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Dental Stem Cell Migration on Pulp Ceiling Cavities Filled with MTA, Dentin Chips, or Bio-Oss

MTA, Bio-Oss, and dentin chips have been successfully used in endodontics. The aim of this study was to assess the adhesion and migration of dental stem cells on human pulp ceiling cavities filled with these endodontic materials in an experimental model, which mimics the clinical conditions of regen...

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Autores principales: Lymperi, Stefania, Taraslia, Vasiliki, Tsatsoulis, Ioannis N., Samara, Athina, Velentzas, Athanasios D., Agrafioti, Anastasia, Anastasiadou, Ema, Kontakiotis, Evangelos
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi Publishing Corporation 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4469752/
https://www.ncbi.nlm.nih.gov/pubmed/26146613
http://dx.doi.org/10.1155/2015/189872
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author Lymperi, Stefania
Taraslia, Vasiliki
Tsatsoulis, Ioannis N.
Samara, Athina
Velentzas, Athanasios D.
Agrafioti, Anastasia
Anastasiadou, Ema
Kontakiotis, Evangelos
author_facet Lymperi, Stefania
Taraslia, Vasiliki
Tsatsoulis, Ioannis N.
Samara, Athina
Velentzas, Athanasios D.
Agrafioti, Anastasia
Anastasiadou, Ema
Kontakiotis, Evangelos
author_sort Lymperi, Stefania
collection PubMed
description MTA, Bio-Oss, and dentin chips have been successfully used in endodontics. The aim of this study was to assess the adhesion and migration of dental stem cells on human pulp ceiling cavities filled with these endodontic materials in an experimental model, which mimics the clinical conditions of regenerative endodontics. Cavities were formed, by a homemade mold, on untouched third molars, filled with endodontic materials, and observed with electron microscopy. Cells were seeded on cavities' surface and their morphology and number were analysed. The phenomenon of tropism was assessed in a migration assay. All three materials demonstrated appropriate microstructures for cell attachment. Cells grew on all reagents, but they showed a differential morphology. Moreover, variations were observed when comparing cells numbers on cavity's filling versus the surrounding dentine disc. The highest number of cells was recorded on dentin chips whereas the opposite was true for Bio-Oss. This was confirmed in the migration assay where a statistically significant lower number of cells migrated towards Bio-Oss as compared to MTA and dentin chips. This study highlights that MTA and dentin chips have a greater potential compared to Bio-Oss regarding the attraction of dental stem cells and are good candidates for bioengineered pulp regeneration.
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spelling pubmed-44697522015-07-05 Dental Stem Cell Migration on Pulp Ceiling Cavities Filled with MTA, Dentin Chips, or Bio-Oss Lymperi, Stefania Taraslia, Vasiliki Tsatsoulis, Ioannis N. Samara, Athina Velentzas, Athanasios D. Agrafioti, Anastasia Anastasiadou, Ema Kontakiotis, Evangelos Biomed Res Int Research Article MTA, Bio-Oss, and dentin chips have been successfully used in endodontics. The aim of this study was to assess the adhesion and migration of dental stem cells on human pulp ceiling cavities filled with these endodontic materials in an experimental model, which mimics the clinical conditions of regenerative endodontics. Cavities were formed, by a homemade mold, on untouched third molars, filled with endodontic materials, and observed with electron microscopy. Cells were seeded on cavities' surface and their morphology and number were analysed. The phenomenon of tropism was assessed in a migration assay. All three materials demonstrated appropriate microstructures for cell attachment. Cells grew on all reagents, but they showed a differential morphology. Moreover, variations were observed when comparing cells numbers on cavity's filling versus the surrounding dentine disc. The highest number of cells was recorded on dentin chips whereas the opposite was true for Bio-Oss. This was confirmed in the migration assay where a statistically significant lower number of cells migrated towards Bio-Oss as compared to MTA and dentin chips. This study highlights that MTA and dentin chips have a greater potential compared to Bio-Oss regarding the attraction of dental stem cells and are good candidates for bioengineered pulp regeneration. Hindawi Publishing Corporation 2015 2015-06-03 /pmc/articles/PMC4469752/ /pubmed/26146613 http://dx.doi.org/10.1155/2015/189872 Text en Copyright © 2015 Stefania Lymperi et al. https://creativecommons.org/licenses/by/3.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Lymperi, Stefania
Taraslia, Vasiliki
Tsatsoulis, Ioannis N.
Samara, Athina
Velentzas, Athanasios D.
Agrafioti, Anastasia
Anastasiadou, Ema
Kontakiotis, Evangelos
Dental Stem Cell Migration on Pulp Ceiling Cavities Filled with MTA, Dentin Chips, or Bio-Oss
title Dental Stem Cell Migration on Pulp Ceiling Cavities Filled with MTA, Dentin Chips, or Bio-Oss
title_full Dental Stem Cell Migration on Pulp Ceiling Cavities Filled with MTA, Dentin Chips, or Bio-Oss
title_fullStr Dental Stem Cell Migration on Pulp Ceiling Cavities Filled with MTA, Dentin Chips, or Bio-Oss
title_full_unstemmed Dental Stem Cell Migration on Pulp Ceiling Cavities Filled with MTA, Dentin Chips, or Bio-Oss
title_short Dental Stem Cell Migration on Pulp Ceiling Cavities Filled with MTA, Dentin Chips, or Bio-Oss
title_sort dental stem cell migration on pulp ceiling cavities filled with mta, dentin chips, or bio-oss
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4469752/
https://www.ncbi.nlm.nih.gov/pubmed/26146613
http://dx.doi.org/10.1155/2015/189872
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