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Selective Inhibition of the Master Regulator Transcription Factor Egr‐1 With Catalytic Oligonucleotides Reduces Myocardial Injury and Improves Left Ventricular Systolic Function in a Preclinical Model of Myocardial Infarction

BACKGROUND: Egr‐1 is implicated in the pathogenesis of myocardial ischemia–reperfusion injury. The aim of this study was to ascertain the effectiveness of intracoronary delivery of DNAzyme targeting the transcription factor Egr‐1 at reperfusion following experimental myocardial ischemia. METHODS AND...

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Autores principales: Rayner, Benjamin S., Figtree, Gemma A., Sabaretnam, Tharani, Shang, Ping, Mazhar, Jawad, Weaver, James C., Lay, William N., Witting, Paul K., Hunyor, Stephen N., Grieve, Stuart M., Khachigian, Levon M., Bhindi, Ravinay
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Blackwell Publishing Ltd 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3828787/
https://www.ncbi.nlm.nih.gov/pubmed/23902638
http://dx.doi.org/10.1161/JAHA.113.000023
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author Rayner, Benjamin S.
Figtree, Gemma A.
Sabaretnam, Tharani
Shang, Ping
Mazhar, Jawad
Weaver, James C.
Lay, William N.
Witting, Paul K.
Hunyor, Stephen N.
Grieve, Stuart M.
Khachigian, Levon M.
Bhindi, Ravinay
author_facet Rayner, Benjamin S.
Figtree, Gemma A.
Sabaretnam, Tharani
Shang, Ping
Mazhar, Jawad
Weaver, James C.
Lay, William N.
Witting, Paul K.
Hunyor, Stephen N.
Grieve, Stuart M.
Khachigian, Levon M.
Bhindi, Ravinay
author_sort Rayner, Benjamin S.
collection PubMed
description BACKGROUND: Egr‐1 is implicated in the pathogenesis of myocardial ischemia–reperfusion injury. The aim of this study was to ascertain the effectiveness of intracoronary delivery of DNAzyme targeting the transcription factor Egr‐1 at reperfusion following experimental myocardial ischemia. METHODS AND RESULTS: Functional DNAzyme targeting Egr‐1 or a size‐matched scrambled control were delivered via the intracoronary route immediately on reperfusion after 60 minutes' balloon occlusion of the left anterior descending coronary artery in a pig model of myocardial I/R injury (n=7 per treatment group). Heart function and extent of myocardial infarction were determined following intervention by echocardiography and cardiac magnetic resonance imaging, respectively. Hearts were removed and examined for molecular and histological markers of inflammation and apoptosis. Administration of functional DNAzyme led to an overall decrease in the expression of inflammatory markers including intracellular adhesion molecule‐1, tissue factor, and complement 3, with associated decreases in the extent of neutrophil infiltration, oxidative damage, and subsequent apoptosis within the infarct border zone. Functional significance was indicated by an increase in salvaged left ventricular myocardium (P=0.012), ejection fraction (P=0.002), and fractional area change (P=0.039) in the functional DNAzyme–treated group compared with the control. CONCLUSIONS: Egr‐1 silencing through intracoronary delivery of a targeting DNAzyme at the time of reperfusion following acute myocardial ischemia decreases myocardial inflammation and apoptosis leading to improved cardiac function.
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spelling pubmed-38287872013-11-19 Selective Inhibition of the Master Regulator Transcription Factor Egr‐1 With Catalytic Oligonucleotides Reduces Myocardial Injury and Improves Left Ventricular Systolic Function in a Preclinical Model of Myocardial Infarction Rayner, Benjamin S. Figtree, Gemma A. Sabaretnam, Tharani Shang, Ping Mazhar, Jawad Weaver, James C. Lay, William N. Witting, Paul K. Hunyor, Stephen N. Grieve, Stuart M. Khachigian, Levon M. Bhindi, Ravinay J Am Heart Assoc Original Research BACKGROUND: Egr‐1 is implicated in the pathogenesis of myocardial ischemia–reperfusion injury. The aim of this study was to ascertain the effectiveness of intracoronary delivery of DNAzyme targeting the transcription factor Egr‐1 at reperfusion following experimental myocardial ischemia. METHODS AND RESULTS: Functional DNAzyme targeting Egr‐1 or a size‐matched scrambled control were delivered via the intracoronary route immediately on reperfusion after 60 minutes' balloon occlusion of the left anterior descending coronary artery in a pig model of myocardial I/R injury (n=7 per treatment group). Heart function and extent of myocardial infarction were determined following intervention by echocardiography and cardiac magnetic resonance imaging, respectively. Hearts were removed and examined for molecular and histological markers of inflammation and apoptosis. Administration of functional DNAzyme led to an overall decrease in the expression of inflammatory markers including intracellular adhesion molecule‐1, tissue factor, and complement 3, with associated decreases in the extent of neutrophil infiltration, oxidative damage, and subsequent apoptosis within the infarct border zone. Functional significance was indicated by an increase in salvaged left ventricular myocardium (P=0.012), ejection fraction (P=0.002), and fractional area change (P=0.039) in the functional DNAzyme–treated group compared with the control. CONCLUSIONS: Egr‐1 silencing through intracoronary delivery of a targeting DNAzyme at the time of reperfusion following acute myocardial ischemia decreases myocardial inflammation and apoptosis leading to improved cardiac function. Blackwell Publishing Ltd 2013-08-23 /pmc/articles/PMC3828787/ /pubmed/23902638 http://dx.doi.org/10.1161/JAHA.113.000023 Text en © 2013 The Authors. Published on behalf of the American Heart Association, Inc., by Wiley-Blackwell. http://creativecommons.org/licenses/by-nc/3.0/ This is an Open Access article under the terms of the Creative Commons Attribution Noncommercial License, which permits use, distribution, and reproduction in any medium, provided the original work is properly cited and is not used for commercial purposes.
spellingShingle Original Research
Rayner, Benjamin S.
Figtree, Gemma A.
Sabaretnam, Tharani
Shang, Ping
Mazhar, Jawad
Weaver, James C.
Lay, William N.
Witting, Paul K.
Hunyor, Stephen N.
Grieve, Stuart M.
Khachigian, Levon M.
Bhindi, Ravinay
Selective Inhibition of the Master Regulator Transcription Factor Egr‐1 With Catalytic Oligonucleotides Reduces Myocardial Injury and Improves Left Ventricular Systolic Function in a Preclinical Model of Myocardial Infarction
title Selective Inhibition of the Master Regulator Transcription Factor Egr‐1 With Catalytic Oligonucleotides Reduces Myocardial Injury and Improves Left Ventricular Systolic Function in a Preclinical Model of Myocardial Infarction
title_full Selective Inhibition of the Master Regulator Transcription Factor Egr‐1 With Catalytic Oligonucleotides Reduces Myocardial Injury and Improves Left Ventricular Systolic Function in a Preclinical Model of Myocardial Infarction
title_fullStr Selective Inhibition of the Master Regulator Transcription Factor Egr‐1 With Catalytic Oligonucleotides Reduces Myocardial Injury and Improves Left Ventricular Systolic Function in a Preclinical Model of Myocardial Infarction
title_full_unstemmed Selective Inhibition of the Master Regulator Transcription Factor Egr‐1 With Catalytic Oligonucleotides Reduces Myocardial Injury and Improves Left Ventricular Systolic Function in a Preclinical Model of Myocardial Infarction
title_short Selective Inhibition of the Master Regulator Transcription Factor Egr‐1 With Catalytic Oligonucleotides Reduces Myocardial Injury and Improves Left Ventricular Systolic Function in a Preclinical Model of Myocardial Infarction
title_sort selective inhibition of the master regulator transcription factor egr‐1 with catalytic oligonucleotides reduces myocardial injury and improves left ventricular systolic function in a preclinical model of myocardial infarction
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3828787/
https://www.ncbi.nlm.nih.gov/pubmed/23902638
http://dx.doi.org/10.1161/JAHA.113.000023
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