Cargando…

A G-CSF functionalized scaffold for stem cells seeding: a differentiating device for cardiac purposes

Myocardial infarction and its consequences represent one of the most demanding challenges in cell therapy and regenerative medicine. Transfer of skeletal myoblasts into decompensated hearts has been performed through intramyocardial injection. However, the achievements of both cardiomyocyte differen...

Descripción completa

Detalles Bibliográficos
Autores principales: Spadaccio, Cristiano, Rainer, Alberto, Trombetta, Marcella, Centola, Matteo, Lusini, Mario, Chello, Massimo, Covino, Elvio, De Marco, Federico, Coccia, Raffaella, Toyoda, Yoshiya, Genovese, Jorge A
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Blackwell Publishing Ltd 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3822623/
https://www.ncbi.nlm.nih.gov/pubmed/20518852
http://dx.doi.org/10.1111/j.1582-4934.2010.01100.x
_version_ 1782290434227175424
author Spadaccio, Cristiano
Rainer, Alberto
Trombetta, Marcella
Centola, Matteo
Lusini, Mario
Chello, Massimo
Covino, Elvio
De Marco, Federico
Coccia, Raffaella
Toyoda, Yoshiya
Genovese, Jorge A
author_facet Spadaccio, Cristiano
Rainer, Alberto
Trombetta, Marcella
Centola, Matteo
Lusini, Mario
Chello, Massimo
Covino, Elvio
De Marco, Federico
Coccia, Raffaella
Toyoda, Yoshiya
Genovese, Jorge A
author_sort Spadaccio, Cristiano
collection PubMed
description Myocardial infarction and its consequences represent one of the most demanding challenges in cell therapy and regenerative medicine. Transfer of skeletal myoblasts into decompensated hearts has been performed through intramyocardial injection. However, the achievements of both cardiomyocyte differentiation and precise integration of the injected cells into the myocardial wall, in order to augment synchronized contractility and avoid potentially life-threatening alterations in the electrical conduction of the heart, still remain a major target to be pursued. Recently, granulocytes colony-stimulating factor (G-CSF) fuelled the interest of researchers for its direct effect on cardiomyocytes, inhibiting both apoptosis and remodelling in the failing heart and protecting from ventricular arrhythmias through the up-regulation of connexin 43 (Cx43). We propose a tissue engineering approach concerning the fabrication of an electrospun cardiac graft functionalized with G-CSF, in order to provide the correct signalling sequence to orientate myoblast differentiation and exert important systemic and local effects, positively modulating the infarction microenvironment. Poly-(l-lactide) electrospun scaffolds were seeded with C2C12 murine skeletal myoblast for 48 hrs. Biological assays demonstrated the induction of Cx43 expression along with morphostructural changes resulting in cell elongation and appearance of cellular junctions resembling the usual cardiomyocyte arrangement at the ultrastructural level. The possibility of fabricating extracellular matrix-mimicking scaffolds able to promote myoblast pre-commitment towards myocardiocyte lineage and mitigate the hazardous environment of the damaged myocardium represents an interesting strategy in cardiac tissue engineering.
format Online
Article
Text
id pubmed-3822623
institution National Center for Biotechnology Information
language English
publishDate 2011
publisher Blackwell Publishing Ltd
record_format MEDLINE/PubMed
spelling pubmed-38226232015-04-06 A G-CSF functionalized scaffold for stem cells seeding: a differentiating device for cardiac purposes Spadaccio, Cristiano Rainer, Alberto Trombetta, Marcella Centola, Matteo Lusini, Mario Chello, Massimo Covino, Elvio De Marco, Federico Coccia, Raffaella Toyoda, Yoshiya Genovese, Jorge A J Cell Mol Med Articles Myocardial infarction and its consequences represent one of the most demanding challenges in cell therapy and regenerative medicine. Transfer of skeletal myoblasts into decompensated hearts has been performed through intramyocardial injection. However, the achievements of both cardiomyocyte differentiation and precise integration of the injected cells into the myocardial wall, in order to augment synchronized contractility and avoid potentially life-threatening alterations in the electrical conduction of the heart, still remain a major target to be pursued. Recently, granulocytes colony-stimulating factor (G-CSF) fuelled the interest of researchers for its direct effect on cardiomyocytes, inhibiting both apoptosis and remodelling in the failing heart and protecting from ventricular arrhythmias through the up-regulation of connexin 43 (Cx43). We propose a tissue engineering approach concerning the fabrication of an electrospun cardiac graft functionalized with G-CSF, in order to provide the correct signalling sequence to orientate myoblast differentiation and exert important systemic and local effects, positively modulating the infarction microenvironment. Poly-(l-lactide) electrospun scaffolds were seeded with C2C12 murine skeletal myoblast for 48 hrs. Biological assays demonstrated the induction of Cx43 expression along with morphostructural changes resulting in cell elongation and appearance of cellular junctions resembling the usual cardiomyocyte arrangement at the ultrastructural level. The possibility of fabricating extracellular matrix-mimicking scaffolds able to promote myoblast pre-commitment towards myocardiocyte lineage and mitigate the hazardous environment of the damaged myocardium represents an interesting strategy in cardiac tissue engineering. Blackwell Publishing Ltd 2011-05 2010-06-01 /pmc/articles/PMC3822623/ /pubmed/20518852 http://dx.doi.org/10.1111/j.1582-4934.2010.01100.x Text en © 2011 The Authors Journal of Cellular and Molecular Medicine © 2011 Foundation for Cellular and Molecular Medicine/Blackwell Publishing Ltd
spellingShingle Articles
Spadaccio, Cristiano
Rainer, Alberto
Trombetta, Marcella
Centola, Matteo
Lusini, Mario
Chello, Massimo
Covino, Elvio
De Marco, Federico
Coccia, Raffaella
Toyoda, Yoshiya
Genovese, Jorge A
A G-CSF functionalized scaffold for stem cells seeding: a differentiating device for cardiac purposes
title A G-CSF functionalized scaffold for stem cells seeding: a differentiating device for cardiac purposes
title_full A G-CSF functionalized scaffold for stem cells seeding: a differentiating device for cardiac purposes
title_fullStr A G-CSF functionalized scaffold for stem cells seeding: a differentiating device for cardiac purposes
title_full_unstemmed A G-CSF functionalized scaffold for stem cells seeding: a differentiating device for cardiac purposes
title_short A G-CSF functionalized scaffold for stem cells seeding: a differentiating device for cardiac purposes
title_sort g-csf functionalized scaffold for stem cells seeding: a differentiating device for cardiac purposes
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3822623/
https://www.ncbi.nlm.nih.gov/pubmed/20518852
http://dx.doi.org/10.1111/j.1582-4934.2010.01100.x
work_keys_str_mv AT spadacciocristiano agcsffunctionalizedscaffoldforstemcellsseedingadifferentiatingdeviceforcardiacpurposes
AT raineralberto agcsffunctionalizedscaffoldforstemcellsseedingadifferentiatingdeviceforcardiacpurposes
AT trombettamarcella agcsffunctionalizedscaffoldforstemcellsseedingadifferentiatingdeviceforcardiacpurposes
AT centolamatteo agcsffunctionalizedscaffoldforstemcellsseedingadifferentiatingdeviceforcardiacpurposes
AT lusinimario agcsffunctionalizedscaffoldforstemcellsseedingadifferentiatingdeviceforcardiacpurposes
AT chellomassimo agcsffunctionalizedscaffoldforstemcellsseedingadifferentiatingdeviceforcardiacpurposes
AT covinoelvio agcsffunctionalizedscaffoldforstemcellsseedingadifferentiatingdeviceforcardiacpurposes
AT demarcofederico agcsffunctionalizedscaffoldforstemcellsseedingadifferentiatingdeviceforcardiacpurposes
AT cocciaraffaella agcsffunctionalizedscaffoldforstemcellsseedingadifferentiatingdeviceforcardiacpurposes
AT toyodayoshiya agcsffunctionalizedscaffoldforstemcellsseedingadifferentiatingdeviceforcardiacpurposes
AT genovesejorgea agcsffunctionalizedscaffoldforstemcellsseedingadifferentiatingdeviceforcardiacpurposes
AT spadacciocristiano gcsffunctionalizedscaffoldforstemcellsseedingadifferentiatingdeviceforcardiacpurposes
AT raineralberto gcsffunctionalizedscaffoldforstemcellsseedingadifferentiatingdeviceforcardiacpurposes
AT trombettamarcella gcsffunctionalizedscaffoldforstemcellsseedingadifferentiatingdeviceforcardiacpurposes
AT centolamatteo gcsffunctionalizedscaffoldforstemcellsseedingadifferentiatingdeviceforcardiacpurposes
AT lusinimario gcsffunctionalizedscaffoldforstemcellsseedingadifferentiatingdeviceforcardiacpurposes
AT chellomassimo gcsffunctionalizedscaffoldforstemcellsseedingadifferentiatingdeviceforcardiacpurposes
AT covinoelvio gcsffunctionalizedscaffoldforstemcellsseedingadifferentiatingdeviceforcardiacpurposes
AT demarcofederico gcsffunctionalizedscaffoldforstemcellsseedingadifferentiatingdeviceforcardiacpurposes
AT cocciaraffaella gcsffunctionalizedscaffoldforstemcellsseedingadifferentiatingdeviceforcardiacpurposes
AT toyodayoshiya gcsffunctionalizedscaffoldforstemcellsseedingadifferentiatingdeviceforcardiacpurposes
AT genovesejorgea gcsffunctionalizedscaffoldforstemcellsseedingadifferentiatingdeviceforcardiacpurposes