Utilize este identificador para referenciar este registo: https://hdl.handle.net/1822/20310

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dc.contributor.authorSilva, Marta L. Alves da-
dc.contributor.authorCrawford, Aileen-
dc.contributor.authorMundy, Jenifer-
dc.contributor.authorMartins, Albino-
dc.contributor.authorAraújo, J. V.-
dc.contributor.authorHatton, Paul V.-
dc.contributor.authorReis, R. L.-
dc.contributor.authorNeves, N. M.-
dc.date.accessioned2012-09-21T15:51:43Z-
dc.date.available2012-09-21T15:51:43Z-
dc.date.issued2009-
dc.identifier.issn2152-4947por
dc.identifier.issn2152-4955por
dc.identifier.urihttps://hdl.handle.net/1822/20310-
dc.description.abstractCartilage defects are a major health problem. Tissue engineering has developed different strategies and several biomaterial morphologies, including natural-based ones, for repairing these defects. We used electrospun polycaprolactone (PCL) and starch-compounded PCL (SPCL) nanofiber meshes to evaluate extracellular matrix (ECM) formation by bovine articular chondrocytes (BACs). The main aim of this work was to evaluate the suitability of PCL and SPCL nanofiber meshes in chondrocyte cultures, and their capability to produce ECM when seeded onto these nanostructured materials. The effect of culture conditions (static vs dynamic) on ECM formation was also assessed. BACs were seeded onto PCL and SPCL nanofiber meshes using a dynamic cellseeding procedure and cultured under static or dynamic conditions for 4 weeks. Constructs were characterized using scanning electron microscopy, histology, immunolocalization of collagen types I and II, and glycosaminoglycan (GAG) quantification. Results show an extensive cell colonization of the entire nanofiber mesh, for both materials, and that chondrocytes presented typical spherical morphology. Some degree of cell infiltration inside the nanofiber meshes was noticeable for both materials. ECM formation and GAG were detected throughout the materials, evidencing typical construct maturation. PCL and SPCL nanofiber meshes are suitable as supports for ECM formation and therefore are adequate for cartilage tissue-engineering approaches.-
dc.description.sponsorshipM. Alves da Silva would like to acknowledge the Portuguese Foundation for Science and Technology (FCT) for her grant (SFRH/BD/28708/2006), Marie Curie Actions-ALEA JACTA EST (MEST-CT-2004-008104), European NoE EXPERTISSUES (NMP3-CT-2004-500283), IP GENOSTEM (LSHB-CT-2003-503161) and NATURALLY NANO (POCTI/EME/58982/2004).por
dc.language.isoengpor
dc.publisherMary Ann Liebert Inc.por
dc.rightsopenAccesspor
dc.titleEvaluation of extracellular matrix formation in polycaprolactone and starch-compounded polycaprolactone nanofiber meshes when seeded with bovine articular chondrocytespor
dc.typearticlepor
dc.peerreviewedyespor
sdum.publicationstatuspublishedpor
oaire.citationStartPage377por
oaire.citationEndPage385por
oaire.citationIssue2por
oaire.citationTitleTissue Engineering : part Apor
oaire.citationVolume15por
dc.identifier.doi10.1089/ten.tea.2007.0327por
dc.identifier.pmid18759665por
dc.subject.wosScience & Technologypor
sdum.journalTissue Engineering : part Apor
Aparece nas coleções:3B’s - Artigos em revistas/Papers in scientific journals

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