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A Bioengineered Neuregulin-Hydrogel Therapy Reduces Scar Size and Enhances Post-Infarct Ventricular Contractility in an Ovine Large Animal Model

The clinical efficacy of neuregulin (NRG) in the treatment of heart failure is hindered by off-target exposure due to systemic delivery. We previously encapsulated neuregulin in a hydrogel (HG) for targeted and sustained myocardial delivery, demonstrating significant induction of cardiomyocyte proli...

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Autores principales: Cohen, Jeffrey E., Goldstone, Andrew B., Wang, Hanjay, Purcell, Brendan P., Shudo, Yasuhiro, MacArthur, John W., Steele, Amanda N., Paulsen, Michael J., Edwards, Bryan B., Aribeana, Chiaka N., Cheung, Nicholas C., Burdick, Jason A., Woo, Y. Joseph
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7711763/
https://www.ncbi.nlm.nih.gov/pubmed/33212844
http://dx.doi.org/10.3390/jcdd7040053
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author Cohen, Jeffrey E.
Goldstone, Andrew B.
Wang, Hanjay
Purcell, Brendan P.
Shudo, Yasuhiro
MacArthur, John W.
Steele, Amanda N.
Paulsen, Michael J.
Edwards, Bryan B.
Aribeana, Chiaka N.
Cheung, Nicholas C.
Burdick, Jason A.
Woo, Y. Joseph
author_facet Cohen, Jeffrey E.
Goldstone, Andrew B.
Wang, Hanjay
Purcell, Brendan P.
Shudo, Yasuhiro
MacArthur, John W.
Steele, Amanda N.
Paulsen, Michael J.
Edwards, Bryan B.
Aribeana, Chiaka N.
Cheung, Nicholas C.
Burdick, Jason A.
Woo, Y. Joseph
author_sort Cohen, Jeffrey E.
collection PubMed
description The clinical efficacy of neuregulin (NRG) in the treatment of heart failure is hindered by off-target exposure due to systemic delivery. We previously encapsulated neuregulin in a hydrogel (HG) for targeted and sustained myocardial delivery, demonstrating significant induction of cardiomyocyte proliferation and preservation of post-infarct cardiac function in a murine myocardial infarction (MI) model. Here, we performed a focused evaluation of our hydrogel-encapsulated neuregulin (NRG-HG) therapy’s potential to enhance cardiac function in an ovine large animal MI model. Adult male Dorset sheep (n = 21) underwent surgical induction of MI by coronary artery ligation. The sheep were randomized to receive an intramyocardial injection of saline, HG only, NRG only, or NRG-HG circumferentially around the infarct borderzone. Eight weeks after MI, closed-chest intracardiac pressure–volume hemodynamics were assessed, followed by heart explant for infarct size analysis. Compared to each of the control groups, NRG-HG significantly augmented left ventricular ejection fraction (p = 0.006) and contractility based on the slope of the end-systolic pressure–volume relationship (p = 0.006). NRG-HG also significantly reduced infarct scar size (p = 0.002). Overall, using a bioengineered hydrogel delivery system, a one-time dose of NRG delivered intramyocardially to the infarct borderzone at the time of MI in adult sheep significantly reduces scar size and enhances ventricular contractility at 8 weeks after MI.
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spelling pubmed-77117632020-12-04 A Bioengineered Neuregulin-Hydrogel Therapy Reduces Scar Size and Enhances Post-Infarct Ventricular Contractility in an Ovine Large Animal Model Cohen, Jeffrey E. Goldstone, Andrew B. Wang, Hanjay Purcell, Brendan P. Shudo, Yasuhiro MacArthur, John W. Steele, Amanda N. Paulsen, Michael J. Edwards, Bryan B. Aribeana, Chiaka N. Cheung, Nicholas C. Burdick, Jason A. Woo, Y. Joseph J Cardiovasc Dev Dis Communication The clinical efficacy of neuregulin (NRG) in the treatment of heart failure is hindered by off-target exposure due to systemic delivery. We previously encapsulated neuregulin in a hydrogel (HG) for targeted and sustained myocardial delivery, demonstrating significant induction of cardiomyocyte proliferation and preservation of post-infarct cardiac function in a murine myocardial infarction (MI) model. Here, we performed a focused evaluation of our hydrogel-encapsulated neuregulin (NRG-HG) therapy’s potential to enhance cardiac function in an ovine large animal MI model. Adult male Dorset sheep (n = 21) underwent surgical induction of MI by coronary artery ligation. The sheep were randomized to receive an intramyocardial injection of saline, HG only, NRG only, or NRG-HG circumferentially around the infarct borderzone. Eight weeks after MI, closed-chest intracardiac pressure–volume hemodynamics were assessed, followed by heart explant for infarct size analysis. Compared to each of the control groups, NRG-HG significantly augmented left ventricular ejection fraction (p = 0.006) and contractility based on the slope of the end-systolic pressure–volume relationship (p = 0.006). NRG-HG also significantly reduced infarct scar size (p = 0.002). Overall, using a bioengineered hydrogel delivery system, a one-time dose of NRG delivered intramyocardially to the infarct borderzone at the time of MI in adult sheep significantly reduces scar size and enhances ventricular contractility at 8 weeks after MI. MDPI 2020-11-17 /pmc/articles/PMC7711763/ /pubmed/33212844 http://dx.doi.org/10.3390/jcdd7040053 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 Communication
Cohen, Jeffrey E.
Goldstone, Andrew B.
Wang, Hanjay
Purcell, Brendan P.
Shudo, Yasuhiro
MacArthur, John W.
Steele, Amanda N.
Paulsen, Michael J.
Edwards, Bryan B.
Aribeana, Chiaka N.
Cheung, Nicholas C.
Burdick, Jason A.
Woo, Y. Joseph
A Bioengineered Neuregulin-Hydrogel Therapy Reduces Scar Size and Enhances Post-Infarct Ventricular Contractility in an Ovine Large Animal Model
title A Bioengineered Neuregulin-Hydrogel Therapy Reduces Scar Size and Enhances Post-Infarct Ventricular Contractility in an Ovine Large Animal Model
title_full A Bioengineered Neuregulin-Hydrogel Therapy Reduces Scar Size and Enhances Post-Infarct Ventricular Contractility in an Ovine Large Animal Model
title_fullStr A Bioengineered Neuregulin-Hydrogel Therapy Reduces Scar Size and Enhances Post-Infarct Ventricular Contractility in an Ovine Large Animal Model
title_full_unstemmed A Bioengineered Neuregulin-Hydrogel Therapy Reduces Scar Size and Enhances Post-Infarct Ventricular Contractility in an Ovine Large Animal Model
title_short A Bioengineered Neuregulin-Hydrogel Therapy Reduces Scar Size and Enhances Post-Infarct Ventricular Contractility in an Ovine Large Animal Model
title_sort bioengineered neuregulin-hydrogel therapy reduces scar size and enhances post-infarct ventricular contractility in an ovine large animal model
topic Communication
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7711763/
https://www.ncbi.nlm.nih.gov/pubmed/33212844
http://dx.doi.org/10.3390/jcdd7040053
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