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Cardiomyogenic differentiation-independent improvement of cardiac function by human cardiomyocyte progenitor cell injection in ischaemic mouse hearts

We previously showed that human cardiomyocyte progenitor cells (hCMPCs) injected after myocardial infarction (MI) had differentiated into cardiomyocytes in vivo 3 months after MI. Here, we investigated the short-term (2 weeks) effects of hCMPCs on the infarcted mouse myocardium. MI was induced in im...

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Autores principales: den Haan, Melina C, Grauss, Robert W, Smits, Anke M, Winter, Elizabeth M, van Tuyn, John, Pijnappels, Daniël A, Steendijk, Paul, Gittenberger-De Groot, Adriana C, van der Laarse, Arnoud, Fibbe, Willem E, de Vries, Antoine A F, Schalij, Martin J, Doevendans, Pieter A, Goumans, Marie-José, Atsma, Douwe E
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Blackwell Publishing Ltd 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3823219/
https://www.ncbi.nlm.nih.gov/pubmed/22003890
http://dx.doi.org/10.1111/j.1582-4934.2011.01468.x
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author den Haan, Melina C
Grauss, Robert W
Smits, Anke M
Winter, Elizabeth M
van Tuyn, John
Pijnappels, Daniël A
Steendijk, Paul
Gittenberger-De Groot, Adriana C
van der Laarse, Arnoud
Fibbe, Willem E
de Vries, Antoine A F
Schalij, Martin J
Doevendans, Pieter A
Goumans, Marie-José
Atsma, Douwe E
author_facet den Haan, Melina C
Grauss, Robert W
Smits, Anke M
Winter, Elizabeth M
van Tuyn, John
Pijnappels, Daniël A
Steendijk, Paul
Gittenberger-De Groot, Adriana C
van der Laarse, Arnoud
Fibbe, Willem E
de Vries, Antoine A F
Schalij, Martin J
Doevendans, Pieter A
Goumans, Marie-José
Atsma, Douwe E
author_sort den Haan, Melina C
collection PubMed
description We previously showed that human cardiomyocyte progenitor cells (hCMPCs) injected after myocardial infarction (MI) had differentiated into cardiomyocytes in vivo 3 months after MI. Here, we investigated the short-term (2 weeks) effects of hCMPCs on the infarcted mouse myocardium. MI was induced in immunocompromised (NOD/scid) mice, immediately followed by intramyocardial injection of hCMPCs labelled with enhanced green fluorescent protein (hCMPC group) or vehicle only (control group). Sham-operated mice served as reference. Cardiac performance was measured 2 and 14 days after MI by magnetic resonance imaging at 9.4 T. Left ventricular (LV) pressure–volume measurements were performed at day 15 followed by extensive immunohistological analysis. Animals injected with hCMPCs demonstrated a higher LV ejection fraction, lower LV end-systolic volume and smaller relaxation time constant than control animals 14 days after MI. hCMPCs engrafted in the infarcted myocardium, did not differentiate into cardiomyocytes, but increased vascular density and proliferation rate in the infarcted and border zone area of the hCMPC group. Injected hCMPCs engraft into murine infarcted myocardium where they improve LV systolic function and attenuate the ventricular remodelling process 2 weeks after MI. Since no cardiac differentiation of hCMPCs was evident after 2 weeks, the observed beneficial effects were most likely mediated by paracrine factors, targeting amongst others vascular homeostasis. These results demonstrate that hCMPCs can be applied to repair infarcted myocardium without the need to undergo differentiation into cardiomyocytes.
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spelling pubmed-38232192015-03-27 Cardiomyogenic differentiation-independent improvement of cardiac function by human cardiomyocyte progenitor cell injection in ischaemic mouse hearts den Haan, Melina C Grauss, Robert W Smits, Anke M Winter, Elizabeth M van Tuyn, John Pijnappels, Daniël A Steendijk, Paul Gittenberger-De Groot, Adriana C van der Laarse, Arnoud Fibbe, Willem E de Vries, Antoine A F Schalij, Martin J Doevendans, Pieter A Goumans, Marie-José Atsma, Douwe E J Cell Mol Med Original Articles We previously showed that human cardiomyocyte progenitor cells (hCMPCs) injected after myocardial infarction (MI) had differentiated into cardiomyocytes in vivo 3 months after MI. Here, we investigated the short-term (2 weeks) effects of hCMPCs on the infarcted mouse myocardium. MI was induced in immunocompromised (NOD/scid) mice, immediately followed by intramyocardial injection of hCMPCs labelled with enhanced green fluorescent protein (hCMPC group) or vehicle only (control group). Sham-operated mice served as reference. Cardiac performance was measured 2 and 14 days after MI by magnetic resonance imaging at 9.4 T. Left ventricular (LV) pressure–volume measurements were performed at day 15 followed by extensive immunohistological analysis. Animals injected with hCMPCs demonstrated a higher LV ejection fraction, lower LV end-systolic volume and smaller relaxation time constant than control animals 14 days after MI. hCMPCs engrafted in the infarcted myocardium, did not differentiate into cardiomyocytes, but increased vascular density and proliferation rate in the infarcted and border zone area of the hCMPC group. Injected hCMPCs engraft into murine infarcted myocardium where they improve LV systolic function and attenuate the ventricular remodelling process 2 weeks after MI. Since no cardiac differentiation of hCMPCs was evident after 2 weeks, the observed beneficial effects were most likely mediated by paracrine factors, targeting amongst others vascular homeostasis. These results demonstrate that hCMPCs can be applied to repair infarcted myocardium without the need to undergo differentiation into cardiomyocytes. Blackwell Publishing Ltd 2012-07 2012-06-28 /pmc/articles/PMC3823219/ /pubmed/22003890 http://dx.doi.org/10.1111/j.1582-4934.2011.01468.x Text en Copyright © 2012 Foundation for Cellular and Molecular Medicine/Blackwell Publishing Ltd.
spellingShingle Original Articles
den Haan, Melina C
Grauss, Robert W
Smits, Anke M
Winter, Elizabeth M
van Tuyn, John
Pijnappels, Daniël A
Steendijk, Paul
Gittenberger-De Groot, Adriana C
van der Laarse, Arnoud
Fibbe, Willem E
de Vries, Antoine A F
Schalij, Martin J
Doevendans, Pieter A
Goumans, Marie-José
Atsma, Douwe E
Cardiomyogenic differentiation-independent improvement of cardiac function by human cardiomyocyte progenitor cell injection in ischaemic mouse hearts
title Cardiomyogenic differentiation-independent improvement of cardiac function by human cardiomyocyte progenitor cell injection in ischaemic mouse hearts
title_full Cardiomyogenic differentiation-independent improvement of cardiac function by human cardiomyocyte progenitor cell injection in ischaemic mouse hearts
title_fullStr Cardiomyogenic differentiation-independent improvement of cardiac function by human cardiomyocyte progenitor cell injection in ischaemic mouse hearts
title_full_unstemmed Cardiomyogenic differentiation-independent improvement of cardiac function by human cardiomyocyte progenitor cell injection in ischaemic mouse hearts
title_short Cardiomyogenic differentiation-independent improvement of cardiac function by human cardiomyocyte progenitor cell injection in ischaemic mouse hearts
title_sort cardiomyogenic differentiation-independent improvement of cardiac function by human cardiomyocyte progenitor cell injection in ischaemic mouse hearts
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3823219/
https://www.ncbi.nlm.nih.gov/pubmed/22003890
http://dx.doi.org/10.1111/j.1582-4934.2011.01468.x
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