebellum Associated with Motor Deficits in Adult Rats
title Long-Term Lead Exposure Since Adolescence Causes Proteomic and Morphological Alterations in the Cerebellum Associated with Motor Deficits in Adult Rats
title_full Long-Term Lead Exposure Since Adolescence Causes Proteomic and Morphological Alterations in the Cerebellum Associated with Motor Deficits in Adult Rats
title_fullStr Long-Term Lead Exposure Since Adolescence Causes Proteomic and Morphological Alterations in the Cerebellum Associated with Motor Deficits in Adult Rats
title_full_unstemmed Long-Term Lead Exposure Since Adolescence Causes Proteomic and Morphological Alterations in the Cerebellum Associated with Motor Deficits in Adult Rats
title_short Long-Term Lead Exposure Since Adolescence Causes Proteomic and Morphological Alterations in the Cerebellum Associated with Motor Deficits in Adult Rats
title_sort long-term lead exposure since adolescence causes proteomic and morphological alterations in the cerebellum associated with motor deficits in adult rats
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7279001/
https://www.ncbi.nlm.nih.gov/pubmed/32443589
http://dx.doi.org/10.3390/ijms21103571
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