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Authordc.contributor.authorSilva, D. 
Authordc.contributor.authorArancibia, R. es_CL
Authordc.contributor.authorTapia, C. es_CL
Authordc.contributor.authorAcuña Rougier, C. es_CL
Authordc.contributor.authorDíaz Dosque, Mario es_CL
Authordc.contributor.authorCáceres, M. 
Authordc.contributor.authorMartínez, J. 
Authordc.contributor.authorSmith, P. C. 
Admission datedc.date.accessioned2014-01-07T19:40:41Z
Available datedc.date.available2014-01-07T19:40:41Z
Publication datedc.date.issued2013
Cita de ítemdc.identifier.citationJ Periodont Res 2013; 48: 677–686en_US
Identifierdc.identifier.otherdoi:10.1111/jre.12053
Identifierdc.identifier.urihttps://repositorio.uchile.cl/handle/2250/123504
General notedc.descriptionArtículo de publicación ISIen_US
Abstractdc.description.abstractBackground and Objective: Chitosan is a naturally derived polymer that may be applied in periodontal therapy for tissue-reconstruction purposes. Previous studies have shown that chitosan may stimulate tissue healing. However, reports exploring the cellular responses stimulated by chitosan are lacking. In the present study we analyzed whether chitosan may promote cell proliferation in primary cultures of human gingival fibroblasts. Material and Methods: Chitosan particles were generated, and their size, zeta potential and morphology were characterized using transmission and scanning electron microscopy and zetasizer analysis. The biocompatibility of chitosan particles was analyzed using the 3-(4,5-dimethylthiazol-2-yl)-5-(3-carboxymethoxyphenyl)- 2-(4-sulfophenyl)-2H-tetrazolium (MTS) cell-viability assay and by detecting the release of lactate dehydrogenase into the cell-culture medium. The total number of cells was estimated by staining with crystal violet followed by measurement of the absorbance at 560 nm on a microplate reader. Cell proliferation was studied by detecting proliferating cell nuclear antigen protein levels, immunofluorescence for Ki67 and incorporation of 5′-bromo-2′-deoxyuridine. Results: The sizes of the chitosan particles generated were in the micrometer and nanometer ranges. Cell viability was increased in the presence of chitosan. Moreover, the combination of chitosan and platelet-derived growth factor (PDGF-BB) potently stimulated cell viability, cell proliferation and activation of the ERK1/2 pathway involved in cell proliferation. Conclusions: The present study shows that chitosan is well tolerated by gingival fibroblasts and is able to stimulate cell proliferation through the ERK1/2 signaling pathway. A synergistic response between chitosan and growth factors (such as PDGF-BB) may stimulate cell proliferation in gingival fibroblasts exposed to this biomaterial.en_US
Lenguagedc.language.isoenen_US
Publisherdc.publisherJohn Wiley & Sonsen_US
Type of licensedc.rightsAttribution-NonCommercial-NoDerivs 3.0 Chile*
Link to Licensedc.rights.urihttp://creativecommons.org/licenses/by-nc-nd/3.0/cl/*
Keywordsdc.subjectcell proliferationen_US
Títulodc.titleChitosan and platelet-derived growth factor synergistically stimulate cell proliferation in gingival fibroblastsen_US
Document typedc.typeArtículo de revista


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Attribution-NonCommercial-NoDerivs 3.0 Chile
Except where otherwise noted, this item's license is described as Attribution-NonCommercial-NoDerivs 3.0 Chile