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Heat shock attenuates VEGF expression in three-dimensional myoblast sheets deteriorating therapeutic efficacy in heart failure

BACKGROUND: Myoblast sheet transplantation is a promising novel treatment for ischemic heart failure. The aim of this study was to test the hypothesis that heat shock (HS) pre-treatment affects the angiogenic properties of myoblast sheets in vivo and in vitro. MATERIAL/METHODS: We studied HS precond...

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Autores principales: Augustin, Mona, Mahar, Muhammad Ali Asim, Lakkisto, Päivi, Tikkanen, Ilkka, Vento, Antti, Pätilä, Tommi, Harjula, Ari
Formato: Online Artículo Texto
Lenguaje:English
Publicado: International Scientific Literature, Inc. 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3628131/
https://www.ncbi.nlm.nih.gov/pubmed/22129892
http://dx.doi.org/10.12659/MSM.882120
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author Augustin, Mona
Mahar, Muhammad Ali Asim
Lakkisto, Päivi
Tikkanen, Ilkka
Vento, Antti
Pätilä, Tommi
Harjula, Ari
author_facet Augustin, Mona
Mahar, Muhammad Ali Asim
Lakkisto, Päivi
Tikkanen, Ilkka
Vento, Antti
Pätilä, Tommi
Harjula, Ari
author_sort Augustin, Mona
collection PubMed
description BACKGROUND: Myoblast sheet transplantation is a promising novel treatment for ischemic heart failure. The aim of this study was to test the hypothesis that heat shock (HS) pre-treatment affects the angiogenic properties of myoblast sheets in vivo and in vitro. MATERIAL/METHODS: We studied HS preconditioning of L6 myoblast sheets in relation to their apoptosis, proliferation, and vascular endothelial growth factor (VEGF)-associated responses under normoxia and under hypoxia in vitro. In vivo evaluation of their therapeutic effect was performed with 60 male Wistar rats divided into 3 groups (20 each): sole left anterior descending (LAD) ligation (control); LAD ligation and non-conditioned sheet transplantation (L6 No-Shock); and LAD ligation and L6-heat shock conditioned sheet transplantation (L6 Heat-Shock). Left ventricular function was evaluated by echocardiography after 3, 10, and 28 days. RESULTS: Expression of HSP70/72 was strongly induced 24 hours after HS, and thereafter it decreased notably during 72 hours in hypoxia. Under normal growth conditions, HSP70/72 expression remained stable. HS delayed apoptosis-associated caspase-3 expression during 24-hour hypoxia compared to non-treated controls. However, VEGF expression reduced significantly in the heat shock pretreated sheets. Ejection fraction of the L6-myoblast HS pre-treatment group (L6 Heat-Shock) decreased gradually during follow-up, in the same pattern as the controls. However, these functional parameters improved in the L6-myoblast normal sheet group (L6 No-Shock) at the tenth day and remained significantly better. CONCLUSIONS: HS protects myoblast sheets from hypoxia-associated apoptosis in vitro, but reduces VEGF expression of the sheet, leading to lower therapeutic effect in heart failure.
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spelling pubmed-36281312013-04-24 Heat shock attenuates VEGF expression in three-dimensional myoblast sheets deteriorating therapeutic efficacy in heart failure Augustin, Mona Mahar, Muhammad Ali Asim Lakkisto, Päivi Tikkanen, Ilkka Vento, Antti Pätilä, Tommi Harjula, Ari Med Sci Monit Basic Research BACKGROUND: Myoblast sheet transplantation is a promising novel treatment for ischemic heart failure. The aim of this study was to test the hypothesis that heat shock (HS) pre-treatment affects the angiogenic properties of myoblast sheets in vivo and in vitro. MATERIAL/METHODS: We studied HS preconditioning of L6 myoblast sheets in relation to their apoptosis, proliferation, and vascular endothelial growth factor (VEGF)-associated responses under normoxia and under hypoxia in vitro. In vivo evaluation of their therapeutic effect was performed with 60 male Wistar rats divided into 3 groups (20 each): sole left anterior descending (LAD) ligation (control); LAD ligation and non-conditioned sheet transplantation (L6 No-Shock); and LAD ligation and L6-heat shock conditioned sheet transplantation (L6 Heat-Shock). Left ventricular function was evaluated by echocardiography after 3, 10, and 28 days. RESULTS: Expression of HSP70/72 was strongly induced 24 hours after HS, and thereafter it decreased notably during 72 hours in hypoxia. Under normal growth conditions, HSP70/72 expression remained stable. HS delayed apoptosis-associated caspase-3 expression during 24-hour hypoxia compared to non-treated controls. However, VEGF expression reduced significantly in the heat shock pretreated sheets. Ejection fraction of the L6-myoblast HS pre-treatment group (L6 Heat-Shock) decreased gradually during follow-up, in the same pattern as the controls. However, these functional parameters improved in the L6-myoblast normal sheet group (L6 No-Shock) at the tenth day and remained significantly better. CONCLUSIONS: HS protects myoblast sheets from hypoxia-associated apoptosis in vitro, but reduces VEGF expression of the sheet, leading to lower therapeutic effect in heart failure. International Scientific Literature, Inc. 2011-12-01 /pmc/articles/PMC3628131/ /pubmed/22129892 http://dx.doi.org/10.12659/MSM.882120 Text en © Med Sci Monit, 2011 This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivs 3.0 Unported License.
spellingShingle Basic Research
Augustin, Mona
Mahar, Muhammad Ali Asim
Lakkisto, Päivi
Tikkanen, Ilkka
Vento, Antti
Pätilä, Tommi
Harjula, Ari
Heat shock attenuates VEGF expression in three-dimensional myoblast sheets deteriorating therapeutic efficacy in heart failure
title Heat shock attenuates VEGF expression in three-dimensional myoblast sheets deteriorating therapeutic efficacy in heart failure
title_full Heat shock attenuates VEGF expression in three-dimensional myoblast sheets deteriorating therapeutic efficacy in heart failure
title_fullStr Heat shock attenuates VEGF expression in three-dimensional myoblast sheets deteriorating therapeutic efficacy in heart failure
title_full_unstemmed Heat shock attenuates VEGF expression in three-dimensional myoblast sheets deteriorating therapeutic efficacy in heart failure
title_short Heat shock attenuates VEGF expression in three-dimensional myoblast sheets deteriorating therapeutic efficacy in heart failure
title_sort heat shock attenuates vegf expression in three-dimensional myoblast sheets deteriorating therapeutic efficacy in heart failure
topic Basic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3628131/
https://www.ncbi.nlm.nih.gov/pubmed/22129892
http://dx.doi.org/10.12659/MSM.882120
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