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Trisulfate Disaccharide Decreases Calcium Overload and Protects Liver Injury Secondary to Liver Ischemia/Reperfusion

BACKGROUND: Ischemia and reperfusion (I/R) causes tissue damage and intracellular calcium levels are a factor of cell death. Sodium calcium exchanger (NCX) regulates calcium extrusion and Trisulfated Disaccharide (TD) acts on NCX decreasing intracellular calcium through the inhibition of the exchang...

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Autores principales: Vasques, Enio Rodrigues, Cunha, Jose Eduardo Monteiro, Coelho, Ana Maria Mendonca, Sampietre, Sandra N., Patzina, Rosely Antunes, Abdo, Emilio Elias, Nader, Helena B., Tersariol, Ivarne L. S., Lima, Marcelo Andrade, Godoy, Carlos M. G., Rodrigues, Tiago, Chaib, Eleazar, D’Albuquerque, Luiz A. C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4763191/
https://www.ncbi.nlm.nih.gov/pubmed/26901764
http://dx.doi.org/10.1371/journal.pone.0149630
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author Vasques, Enio Rodrigues
Cunha, Jose Eduardo Monteiro
Coelho, Ana Maria Mendonca
Sampietre, Sandra N.
Patzina, Rosely Antunes
Abdo, Emilio Elias
Nader, Helena B.
Tersariol, Ivarne L. S.
Lima, Marcelo Andrade
Godoy, Carlos M. G.
Rodrigues, Tiago
Chaib, Eleazar
D’Albuquerque, Luiz A. C.
author_facet Vasques, Enio Rodrigues
Cunha, Jose Eduardo Monteiro
Coelho, Ana Maria Mendonca
Sampietre, Sandra N.
Patzina, Rosely Antunes
Abdo, Emilio Elias
Nader, Helena B.
Tersariol, Ivarne L. S.
Lima, Marcelo Andrade
Godoy, Carlos M. G.
Rodrigues, Tiago
Chaib, Eleazar
D’Albuquerque, Luiz A. C.
author_sort Vasques, Enio Rodrigues
collection PubMed
description BACKGROUND: Ischemia and reperfusion (I/R) causes tissue damage and intracellular calcium levels are a factor of cell death. Sodium calcium exchanger (NCX) regulates calcium extrusion and Trisulfated Disaccharide (TD) acts on NCX decreasing intracellular calcium through the inhibition of the exchange inhibitory peptide (XIP). OBJECTIVES: The aims of this research are to evaluate TD effects in liver injury secondary to I/R in animals and in vitro action on cytosolic calcium of hepatocytes cultures under calcium overload. METHODS: Wistar rats submitted to partial liver ischemia were divided in groups: Control: (n = 10): surgical manipulation with no liver ischemia; Saline: (n = 15): rats receiving IV saline before reperfusion; and TD: (n = 15): rats receiving IV TD before reperfusion. Four hours after reperfusion, serum levels of AST, ALT, TNF-α, IL-6, and IL-10 were measured. Liver tissue samples were collected for mitochondrial function and malondialdehyde (MDA) content. Pulmonary vascular permeability and histologic parameters of liver were determined. TD effect on cytosolic calcium was evaluated in BRL3A hepatic rat cell cultures stimulated by thapsigargin pre and after treatment with TD. RESULTS: AST, ALT, cytokines, liver MDA, mitochondrial dysfunction and hepatic histologic injury scores were less in TD group when compared to Saline Group (p<0.05) with no differences in pulmonary vascular permeability. In culture cells, TD diminished the intracellular calcium raise and prevented the calcium increase pre and after treatment with thapsigargin, respectively. CONCLUSION: TD decreases liver cell damage, preserves mitochondrial function and increases hepatic tolerance to I/R injury by calcium extrusion in Ca2+ overload situations.
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spelling pubmed-47631912016-03-07 Trisulfate Disaccharide Decreases Calcium Overload and Protects Liver Injury Secondary to Liver Ischemia/Reperfusion Vasques, Enio Rodrigues Cunha, Jose Eduardo Monteiro Coelho, Ana Maria Mendonca Sampietre, Sandra N. Patzina, Rosely Antunes Abdo, Emilio Elias Nader, Helena B. Tersariol, Ivarne L. S. Lima, Marcelo Andrade Godoy, Carlos M. G. Rodrigues, Tiago Chaib, Eleazar D’Albuquerque, Luiz A. C. PLoS One Research Article BACKGROUND: Ischemia and reperfusion (I/R) causes tissue damage and intracellular calcium levels are a factor of cell death. Sodium calcium exchanger (NCX) regulates calcium extrusion and Trisulfated Disaccharide (TD) acts on NCX decreasing intracellular calcium through the inhibition of the exchange inhibitory peptide (XIP). OBJECTIVES: The aims of this research are to evaluate TD effects in liver injury secondary to I/R in animals and in vitro action on cytosolic calcium of hepatocytes cultures under calcium overload. METHODS: Wistar rats submitted to partial liver ischemia were divided in groups: Control: (n = 10): surgical manipulation with no liver ischemia; Saline: (n = 15): rats receiving IV saline before reperfusion; and TD: (n = 15): rats receiving IV TD before reperfusion. Four hours after reperfusion, serum levels of AST, ALT, TNF-α, IL-6, and IL-10 were measured. Liver tissue samples were collected for mitochondrial function and malondialdehyde (MDA) content. Pulmonary vascular permeability and histologic parameters of liver were determined. TD effect on cytosolic calcium was evaluated in BRL3A hepatic rat cell cultures stimulated by thapsigargin pre and after treatment with TD. RESULTS: AST, ALT, cytokines, liver MDA, mitochondrial dysfunction and hepatic histologic injury scores were less in TD group when compared to Saline Group (p<0.05) with no differences in pulmonary vascular permeability. In culture cells, TD diminished the intracellular calcium raise and prevented the calcium increase pre and after treatment with thapsigargin, respectively. CONCLUSION: TD decreases liver cell damage, preserves mitochondrial function and increases hepatic tolerance to I/R injury by calcium extrusion in Ca2+ overload situations. Public Library of Science 2016-02-22 /pmc/articles/PMC4763191/ /pubmed/26901764 http://dx.doi.org/10.1371/journal.pone.0149630 Text en © 2016 Vasques et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Vasques, Enio Rodrigues
Cunha, Jose Eduardo Monteiro
Coelho, Ana Maria Mendonca
Sampietre, Sandra N.
Patzina, Rosely Antunes
Abdo, Emilio Elias
Nader, Helena B.
Tersariol, Ivarne L. S.
Lima, Marcelo Andrade
Godoy, Carlos M. G.
Rodrigues, Tiago
Chaib, Eleazar
D’Albuquerque, Luiz A. C.
Trisulfate Disaccharide Decreases Calcium Overload and Protects Liver Injury Secondary to Liver Ischemia/Reperfusion
title Trisulfate Disaccharide Decreases Calcium Overload and Protects Liver Injury Secondary to Liver Ischemia/Reperfusion
title_full Trisulfate Disaccharide Decreases Calcium Overload and Protects Liver Injury Secondary to Liver Ischemia/Reperfusion
title_fullStr Trisulfate Disaccharide Decreases Calcium Overload and Protects Liver Injury Secondary to Liver Ischemia/Reperfusion
title_full_unstemmed Trisulfate Disaccharide Decreases Calcium Overload and Protects Liver Injury Secondary to Liver Ischemia/Reperfusion
title_short Trisulfate Disaccharide Decreases Calcium Overload and Protects Liver Injury Secondary to Liver Ischemia/Reperfusion
title_sort trisulfate disaccharide decreases calcium overload and protects liver injury secondary to liver ischemia/reperfusion
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4763191/
https://www.ncbi.nlm.nih.gov/pubmed/26901764
http://dx.doi.org/10.1371/journal.pone.0149630
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