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Short-term diabetes attenuates left ventricular dysfunction and mortality rates after myocardial infarction in rodents
OBJECTIVES: To investigate the effects of hyperglycemia on left ventricular dysfunction, morphometry, myocardial infarction area, hemodynamic parameters, oxidative stress profile, and mortality rate in rats that had undergone seven days of myocardial infarction. INTRODUCTION: Previous research has d...
Autores principales: | , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
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Hospital das Clínicas da Faculdade de Medicina da Universidade de São Paulo
2011
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3161225/ https://www.ncbi.nlm.nih.gov/pubmed/21915497 http://dx.doi.org/10.1590/S1807-59322011000800022 |
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author | Rodrigues, Bruno Figueroa, Diego Mendrot Taboas Fang, Jiao Rosa, Kaleizu Teodoro Llesuy, Suzana De Angelis, Kátia Irigoyen, Maria Cláudia |
author_facet | Rodrigues, Bruno Figueroa, Diego Mendrot Taboas Fang, Jiao Rosa, Kaleizu Teodoro Llesuy, Suzana De Angelis, Kátia Irigoyen, Maria Cláudia |
author_sort | Rodrigues, Bruno |
collection | PubMed |
description | OBJECTIVES: To investigate the effects of hyperglycemia on left ventricular dysfunction, morphometry, myocardial infarction area, hemodynamic parameters, oxidative stress profile, and mortality rate in rats that had undergone seven days of myocardial infarction. INTRODUCTION: Previous research has demonstrated that hyperglycemia may protect the heart against ischemic injury. METHODS: Male Wistar rats were divided into four groups: control-sham, diabetes-sham, myocardial infarction, and diabetes + myocardial infarction. Myocardial infarction was induced 14 days after diabetes induction. Ventricular function and morphometry, as well as oxidative stress and hemodynamic parameters, were evaluated after seven days of myocardial infarction. RESULTS: The myocardial infarction area, which was similar in the infarcted groups at the initial evaluation, was reduced in the diabetes + myocardial infarction animals (23±3%) when compared with the myocardial infarction (42±7%, p<0.001) animals at the final evaluation. The ejection fraction (22%, p = 0.003), velocity of circumferential fiber shortening (30%, p = 0.001), and left ventricular isovolumetric relaxation time (26%, p = 0.002) were increased in the diabetes + myocardial infarction group compared with the myocardial infarction group. The diabetes-sham and diabetes + myocardial infarction groups displayed increased catalase concentrations compared to the control-sham and myocardial infarction groups (diabetes-sham: 32±3; diabetes + myocardial infarction: 35±0.7; control-sham: 12±2; myocardial infarction: 16±0.1 pmol min(-1) mg(-1) protein). The levels of thiobarbituric acid-reactive substances were reduced in the diabetes-sham rats compared to the control-sham rats. These positive adaptations were reflected in a reduced mortality rate in the diabetes + myocardial infarction animals (18.5%) compared with the myocardial infarction animals (40.7%, p = 0.001). CONCLUSIONS: These data suggest that short-term hyperglycemia initiates compensatory mechanisms, as demonstrated by increased catalase levels, which culminate in improvements in the ventricular response, infarcted area, and mortality rate in diabetic rats exposed to ischemic injury. |
format | Online Article Text |
id | pubmed-3161225 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2011 |
publisher | Hospital das Clínicas da Faculdade de Medicina da Universidade de São Paulo |
record_format | MEDLINE/PubMed |
spelling | pubmed-31612252011-08-29 Short-term diabetes attenuates left ventricular dysfunction and mortality rates after myocardial infarction in rodents Rodrigues, Bruno Figueroa, Diego Mendrot Taboas Fang, Jiao Rosa, Kaleizu Teodoro Llesuy, Suzana De Angelis, Kátia Irigoyen, Maria Cláudia Clinics (Sao Paulo) Basic Research OBJECTIVES: To investigate the effects of hyperglycemia on left ventricular dysfunction, morphometry, myocardial infarction area, hemodynamic parameters, oxidative stress profile, and mortality rate in rats that had undergone seven days of myocardial infarction. INTRODUCTION: Previous research has demonstrated that hyperglycemia may protect the heart against ischemic injury. METHODS: Male Wistar rats were divided into four groups: control-sham, diabetes-sham, myocardial infarction, and diabetes + myocardial infarction. Myocardial infarction was induced 14 days after diabetes induction. Ventricular function and morphometry, as well as oxidative stress and hemodynamic parameters, were evaluated after seven days of myocardial infarction. RESULTS: The myocardial infarction area, which was similar in the infarcted groups at the initial evaluation, was reduced in the diabetes + myocardial infarction animals (23±3%) when compared with the myocardial infarction (42±7%, p<0.001) animals at the final evaluation. The ejection fraction (22%, p = 0.003), velocity of circumferential fiber shortening (30%, p = 0.001), and left ventricular isovolumetric relaxation time (26%, p = 0.002) were increased in the diabetes + myocardial infarction group compared with the myocardial infarction group. The diabetes-sham and diabetes + myocardial infarction groups displayed increased catalase concentrations compared to the control-sham and myocardial infarction groups (diabetes-sham: 32±3; diabetes + myocardial infarction: 35±0.7; control-sham: 12±2; myocardial infarction: 16±0.1 pmol min(-1) mg(-1) protein). The levels of thiobarbituric acid-reactive substances were reduced in the diabetes-sham rats compared to the control-sham rats. These positive adaptations were reflected in a reduced mortality rate in the diabetes + myocardial infarction animals (18.5%) compared with the myocardial infarction animals (40.7%, p = 0.001). CONCLUSIONS: These data suggest that short-term hyperglycemia initiates compensatory mechanisms, as demonstrated by increased catalase levels, which culminate in improvements in the ventricular response, infarcted area, and mortality rate in diabetic rats exposed to ischemic injury. Hospital das Clínicas da Faculdade de Medicina da Universidade de São Paulo 2011-08 /pmc/articles/PMC3161225/ /pubmed/21915497 http://dx.doi.org/10.1590/S1807-59322011000800022 Text en Copyright © 2011 Hospital das Clínicas da FMUSP http://creativecommons.org/licenses/by-nc/3.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/3.0/) which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited. |
spellingShingle | Basic Research Rodrigues, Bruno Figueroa, Diego Mendrot Taboas Fang, Jiao Rosa, Kaleizu Teodoro Llesuy, Suzana De Angelis, Kátia Irigoyen, Maria Cláudia Short-term diabetes attenuates left ventricular dysfunction and mortality rates after myocardial infarction in rodents |
title | Short-term diabetes attenuates left ventricular dysfunction and mortality rates after myocardial infarction in rodents |
title_full | Short-term diabetes attenuates left ventricular dysfunction and mortality rates after myocardial infarction in rodents |
title_fullStr | Short-term diabetes attenuates left ventricular dysfunction and mortality rates after myocardial infarction in rodents |
title_full_unstemmed | Short-term diabetes attenuates left ventricular dysfunction and mortality rates after myocardial infarction in rodents |
title_short | Short-term diabetes attenuates left ventricular dysfunction and mortality rates after myocardial infarction in rodents |
title_sort | short-term diabetes attenuates left ventricular dysfunction and mortality rates after myocardial infarction in rodents |
topic | Basic Research |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3161225/ https://www.ncbi.nlm.nih.gov/pubmed/21915497 http://dx.doi.org/10.1590/S1807-59322011000800022 |
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