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dc.contributor.authorLlucia Valldeperes, A.
dc.contributor.authorSanchez, B.
dc.contributor.authorSoler Botija, Carolina
dc.contributor.authorGálvez Montón, Carolina
dc.contributor.authorPrat Vidal, Cristina
dc.contributor.authorRoura, Santiago
dc.contributor.authorRosell Ferrer, Francisco Javier
dc.contributor.authorBragós Bardia, Ramon
dc.contributor.authorBayés Genis, Antoni
dc.contributor.otherUniversitat Politècnica de Catalunya. Departament d'Enginyeria Electrònica
dc.date.accessioned2016-03-04T15:16:25Z
dc.date.available2016-03-04T15:16:25Z
dc.date.issued2015-11
dc.identifier.citationLlucia, A., Sanchez, B., Soler, C., Gálvez, C., Prat, C., Roura, S., Rosell, F., Bragos, R., Bayés-Genis, A. Electrical stimulation of cardiac adipose tissue-derived progenitor cells modulates cell phenotype and genetic machinery. "Journal of tissue engineering and regenerative medicine", Novembre 2015, vol. 9, núm. 11, p. E76-E83.
dc.identifier.issn1932-6254
dc.identifier.urihttp://hdl.handle.net/2117/83847
dc.description.abstractA major challenge of cardiac tissue engineering is directing cells to establish the physiological structure and function of the myocardium being replaced. Our aim was to examine the effect of electrical stimulation on the cardiodifferentiation potential of cardiac adipose tissue-derived progenitor cells (cardiac ATDPCs). Three different electrical stimulation protocols were tested; the selected protocol consisted of 2ms monophasic square-wave pulses of 50mV/cm at 1Hz over 14days. Cardiac and subcutaneous ATDPCs were grown on biocompatible patterned surfaces. Cardiomyogenic differentiation was examined by real-time PCR and immunocytofluorescence. In cardiac ATDPCs, MEF2A and GATA-4 were significantly upregulated at day 14 after stimulation, while subcutaneous ATDPCs only exhibited increased Cx43 expression. In response to electrical stimulation, cardiac ATDPCs elongated, and both cardiac and subcutaneous ATDPCs became aligned following the linear surface pattern of the construct. Cardiac ATDPC length increased by 11.3%, while subcutaneous ATDPC length diminished by 11.2% (p=0.013 and p=0.030 vs unstimulated controls, respectively). Compared to controls, electrostimulated cells became aligned better to the patterned surfaces when the pattern was perpendicular to the electric field (89.71±28.47o for cardiac ATDPCs and 92.15±15.21o for subcutaneous ATDPCs). Electrical stimulation of cardiac ATDPCs caused changes in cell phenotype and genetic machinery, making them more suitable for cardiac regeneration approaches. Thus, it seems advisable to use electrical cell training before delivery as a cell suspension or within engineered tissue.
dc.language.isoeng
dc.rights.urihttp://creativecommons.org/licenses/by-nc-nd/3.0/es/
dc.subjectÀrees temàtiques de la UPC::Enginyeria biomèdica::Electrònica biomèdica::Electrònica en cardiologia
dc.subjectÀrees temàtiques de la UPC::Enginyeria biomèdica::Enginyeria de teixits
dc.subject.lcshElectronics in cardiology
dc.subject.lcshBiomedical engineering
dc.subject.otherCardiac adipose tissue
dc.subject.otherCardiac differentiation
dc.subject.otherCardiac regeneration
dc.subject.otherCardiac tissue engineering
dc.subject.otherElectrical stimulation
dc.subject.otherProgenitor cells
dc.titleElectrical stimulation of cardiac adipose tissue-derived progenitor cells modulates cell phenotype and genetic machinery
dc.typeArticle
dc.subject.lemacElectrònica en cardiologia
dc.subject.lemacEnginyeria biomèdica
dc.contributor.groupUniversitat Politècnica de Catalunya. IEB - Instrumentació Electrònica i Biomèdica
dc.identifier.doi10.1002/term.1710
dc.description.peerreviewedPeer Reviewed
dc.relation.publisherversionhttp://onlinelibrary.wiley.com/doi/10.1002/term.1710/epdf
dc.rights.accessOpen Access
local.identifier.drac17432936
dc.description.versionPreprint
dc.relation.projectidinfo:eu-repo/grantAgreement/EC/FP7/229239/EU/Regeneration of Cardiac Tissue Assisted by Bioactive Implants/RECATABI
local.citation.authorLlucia, A.; Sanchez, B.; Soler, C.; Gálvez, C.; Prat, C.; Roura, S.; Rosell, F.; Bragos, R.; Bayés-Genis, A.
local.citation.publicationNameJournal of tissue engineering and regenerative medicine
local.citation.volume9
local.citation.number11
local.citation.startingPageE76
local.citation.endingPageE83


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