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Intravenous Glial Growth Factor 2 (GGF2) Isoform of Neuregulin-1β Improves Left Ventricular Function, Gene and Protein Expression in Rats after Myocardial Infarction

AIMS: Recombinant Neuregulin (NRG)-1β has multiple beneficial effects on cardiac myocytes in culture, and has potential as a clinical therapy for heart failure (HF). A number of factors may influence the effect of NRG-1β on cardiac function via ErbB receptor coupling and expression. We examined the...

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Autores principales: Hill, Michael F., Patel, Amish V., Murphy, Abigail, Smith, Holly M., Galindo, Cristi L., Pentassuglia, Laura, Peng, Xuyang, Lenneman, Carrie G., Odiete, Oghenerukevwe, Friedman, David B., Kronenberg, Marvin W., Zheng, Siyuen, Zhao, Zhongming, Song, Yanna, Harrell, Frank E., Srinivas, Maya, Ganguly, Anindita, Iaci, Jennifer, Parry, Tom J., Caggiano, Anthony O., Sawyer, Douglas B.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3578842/
https://www.ncbi.nlm.nih.gov/pubmed/23437060
http://dx.doi.org/10.1371/journal.pone.0055741
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author Hill, Michael F.
Patel, Amish V.
Murphy, Abigail
Smith, Holly M.
Galindo, Cristi L.
Pentassuglia, Laura
Peng, Xuyang
Lenneman, Carrie G.
Odiete, Oghenerukevwe
Friedman, David B.
Kronenberg, Marvin W.
Zheng, Siyuen
Zhao, Zhongming
Song, Yanna
Harrell, Frank E.
Srinivas, Maya
Ganguly, Anindita
Iaci, Jennifer
Parry, Tom J.
Caggiano, Anthony O.
Sawyer, Douglas B.
author_facet Hill, Michael F.
Patel, Amish V.
Murphy, Abigail
Smith, Holly M.
Galindo, Cristi L.
Pentassuglia, Laura
Peng, Xuyang
Lenneman, Carrie G.
Odiete, Oghenerukevwe
Friedman, David B.
Kronenberg, Marvin W.
Zheng, Siyuen
Zhao, Zhongming
Song, Yanna
Harrell, Frank E.
Srinivas, Maya
Ganguly, Anindita
Iaci, Jennifer
Parry, Tom J.
Caggiano, Anthony O.
Sawyer, Douglas B.
author_sort Hill, Michael F.
collection PubMed
description AIMS: Recombinant Neuregulin (NRG)-1β has multiple beneficial effects on cardiac myocytes in culture, and has potential as a clinical therapy for heart failure (HF). A number of factors may influence the effect of NRG-1β on cardiac function via ErbB receptor coupling and expression. We examined the effect of the NRG-1β isoform, glial growth factor 2 (GGF2), in rats with myocardial infarction (MI) and determined the impact of high-fat diet as well as chronicity of disease on GGF2 induced improvement in left ventricular systolic function. Potential mechanisms for GGF2 effects on the remote myocardium were explored using microarray and proteomic analysis. METHODS AND RESULTS: Rats with MI were randomized to receive vehicle, 0.625 mg/kg, or 3.25 mg/kg GGF2 in the presence and absence of high-fat feeding beginning at day 7 post-MI and continuing for 4 weeks. Residual left ventricular (LV) function was improved in both of the GGF2 treatment groups compared with the vehicle treated MI group at 4 weeks of treatment as assessed by echocardiography. High-fat diet did not prevent the effects of high dose GGF2. In experiments where treatment was delayed until 8 weeks after MI, high but not low dose GGF2 treatment was associated with improved systolic function. mRNA and protein expression analysis of remote left ventricular tissue revealed a number of changes in myocardial gene and protein expression altered by MI that were normalized by GGF2 treatment, many of which are involved in energy production. CONCLUSIONS: This study demonstrates that in rats with MI induced systolic dysfunction, GGF2 treatment improves cardiac function. There are differences in sensitivity of the myocardium to GGF2 effects when administered early vs. late post-MI that may be important to consider in the development of GGF2 in humans.
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spelling pubmed-35788422013-02-22 Intravenous Glial Growth Factor 2 (GGF2) Isoform of Neuregulin-1β Improves Left Ventricular Function, Gene and Protein Expression in Rats after Myocardial Infarction Hill, Michael F. Patel, Amish V. Murphy, Abigail Smith, Holly M. Galindo, Cristi L. Pentassuglia, Laura Peng, Xuyang Lenneman, Carrie G. Odiete, Oghenerukevwe Friedman, David B. Kronenberg, Marvin W. Zheng, Siyuen Zhao, Zhongming Song, Yanna Harrell, Frank E. Srinivas, Maya Ganguly, Anindita Iaci, Jennifer Parry, Tom J. Caggiano, Anthony O. Sawyer, Douglas B. PLoS One Research Article AIMS: Recombinant Neuregulin (NRG)-1β has multiple beneficial effects on cardiac myocytes in culture, and has potential as a clinical therapy for heart failure (HF). A number of factors may influence the effect of NRG-1β on cardiac function via ErbB receptor coupling and expression. We examined the effect of the NRG-1β isoform, glial growth factor 2 (GGF2), in rats with myocardial infarction (MI) and determined the impact of high-fat diet as well as chronicity of disease on GGF2 induced improvement in left ventricular systolic function. Potential mechanisms for GGF2 effects on the remote myocardium were explored using microarray and proteomic analysis. METHODS AND RESULTS: Rats with MI were randomized to receive vehicle, 0.625 mg/kg, or 3.25 mg/kg GGF2 in the presence and absence of high-fat feeding beginning at day 7 post-MI and continuing for 4 weeks. Residual left ventricular (LV) function was improved in both of the GGF2 treatment groups compared with the vehicle treated MI group at 4 weeks of treatment as assessed by echocardiography. High-fat diet did not prevent the effects of high dose GGF2. In experiments where treatment was delayed until 8 weeks after MI, high but not low dose GGF2 treatment was associated with improved systolic function. mRNA and protein expression analysis of remote left ventricular tissue revealed a number of changes in myocardial gene and protein expression altered by MI that were normalized by GGF2 treatment, many of which are involved in energy production. CONCLUSIONS: This study demonstrates that in rats with MI induced systolic dysfunction, GGF2 treatment improves cardiac function. There are differences in sensitivity of the myocardium to GGF2 effects when administered early vs. late post-MI that may be important to consider in the development of GGF2 in humans. Public Library of Science 2013-02-21 /pmc/articles/PMC3578842/ /pubmed/23437060 http://dx.doi.org/10.1371/journal.pone.0055741 Text en © 2013 Hill 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, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Hill, Michael F.
Patel, Amish V.
Murphy, Abigail
Smith, Holly M.
Galindo, Cristi L.
Pentassuglia, Laura
Peng, Xuyang
Lenneman, Carrie G.
Odiete, Oghenerukevwe
Friedman, David B.
Kronenberg, Marvin W.
Zheng, Siyuen
Zhao, Zhongming
Song, Yanna
Harrell, Frank E.
Srinivas, Maya
Ganguly, Anindita
Iaci, Jennifer
Parry, Tom J.
Caggiano, Anthony O.
Sawyer, Douglas B.
Intravenous Glial Growth Factor 2 (GGF2) Isoform of Neuregulin-1β Improves Left Ventricular Function, Gene and Protein Expression in Rats after Myocardial Infarction
title Intravenous Glial Growth Factor 2 (GGF2) Isoform of Neuregulin-1β Improves Left Ventricular Function, Gene and Protein Expression in Rats after Myocardial Infarction
title_full Intravenous Glial Growth Factor 2 (GGF2) Isoform of Neuregulin-1β Improves Left Ventricular Function, Gene and Protein Expression in Rats after Myocardial Infarction
title_fullStr Intravenous Glial Growth Factor 2 (GGF2) Isoform of Neuregulin-1β Improves Left Ventricular Function, Gene and Protein Expression in Rats after Myocardial Infarction
title_full_unstemmed Intravenous Glial Growth Factor 2 (GGF2) Isoform of Neuregulin-1β Improves Left Ventricular Function, Gene and Protein Expression in Rats after Myocardial Infarction
title_short Intravenous Glial Growth Factor 2 (GGF2) Isoform of Neuregulin-1β Improves Left Ventricular Function, Gene and Protein Expression in Rats after Myocardial Infarction
title_sort intravenous glial growth factor 2 (ggf2) isoform of neuregulin-1β improves left ventricular function, gene and protein expression in rats after myocardial infarction
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3578842/
https://www.ncbi.nlm.nih.gov/pubmed/23437060
http://dx.doi.org/10.1371/journal.pone.0055741
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