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Physical Properties and Biofunctionalities of Bioactive Root Canal Sealers In Vitro

Calcium silicate-based bioactive glass has received significant attention for use in various biomedical applications due to its excellent bioactivity and biocompatibility. However, the bioactivity of calcium silicate nanoparticle-incorporated bioactive dental sealer is not much explored. Herein, thr...

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Autores principales: Jo, Seung Bin, Kim, Hyun Kyung, Lee, Hae Nim, Kim, Yu-Jin, Dev Patel, Kapil, Campbell Knowles, Jonathan, Lee, Jung-Hwan, Song, Minju
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7559325/
https://www.ncbi.nlm.nih.gov/pubmed/32899641
http://dx.doi.org/10.3390/nano10091750
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author Jo, Seung Bin
Kim, Hyun Kyung
Lee, Hae Nim
Kim, Yu-Jin
Dev Patel, Kapil
Campbell Knowles, Jonathan
Lee, Jung-Hwan
Song, Minju
author_facet Jo, Seung Bin
Kim, Hyun Kyung
Lee, Hae Nim
Kim, Yu-Jin
Dev Patel, Kapil
Campbell Knowles, Jonathan
Lee, Jung-Hwan
Song, Minju
author_sort Jo, Seung Bin
collection PubMed
description Calcium silicate-based bioactive glass has received significant attention for use in various biomedical applications due to its excellent bioactivity and biocompatibility. However, the bioactivity of calcium silicate nanoparticle-incorporated bioactive dental sealer is not much explored. Herein, three commercially available bioactive root canal sealers (Endoseal MTA (EDS), Well-Root ST (WST), and Nishika Canal Sealer BG (NBG)) were compared with a resin-based control sealer (AH Plus (AHP)) in terms of physical, chemical, and biological properties. EDS and NBG showed 200 to 400 nm and 100 to 200 nm nanoparticle incorporation in the SEM image, respectively, and WST and NBG showed mineral deposition in Hank’s balanced salt solution after 28 days. The flowability and film thickness of all products met the ISO 3107 standard. Water contact angle, linear dimensional changes, and calcium and silicate ion release were significantly different among groups. All bioactive root canal sealers released calcium ions, while NBG released ~10 times more silicon ions than the other bioactive root canal sealers. Under the cytocompatible extraction range, NBG showed prominent cytocompatibility, osteogenecity, and angiogenecity compared to other sealers in vitro. These results indicate that calcium silicate nanoparticle incorporation in dental sealers could be a potential strategy for dental periapical tissue regeneration.
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spelling pubmed-75593252020-10-29 Physical Properties and Biofunctionalities of Bioactive Root Canal Sealers In Vitro Jo, Seung Bin Kim, Hyun Kyung Lee, Hae Nim Kim, Yu-Jin Dev Patel, Kapil Campbell Knowles, Jonathan Lee, Jung-Hwan Song, Minju Nanomaterials (Basel) Article Calcium silicate-based bioactive glass has received significant attention for use in various biomedical applications due to its excellent bioactivity and biocompatibility. However, the bioactivity of calcium silicate nanoparticle-incorporated bioactive dental sealer is not much explored. Herein, three commercially available bioactive root canal sealers (Endoseal MTA (EDS), Well-Root ST (WST), and Nishika Canal Sealer BG (NBG)) were compared with a resin-based control sealer (AH Plus (AHP)) in terms of physical, chemical, and biological properties. EDS and NBG showed 200 to 400 nm and 100 to 200 nm nanoparticle incorporation in the SEM image, respectively, and WST and NBG showed mineral deposition in Hank’s balanced salt solution after 28 days. The flowability and film thickness of all products met the ISO 3107 standard. Water contact angle, linear dimensional changes, and calcium and silicate ion release were significantly different among groups. All bioactive root canal sealers released calcium ions, while NBG released ~10 times more silicon ions than the other bioactive root canal sealers. Under the cytocompatible extraction range, NBG showed prominent cytocompatibility, osteogenecity, and angiogenecity compared to other sealers in vitro. These results indicate that calcium silicate nanoparticle incorporation in dental sealers could be a potential strategy for dental periapical tissue regeneration. MDPI 2020-09-04 /pmc/articles/PMC7559325/ /pubmed/32899641 http://dx.doi.org/10.3390/nano10091750 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Jo, Seung Bin
Kim, Hyun Kyung
Lee, Hae Nim
Kim, Yu-Jin
Dev Patel, Kapil
Campbell Knowles, Jonathan
Lee, Jung-Hwan
Song, Minju
Physical Properties and Biofunctionalities of Bioactive Root Canal Sealers In Vitro
title Physical Properties and Biofunctionalities of Bioactive Root Canal Sealers In Vitro
title_full Physical Properties and Biofunctionalities of Bioactive Root Canal Sealers In Vitro
title_fullStr Physical Properties and Biofunctionalities of Bioactive Root Canal Sealers In Vitro
title_full_unstemmed Physical Properties and Biofunctionalities of Bioactive Root Canal Sealers In Vitro
title_short Physical Properties and Biofunctionalities of Bioactive Root Canal Sealers In Vitro
title_sort physical properties and biofunctionalities of bioactive root canal sealers in vitro
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7559325/
https://www.ncbi.nlm.nih.gov/pubmed/32899641
http://dx.doi.org/10.3390/nano10091750
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