Cargando…

Matrix Metalloproteinase-2 Impairs Homing of Intracoronary Delivered Mesenchymal Stem Cells in a Porcine Reperfused Myocardial Infarction: Comparison With Intramyocardial Cell Delivery

BACKGROUND: Intracoronary (IC) injection of mesenchymal stem cells (MSCs) results in a prompt decrease of absolute myocardial blood flow (AMF) with late and incomplete recovery of myocardial tissue perfusion. Here, we investigated the effect of decreased AMF on oxidative stress marker matrix metallo...

Descripción completa

Detalles Bibliográficos
Autores principales: Zlabinger, Katrin, Lukovic, Dominika, Hemetsberger, Rayyan, Gugerell, Alfred, Winkler, Johannes, Mandic, Ljubica, Traxler, Denise, Spannbauer, Andreas, Wolbank, Susanne, Zanoni, Gerald, Kaun, Christoph, Posa, Aniko, Gyenes, Andrea, Petrasi, Zsolt, Petnehazy, Örs, Repa, Imre, Hofer-Warbinek, Renate, de Martin, Rainer, Gruber, Florian, Charwat, Silvia, Huber, Kurt, Pavo, Noemi, Pavo, Imre J., Nyolczas, Noemi, Kraitchman, Dara L., Gyöngyösi, Mariann
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5893806/
https://www.ncbi.nlm.nih.gov/pubmed/29670878
http://dx.doi.org/10.3389/fbioe.2018.00035
_version_ 1783313380823531520
author Zlabinger, Katrin
Lukovic, Dominika
Hemetsberger, Rayyan
Gugerell, Alfred
Winkler, Johannes
Mandic, Ljubica
Traxler, Denise
Spannbauer, Andreas
Wolbank, Susanne
Zanoni, Gerald
Kaun, Christoph
Posa, Aniko
Gyenes, Andrea
Petrasi, Zsolt
Petnehazy, Örs
Repa, Imre
Hofer-Warbinek, Renate
de Martin, Rainer
Gruber, Florian
Charwat, Silvia
Huber, Kurt
Pavo, Noemi
Pavo, Imre J.
Nyolczas, Noemi
Kraitchman, Dara L.
Gyöngyösi, Mariann
author_facet Zlabinger, Katrin
Lukovic, Dominika
Hemetsberger, Rayyan
Gugerell, Alfred
Winkler, Johannes
Mandic, Ljubica
Traxler, Denise
Spannbauer, Andreas
Wolbank, Susanne
Zanoni, Gerald
Kaun, Christoph
Posa, Aniko
Gyenes, Andrea
Petrasi, Zsolt
Petnehazy, Örs
Repa, Imre
Hofer-Warbinek, Renate
de Martin, Rainer
Gruber, Florian
Charwat, Silvia
Huber, Kurt
Pavo, Noemi
Pavo, Imre J.
Nyolczas, Noemi
Kraitchman, Dara L.
Gyöngyösi, Mariann
author_sort Zlabinger, Katrin
collection PubMed
description BACKGROUND: Intracoronary (IC) injection of mesenchymal stem cells (MSCs) results in a prompt decrease of absolute myocardial blood flow (AMF) with late and incomplete recovery of myocardial tissue perfusion. Here, we investigated the effect of decreased AMF on oxidative stress marker matrix metalloproteinase-2 (MMP-2) and its influence on the fate and homing and paracrine character of MSCs after IC or intramyocardial cell delivery in a closed-chest reperfused myocardial infarction (MI) model in pigs. METHODS: Porcine MSCs were transiently transfected with Ad-Luc and Ad-green fluorescent protein (GFP). One week after MI, the GFP-Luc-MSCs were injected either IC (group IC, 11.00 ± 1.07 × 10(6)) or intramyocardially (group IM, 9.88 ± 1.44 × 10(6)). AMF was measured before, immediately after, and 24 h post GFP-Luc-MSC delivery. In vitro bioluminescence signal was used to identify tissue samples containing GFP-Luc-MSCs. Myocardial tissue MMP-2 and CXCR4 receptor expression (index of homing signal) were measured in bioluminescence positive and negative infarcted and border, and non-ischemic myocardial areas 1-day post cell transfer. At 7-day follow-up, myocardial homing (cadherin, CXCR4, and stromal derived factor-1alpha) and angiogenic [fibroblast growth factor 2 (FGF2) and VEGF] were quantified by ELISA of homogenized myocardial tissues from the bioluminescence positive and negative infarcted and border, and non-ischemic myocardium. Biodistribution of the implanted cells was quantified by using Luciferase assay and confirmed by fluorescence immunochemistry. Global left ventricular ejection fraction (LVEF) was measured at baseline and 1-month post cell therapy using magnet resonance image. RESULTS: AMF decreased immediately after IC cell delivery, while no change in tissue perfusion was found in the IM group (42.6 ± 11.7 vs. 56.9 ± 16.7 ml/min, p = 0.018). IC delivery led to a significant increase in myocardial MMP-2 64 kD expression (448 ± 88 vs. 315 ± 54 intensity × mm(2), p = 0.021), and decreased expression of CXCR4 (592 ± 50 vs. 714 ± 54 pg/tissue/ml, p = 0.006), with significant exponential decay between MMP-2 and CXCR4 (r = 0.679, p < 0.001). FGF2 and VEGF of the bioluminescence infarcted and border zone of homogenized tissues were significantly elevated in the IM goups as compared to IC group. LVEF increase was significantly higher in IM group (0.8 ± 8.4 vs 5.3 ± 5.2%, p = 0.046) at the 1-month follow up. CONCLUSION: Intracoronary stem cell delivery decreased AMF, with consequent increase in myocardial expression of MMP-2 and reduced CXCR4 expression with lower level of myocardial homing and angiogenic factor release as compared to IM cell delivery.
format Online
Article
Text
id pubmed-5893806
institution National Center for Biotechnology Information
language English
publishDate 2018
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-58938062018-04-18 Matrix Metalloproteinase-2 Impairs Homing of Intracoronary Delivered Mesenchymal Stem Cells in a Porcine Reperfused Myocardial Infarction: Comparison With Intramyocardial Cell Delivery Zlabinger, Katrin Lukovic, Dominika Hemetsberger, Rayyan Gugerell, Alfred Winkler, Johannes Mandic, Ljubica Traxler, Denise Spannbauer, Andreas Wolbank, Susanne Zanoni, Gerald Kaun, Christoph Posa, Aniko Gyenes, Andrea Petrasi, Zsolt Petnehazy, Örs Repa, Imre Hofer-Warbinek, Renate de Martin, Rainer Gruber, Florian Charwat, Silvia Huber, Kurt Pavo, Noemi Pavo, Imre J. Nyolczas, Noemi Kraitchman, Dara L. Gyöngyösi, Mariann Front Bioeng Biotechnol Bioengineering and Biotechnology BACKGROUND: Intracoronary (IC) injection of mesenchymal stem cells (MSCs) results in a prompt decrease of absolute myocardial blood flow (AMF) with late and incomplete recovery of myocardial tissue perfusion. Here, we investigated the effect of decreased AMF on oxidative stress marker matrix metalloproteinase-2 (MMP-2) and its influence on the fate and homing and paracrine character of MSCs after IC or intramyocardial cell delivery in a closed-chest reperfused myocardial infarction (MI) model in pigs. METHODS: Porcine MSCs were transiently transfected with Ad-Luc and Ad-green fluorescent protein (GFP). One week after MI, the GFP-Luc-MSCs were injected either IC (group IC, 11.00 ± 1.07 × 10(6)) or intramyocardially (group IM, 9.88 ± 1.44 × 10(6)). AMF was measured before, immediately after, and 24 h post GFP-Luc-MSC delivery. In vitro bioluminescence signal was used to identify tissue samples containing GFP-Luc-MSCs. Myocardial tissue MMP-2 and CXCR4 receptor expression (index of homing signal) were measured in bioluminescence positive and negative infarcted and border, and non-ischemic myocardial areas 1-day post cell transfer. At 7-day follow-up, myocardial homing (cadherin, CXCR4, and stromal derived factor-1alpha) and angiogenic [fibroblast growth factor 2 (FGF2) and VEGF] were quantified by ELISA of homogenized myocardial tissues from the bioluminescence positive and negative infarcted and border, and non-ischemic myocardium. Biodistribution of the implanted cells was quantified by using Luciferase assay and confirmed by fluorescence immunochemistry. Global left ventricular ejection fraction (LVEF) was measured at baseline and 1-month post cell therapy using magnet resonance image. RESULTS: AMF decreased immediately after IC cell delivery, while no change in tissue perfusion was found in the IM group (42.6 ± 11.7 vs. 56.9 ± 16.7 ml/min, p = 0.018). IC delivery led to a significant increase in myocardial MMP-2 64 kD expression (448 ± 88 vs. 315 ± 54 intensity × mm(2), p = 0.021), and decreased expression of CXCR4 (592 ± 50 vs. 714 ± 54 pg/tissue/ml, p = 0.006), with significant exponential decay between MMP-2 and CXCR4 (r = 0.679, p < 0.001). FGF2 and VEGF of the bioluminescence infarcted and border zone of homogenized tissues were significantly elevated in the IM goups as compared to IC group. LVEF increase was significantly higher in IM group (0.8 ± 8.4 vs 5.3 ± 5.2%, p = 0.046) at the 1-month follow up. CONCLUSION: Intracoronary stem cell delivery decreased AMF, with consequent increase in myocardial expression of MMP-2 and reduced CXCR4 expression with lower level of myocardial homing and angiogenic factor release as compared to IM cell delivery. Frontiers Media S.A. 2018-04-04 /pmc/articles/PMC5893806/ /pubmed/29670878 http://dx.doi.org/10.3389/fbioe.2018.00035 Text en Copyright © 2018 Zlabinger, Lukovic, Hemetsberger, Gugerell, Winkler, Mandic, Traxler, Spannbauer, Wolbank, Zanoni, Kaun, Posa, Gyenes, Petrasi, Petnehazy, Repa, Hofer-Warbinek, de Martin, Gruber, Charwat, Huber, Pavo, Pavo, Nyolczas, Kraitchman and Gyöngyösi. https://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Bioengineering and Biotechnology
Zlabinger, Katrin
Lukovic, Dominika
Hemetsberger, Rayyan
Gugerell, Alfred
Winkler, Johannes
Mandic, Ljubica
Traxler, Denise
Spannbauer, Andreas
Wolbank, Susanne
Zanoni, Gerald
Kaun, Christoph
Posa, Aniko
Gyenes, Andrea
Petrasi, Zsolt
Petnehazy, Örs
Repa, Imre
Hofer-Warbinek, Renate
de Martin, Rainer
Gruber, Florian
Charwat, Silvia
Huber, Kurt
Pavo, Noemi
Pavo, Imre J.
Nyolczas, Noemi
Kraitchman, Dara L.
Gyöngyösi, Mariann
Matrix Metalloproteinase-2 Impairs Homing of Intracoronary Delivered Mesenchymal Stem Cells in a Porcine Reperfused Myocardial Infarction: Comparison With Intramyocardial Cell Delivery
title Matrix Metalloproteinase-2 Impairs Homing of Intracoronary Delivered Mesenchymal Stem Cells in a Porcine Reperfused Myocardial Infarction: Comparison With Intramyocardial Cell Delivery
title_full Matrix Metalloproteinase-2 Impairs Homing of Intracoronary Delivered Mesenchymal Stem Cells in a Porcine Reperfused Myocardial Infarction: Comparison With Intramyocardial Cell Delivery
title_fullStr Matrix Metalloproteinase-2 Impairs Homing of Intracoronary Delivered Mesenchymal Stem Cells in a Porcine Reperfused Myocardial Infarction: Comparison With Intramyocardial Cell Delivery
title_full_unstemmed Matrix Metalloproteinase-2 Impairs Homing of Intracoronary Delivered Mesenchymal Stem Cells in a Porcine Reperfused Myocardial Infarction: Comparison With Intramyocardial Cell Delivery
title_short Matrix Metalloproteinase-2 Impairs Homing of Intracoronary Delivered Mesenchymal Stem Cells in a Porcine Reperfused Myocardial Infarction: Comparison With Intramyocardial Cell Delivery
title_sort matrix metalloproteinase-2 impairs homing of intracoronary delivered mesenchymal stem cells in a porcine reperfused myocardial infarction: comparison with intramyocardial cell delivery
topic Bioengineering and Biotechnology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5893806/
https://www.ncbi.nlm.nih.gov/pubmed/29670878
http://dx.doi.org/10.3389/fbioe.2018.00035
work_keys_str_mv AT zlabingerkatrin matrixmetalloproteinase2impairshomingofintracoronarydeliveredmesenchymalstemcellsinaporcinereperfusedmyocardialinfarctioncomparisonwithintramyocardialcelldelivery
AT lukovicdominika matrixmetalloproteinase2impairshomingofintracoronarydeliveredmesenchymalstemcellsinaporcinereperfusedmyocardialinfarctioncomparisonwithintramyocardialcelldelivery
AT hemetsbergerrayyan matrixmetalloproteinase2impairshomingofintracoronarydeliveredmesenchymalstemcellsinaporcinereperfusedmyocardialinfarctioncomparisonwithintramyocardialcelldelivery
AT gugerellalfred matrixmetalloproteinase2impairshomingofintracoronarydeliveredmesenchymalstemcellsinaporcinereperfusedmyocardialinfarctioncomparisonwithintramyocardialcelldelivery
AT winklerjohannes matrixmetalloproteinase2impairshomingofintracoronarydeliveredmesenchymalstemcellsinaporcinereperfusedmyocardialinfarctioncomparisonwithintramyocardialcelldelivery
AT mandicljubica matrixmetalloproteinase2impairshomingofintracoronarydeliveredmesenchymalstemcellsinaporcinereperfusedmyocardialinfarctioncomparisonwithintramyocardialcelldelivery
AT traxlerdenise matrixmetalloproteinase2impairshomingofintracoronarydeliveredmesenchymalstemcellsinaporcinereperfusedmyocardialinfarctioncomparisonwithintramyocardialcelldelivery
AT spannbauerandreas matrixmetalloproteinase2impairshomingofintracoronarydeliveredmesenchymalstemcellsinaporcinereperfusedmyocardialinfarctioncomparisonwithintramyocardialcelldelivery
AT wolbanksusanne matrixmetalloproteinase2impairshomingofintracoronarydeliveredmesenchymalstemcellsinaporcinereperfusedmyocardialinfarctioncomparisonwithintramyocardialcelldelivery
AT zanonigerald matrixmetalloproteinase2impairshomingofintracoronarydeliveredmesenchymalstemcellsinaporcinereperfusedmyocardialinfarctioncomparisonwithintramyocardialcelldelivery
AT kaunchristoph matrixmetalloproteinase2impairshomingofintracoronarydeliveredmesenchymalstemcellsinaporcinereperfusedmyocardialinfarctioncomparisonwithintramyocardialcelldelivery
AT posaaniko matrixmetalloproteinase2impairshomingofintracoronarydeliveredmesenchymalstemcellsinaporcinereperfusedmyocardialinfarctioncomparisonwithintramyocardialcelldelivery
AT gyenesandrea matrixmetalloproteinase2impairshomingofintracoronarydeliveredmesenchymalstemcellsinaporcinereperfusedmyocardialinfarctioncomparisonwithintramyocardialcelldelivery
AT petrasizsolt matrixmetalloproteinase2impairshomingofintracoronarydeliveredmesenchymalstemcellsinaporcinereperfusedmyocardialinfarctioncomparisonwithintramyocardialcelldelivery
AT petnehazyors matrixmetalloproteinase2impairshomingofintracoronarydeliveredmesenchymalstemcellsinaporcinereperfusedmyocardialinfarctioncomparisonwithintramyocardialcelldelivery
AT repaimre matrixmetalloproteinase2impairshomingofintracoronarydeliveredmesenchymalstemcellsinaporcinereperfusedmyocardialinfarctioncomparisonwithintramyocardialcelldelivery
AT hoferwarbinekrenate matrixmetalloproteinase2impairshomingofintracoronarydeliveredmesenchymalstemcellsinaporcinereperfusedmyocardialinfarctioncomparisonwithintramyocardialcelldelivery
AT demartinrainer matrixmetalloproteinase2impairshomingofintracoronarydeliveredmesenchymalstemcellsinaporcinereperfusedmyocardialinfarctioncomparisonwithintramyocardialcelldelivery
AT gruberflorian matrixmetalloproteinase2impairshomingofintracoronarydeliveredmesenchymalstemcellsinaporcinereperfusedmyocardialinfarctioncomparisonwithintramyocardialcelldelivery
AT charwatsilvia matrixmetalloproteinase2impairshomingofintracoronarydeliveredmesenchymalstemcellsinaporcinereperfusedmyocardialinfarctioncomparisonwithintramyocardialcelldelivery
AT huberkurt matrixmetalloproteinase2impairshomingofintracoronarydeliveredmesenchymalstemcellsinaporcinereperfusedmyocardialinfarctioncomparisonwithintramyocardialcelldelivery
AT pavonoemi matrixmetalloproteinase2impairshomingofintracoronarydeliveredmesenchymalstemcellsinaporcinereperfusedmyocardialinfarctioncomparisonwithintramyocardialcelldelivery
AT pavoimrej matrixmetalloproteinase2impairshomingofintracoronarydeliveredmesenchymalstemcellsinaporcinereperfusedmyocardialinfarctioncomparisonwithintramyocardialcelldelivery
AT nyolczasnoemi matrixmetalloproteinase2impairshomingofintracoronarydeliveredmesenchymalstemcellsinaporcinereperfusedmyocardialinfarctioncomparisonwithintramyocardialcelldelivery
AT kraitchmandaral matrixmetalloproteinase2impairshomingofintracoronarydeliveredmesenchymalstemcellsinaporcinereperfusedmyocardialinfarctioncomparisonwithintramyocardialcelldelivery
AT gyongyosimariann matrixmetalloproteinase2impairshomingofintracoronarydeliveredmesenchymalstemcellsinaporcinereperfusedmyocardialinfarctioncomparisonwithintramyocardialcelldelivery