Evaluation of the adhesion of human dental pulp stem cells to differentendodontic biomaterials before and after setting

Aghazade, Marzie and Samiei, Mohammad and Imani, Marjan and Aghazadeh, Zahra and Alizadeh, Effat and Rezaie, Fereshte (2020) Evaluation of the adhesion of human dental pulp stem cells to differentendodontic biomaterials before and after setting. Journal of Dental Research, Dental Clinics, Dental Prospects, 14 (2). pp. 97-103. ISSN 2008-210X

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Abstract

Background. Stem cell-based treatment modalities have been potential strategies for tissue regeneration in many conditions. Several studies have evaluated the biologic properties of DPSCs and their efficacy in the treatment of a variety of diseases. The present study was undertaken to evaluate the adhesion behavior of DPSCs on different endodontic materials before and after setting.

Methods. The crowns of the selected teeth were removed, and the root canals were prepared and obturated with gutta-percha and AH26 sealer. A retrograde cavity was prepared at root ends. Different materials were placed in the cavities. Then the samples were attached to the wells with the use of a chemical glue. Dental pulp stem cells were allowed to proliferate to reach a count of 2 million and transferred to 12-well plates in association with a culture medium. Finally, the samples attached to the wells were exposed to the stem cells immersed in the culture medium before and after setting. Then adhesion of the stem cells was evaluated using SEM.

Results. The SEM results showed cellular adhesion in the samples containing CEM cement both before and after setting. The samples containing MTA Angelus and ProRoot MTA exhibited cellular adhesion before setting, with no cellular adhesion after setting. The samples containing AH26 and MTA Fillapex sealers exhibited cellular adhesion after setting, with no adhesion before setting. The samples containing simvastatin exhibited no cellular adhesion before setting; this material had dissolved in the culture medium after setting evaluation.

Conclusion. The results of the present study showed that of all the materials tested, CEM cement had the highest capacity for dental pulp stem cell adhesion.

Item Type: Article
Subjects: Research Asian Plos > Medical Science
Depositing User: Unnamed user with email support@research.asianplos.com
Date Deposited: 23 May 2023 08:16
Last Modified: 27 Jan 2024 04:18
URI: http://archiv.manuscptsubs.com/id/eprint/917

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