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dc.contributor.authorLlucia Valldeperes, A.
dc.contributor.authorSoler Botija, Carolina
dc.contributor.authorGálvez Montón, Carolina
dc.contributor.authorRoura, Santiago
dc.contributor.authorPrat Vidal, Cristina
dc.contributor.authorPerea Gil, Isaac
dc.contributor.authorSánchez Terrones, Benjamin
dc.contributor.authorBragós Bardia, Ramon
dc.contributor.authorVunjak-Novakovic, Gordana
dc.contributor.authorBayés Genis, Antoni
dc.contributor.otherUniversitat Politècnica de Catalunya. Departament d'Enginyeria Electrònica
dc.date.accessioned2017-05-12T11:48:33Z
dc.date.issued2016-09-29
dc.identifier.citationLlucia, A., Soler, C., Gálvez, C., Roura, S., Cristina Prat-Vidal, Perea, I., Sánchez, B., Bragos, R., Vunjak-Novakovic, G., Bayés-Genis, A. Electromechanical conditioning of adult progenitor cells improves recovery of cardiac function after myocardial infarction. "Stem Cells Translational Medicine", 29 Setembre 2016, vol. 6, núm. 5, p. 970-981.
dc.identifier.issn2157-6564
dc.identifier.urihttp://hdl.handle.net/2117/104365
dc.description.abstractCardiac cells are subjected to mechanical and electrical forces, which regulate gene expression and cellular function. Therefore, in vitro electromechanical stimuli could benefit further integration of therapeutic cells into the myocardium. Our goals were (a) to study the viability of a tissue engineered construct with cardiac adipose tissue-derived progenitor cells (cardiac ATDPCs) and (b) to examine the effect of electromechanically stimulated cardiac ATDPCs within a myocardial infarction (MI) model inmice for the first time. Cardiac ATDPCs were electromechanically stimulated at 2-millisecond pulses of 50 mV/cm at 1 Hz and 10% stretching during 7 days. The cells were harvested, labeled, embedded in a fibrin hydrogel, and implanted over the infarcted area of the murine heart. A total of 39 animals were randomly distributed and sacrificed at 21 days: groups of grafts without cells and with stimulated or nonstimulated cells. Echocardiography and gene and protein analyses were also carried out. Physiologically stimulated ATDPCs showed increased expression of cardiac transcription factors, structural genes, and calcium handling genes. At 21 days after implantation, cardiac function (measured as left ventricle ejection fraction between presacrifice and post-MI) increased up to 12% in stimulated grafts relative to nontreated animals. Vascularization and integration with the host blood supply of grafts with stimulated cells resulted in increased vessel density in the infarct border region. Trained cells within the implanted fibrin patch expressed main cardiac markers and migrated into the underlying ischemic myocardium. To conclude, synchronous electromechanical cell conditioning before delivery may be a preferred alternative when considering strategies for heart repair after myocardial infarction.
dc.format.extent12 p.
dc.language.isoeng
dc.subjectÀrees temàtiques de la UPC::Ciències de la salut
dc.subject.lcshStem cells
dc.subject.otherTissue engineering
dc.subject.otherCardiac regeneration
dc.subject.otherElectromechanical conditioning
dc.subject.otherBiomedical Engineering
dc.subject.otherMyocardial infarction
dc.titleElectromechanical conditioning of adult progenitor cells improves recovery of cardiac function after myocardial infarction
dc.typeArticle
dc.subject.lemacCèl·lules mare
dc.contributor.groupUniversitat Politècnica de Catalunya. IEB - Instrumentació Electrònica i Biomèdica
dc.identifier.doi10.5966/sctm.2016-0079
dc.description.peerreviewedPeer Reviewed
dc.relation.publisherversionhttp://stemcellstm.alphamedpress.org/content/early/2016/09/29/sctm.2016-0079.abstract
dc.rights.accessRestricted access - publisher's policy
local.identifier.drac19375917
dc.description.versionPostprint (author's final draft)
dc.relation.projectidinfo:eu-repo/grantAgreement/EC/FP7/201502/EU/NASAL VACCINATION AGAINST RESPIRATORY INFECTIONS IN YOUNG CHILDREN/CHILD-INNOVAC
dc.date.lift10000-01-01
local.citation.authorLlucia, A.; Soler, C.; Gálvez, C.; Roura, S.; Prat-Vidal, Cristina; Perea, I.; Sánchez, B.; Bragos, R.; Vunjak-Novakovic, G.; Bayés-Genis, A.
local.citation.publicationNameStem Cells Translational Medicine
local.citation.volume6
local.citation.number5
local.citation.startingPage970
local.citation.endingPage981
dc.identifier.pmid28297585


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