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VEGF-B-induced vascular growth leads to metabolic reprogramming and ischemia resistance in the heart
Angiogenic growth factors have recently been linked to tissue metabolism. We have used genetic gain- and loss-of function models to elucidate the effects and mechanisms of action of vascular endothelial growth factor-B (VEGF-B) in the heart. A cardiomyocyte-specific VEGF-B transgene induced an expan...
Autores principales: | , , , , , , , , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Blackwell Publishing Ltd
2014
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3958306/ https://www.ncbi.nlm.nih.gov/pubmed/24448490 http://dx.doi.org/10.1002/emmm.201303147 |
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author | Kivelä, Riikka Bry, Maija Robciuc, Marius R Räsänen, Markus Taavitsainen, Miia Silvola, Johanna MU Saraste, Antti Hulmi, Juha J Anisimov, Andrey Mäyränpää, Mikko I Lindeman, Jan H Eklund, Lauri Hellberg, Sanna Hlushchuk, Ruslan Zhuang, Zhen W Simons, Michael Djonov, Valentin Knuuti, Juhani Mervaala, Eero Alitalo, Kari |
author_facet | Kivelä, Riikka Bry, Maija Robciuc, Marius R Räsänen, Markus Taavitsainen, Miia Silvola, Johanna MU Saraste, Antti Hulmi, Juha J Anisimov, Andrey Mäyränpää, Mikko I Lindeman, Jan H Eklund, Lauri Hellberg, Sanna Hlushchuk, Ruslan Zhuang, Zhen W Simons, Michael Djonov, Valentin Knuuti, Juhani Mervaala, Eero Alitalo, Kari |
author_sort | Kivelä, Riikka |
collection | PubMed |
description | Angiogenic growth factors have recently been linked to tissue metabolism. We have used genetic gain- and loss-of function models to elucidate the effects and mechanisms of action of vascular endothelial growth factor-B (VEGF-B) in the heart. A cardiomyocyte-specific VEGF-B transgene induced an expanded coronary arterial tree and reprogramming of cardiomyocyte metabolism. This was associated with protection against myocardial infarction and preservation of mitochondrial complex I function upon ischemia-reperfusion. VEGF-B increased VEGF signals via VEGF receptor-2 to activate Erk1/2, which resulted in vascular growth. Akt and mTORC1 pathways were upregulated and AMPK downregulated, readjusting cardiomyocyte metabolic pathways to favor glucose oxidation and macromolecular biosynthesis. However, contrasting with a previous theory, there was no difference in fatty acid uptake by the heart between the VEGF-B transgenic, gene-targeted or wildtype rats. Importantly, we also show that VEGF-B expression is reduced in human heart disease. Our data indicate that VEGF-B could be used to increase the coronary vasculature and to reprogram myocardial metabolism to improve cardiac function in ischemic heart disease. Subject Categories Cardiovascular System; Metabolism See also: C Kupatt and R Hinkel (March 2014) |
format | Online Article Text |
id | pubmed-3958306 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2014 |
publisher | Blackwell Publishing Ltd |
record_format | MEDLINE/PubMed |
spelling | pubmed-39583062014-03-31 VEGF-B-induced vascular growth leads to metabolic reprogramming and ischemia resistance in the heart Kivelä, Riikka Bry, Maija Robciuc, Marius R Räsänen, Markus Taavitsainen, Miia Silvola, Johanna MU Saraste, Antti Hulmi, Juha J Anisimov, Andrey Mäyränpää, Mikko I Lindeman, Jan H Eklund, Lauri Hellberg, Sanna Hlushchuk, Ruslan Zhuang, Zhen W Simons, Michael Djonov, Valentin Knuuti, Juhani Mervaala, Eero Alitalo, Kari EMBO Mol Med Research Articles Angiogenic growth factors have recently been linked to tissue metabolism. We have used genetic gain- and loss-of function models to elucidate the effects and mechanisms of action of vascular endothelial growth factor-B (VEGF-B) in the heart. A cardiomyocyte-specific VEGF-B transgene induced an expanded coronary arterial tree and reprogramming of cardiomyocyte metabolism. This was associated with protection against myocardial infarction and preservation of mitochondrial complex I function upon ischemia-reperfusion. VEGF-B increased VEGF signals via VEGF receptor-2 to activate Erk1/2, which resulted in vascular growth. Akt and mTORC1 pathways were upregulated and AMPK downregulated, readjusting cardiomyocyte metabolic pathways to favor glucose oxidation and macromolecular biosynthesis. However, contrasting with a previous theory, there was no difference in fatty acid uptake by the heart between the VEGF-B transgenic, gene-targeted or wildtype rats. Importantly, we also show that VEGF-B expression is reduced in human heart disease. Our data indicate that VEGF-B could be used to increase the coronary vasculature and to reprogram myocardial metabolism to improve cardiac function in ischemic heart disease. Subject Categories Cardiovascular System; Metabolism See also: C Kupatt and R Hinkel (March 2014) Blackwell Publishing Ltd 2014-03 2014-01-21 /pmc/articles/PMC3958306/ /pubmed/24448490 http://dx.doi.org/10.1002/emmm.201303147 Text en © 2014 The Authors. http://creativecommons.org/licenses/by/3.0/ This is an open access article under the terms of the Creative Commons Attribution License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited. |
spellingShingle | Research Articles Kivelä, Riikka Bry, Maija Robciuc, Marius R Räsänen, Markus Taavitsainen, Miia Silvola, Johanna MU Saraste, Antti Hulmi, Juha J Anisimov, Andrey Mäyränpää, Mikko I Lindeman, Jan H Eklund, Lauri Hellberg, Sanna Hlushchuk, Ruslan Zhuang, Zhen W Simons, Michael Djonov, Valentin Knuuti, Juhani Mervaala, Eero Alitalo, Kari VEGF-B-induced vascular growth leads to metabolic reprogramming and ischemia resistance in the heart |
title | VEGF-B-induced vascular growth leads to metabolic reprogramming and ischemia resistance in the heart |
title_full | VEGF-B-induced vascular growth leads to metabolic reprogramming and ischemia resistance in the heart |
title_fullStr | VEGF-B-induced vascular growth leads to metabolic reprogramming and ischemia resistance in the heart |
title_full_unstemmed | VEGF-B-induced vascular growth leads to metabolic reprogramming and ischemia resistance in the heart |
title_short | VEGF-B-induced vascular growth leads to metabolic reprogramming and ischemia resistance in the heart |
title_sort | vegf-b-induced vascular growth leads to metabolic reprogramming and ischemia resistance in the heart |
topic | Research Articles |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3958306/ https://www.ncbi.nlm.nih.gov/pubmed/24448490 http://dx.doi.org/10.1002/emmm.201303147 |
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