Mesenchymal Stem Cells Promote Matrix Metalloproteinase Secretion by Cardiac Fibroblasts and Reduce Cardiac Ventricular Fibrosis After Myocardial Infarction

Author:

Mias Céline12,Lairez Olivier12,Trouche Elodie12,Roncalli Jérome1,Calise Denis3,Seguelas Marie-Hélène1,Ordener Catherine1,Piercecchi-Marti Marie-Dominique4,Auge Nathalie1,Salvayre Anne Negre1,Bourin Philippe5,Parini Angelo12,Cussac Daniel12

Affiliation:

1. INSERM U858, Toulouse, France

2. Université de Toulouse, UPS, Institut de Médecine Moléculaire de Rangueil, Toulouse, France

3. INSERM Zootechny, Department of Experimental Microsurgery, Toulouse, France

4. INSERM UMR-S 608, Université de la Méditerranée, Marseille, France

5. EFS, Laboratoire de thérapie cellulaire, Toulouse, France

Abstract

Abstract Recent studies showed that mesenchymal stem cells (MSCs) transplantation significantly decreased cardiac fibrosis; however, the mechanisms involved in these effects are still poorly understood. In this work, we investigated whether the antifibrotic properties of MSCs involve the regulation of matrix metalloproteinases (MMPs) and matrix metalloproteinase endogenous inhibitor (TIMP) production by cardiac fibroblasts. In vitro experiments showed that conditioned medium from MSCs decreased viability, α-smooth muscle actin expression, and collagen secretion of cardiac fibroblasts. These effects were concomitant with the stimulation of MMP-2/MMP-9 activities and membrane type 1 MMP expression. Experiments performed with fibroblasts from MMP2-knockout mice demonstrated that MMP-2 plays a preponderant role in preventing collagen accumulation upon incubation with conditioned medium from MSCs. We found that MSC-conditioned medium also decreased the expression of TIMP2 in cardiac fibroblasts. In vivo studies showed that intracardiac injection of MSCs in a rat model of postischemic heart failure induced a significant decrease in ventricular fibrosis. This effect was associated with the improvement of morphological and functional cardiac parameters. In conclusion, we showed that MSCs modulate the phenotype of cardiac fibroblasts and their ability to degrade extracellular matrix. These properties of MSCs open new perspectives for understanding the mechanisms of action of MSCs and anticipate their potential therapeutic or side effects. Disclosure of potential conflicts of interest is found at the end of this article.

Funder

INSERM

National Research Agency (ANR)

Région Midi-Pyrénées

Fondation pour la Recherche Médicale

Publisher

Oxford University Press (OUP)

Subject

Cell Biology,Developmental Biology,Molecular Medicine

Reference43 articles.

1. The immune system and cardiac repair;Frangogiannis;Pharmacol Res,2008

2. The cardiac fibroblast: therapeutic target in myocardial remodeling and failure;Brown;Annu Rev Pharmacol Toxicol,2005

3. Infarct scar as living tissue;Sun;Basic Res Cardiol,2002

4. Infarct scar: a dynamic tissue;Sun;Cardiovasc Res,2000

5. Remodeling after stroke;Zlokovic;Nat Med,2006

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