Biocompatibility of a High-Plasticity, Calcium Silicate-Based, Ready-to-Use Material

The Bio-C Sealer is a recently developed high-plasticity, calcium-silicate-based, ready-to-use material. In the present study, chemical elements of the materials were characterized using scanning electron microscopy (SEM), X-ray diffraction (XRD), and Fourier transform infrared spectroscopy (FTIR)....

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Main Authors: Tomoharu Okamura, Liji Chen, Seiji Tsumano, Chihoko Ikeda, Satoshi Komasa, Kazuya Tominaga, Yoshiya Hashimoto
Format: Article
Language:English
Published: MDPI AG 2020-10-01
Series:Materials
Subjects:
Online Access:https://www.mdpi.com/1996-1944/13/21/4770
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spelling doaj-de37d8052b0442ae8c990f13a8700bb72020-11-25T04:03:48ZengMDPI AGMaterials1996-19442020-10-01134770477010.3390/ma13214770Biocompatibility of a High-Plasticity, Calcium Silicate-Based, Ready-to-Use MaterialTomoharu Okamura0Liji Chen1Seiji Tsumano2Chihoko Ikeda3Satoshi Komasa4Kazuya Tominaga5Yoshiya Hashimoto6Department of Oral Pathology, Osaka Dental University, 8-1, Kuzuhahanazonocho, Hirakata, Osaka 573-1121, JapanDepartment of Orthodontics, Osaka Dental University, 8-1, Kuzuhahanazonocho, Hirakata, Osaka 573-1121, JapanDepartment of Oral and Maxillofacial Surgery II, Osaka Dental University, 8-1, Kuzuhahanazonocho, Hirakata, Osaka 573-1121, JapanDepartment of Oral Pathology, Osaka Dental University, 8-1, Kuzuhahanazonocho, Hirakata, Osaka 573-1121, JapanDepartment of Removable Prosthodontics and Occlusion, Osaka Dental University, 8-1, Kuzuhahanazonocho, Hirakata, Osaka 573-1121, JapanDepartment of Oral Pathology, Osaka Dental University, 8-1, Kuzuhahanazonocho, Hirakata, Osaka 573-1121, JapanDepartment of Biomaterials, Osaka Dental University, 8-1, Kuzuhahanazonocho, Hirakata, Osaka 573-1121, JapanThe Bio-C Sealer is a recently developed high-plasticity, calcium-silicate-based, ready-to-use material. In the present study, chemical elements of the materials were characterized using scanning electron microscopy (SEM), X-ray diffraction (XRD), and Fourier transform infrared spectroscopy (FTIR). The biocompatibility of the Bio-C Sealer was investigated using cytotoxicity tests and histological responses in the roots of dogs’ teeth. XRD, SEM, and FTIR produced hydrated calcium silicate in the presence of water molecules. In addition, FTIR showed the formation of calcium hydroxide and polyethylene glycol, a dispersing agent. The 1:4 dilutions of Bio-C Sealer presented weaker cytotoxicity than the Calcipex II in an in vitro system using the V-79 cell line. After 90 d, the periradicular tissue response of beagle dog roots was histologically evaluated. Absence of periradicular inflammation was reported in 17 of the 18 roots assessed with the Bio-C Sealer, whereas mature vertical periodontal ligament fibers were observed in the apical root ends filled with the Bio-C Sealer. Based on these results and previous investigations, the Bio-C Sealer is recommended as an effective root-end filling material. These results are relevant for clinicians considering the use of Bio-C Sealer for treating their patients.https://www.mdpi.com/1996-1944/13/21/4770calcium-silicateBio-C Sealerroot-end filling materialmineral trioxide aggregate (MTA) cementbiocompatibilitybeagle dog
collection DOAJ
language English
format Article
sources DOAJ
author Tomoharu Okamura
Liji Chen
Seiji Tsumano
Chihoko Ikeda
Satoshi Komasa
Kazuya Tominaga
Yoshiya Hashimoto
spellingShingle Tomoharu Okamura
Liji Chen
Seiji Tsumano
Chihoko Ikeda
Satoshi Komasa
Kazuya Tominaga
Yoshiya Hashimoto
Biocompatibility of a High-Plasticity, Calcium Silicate-Based, Ready-to-Use Material
Materials
calcium-silicate
Bio-C Sealer
root-end filling material
mineral trioxide aggregate (MTA) cement
biocompatibility
beagle dog
author_facet Tomoharu Okamura
Liji Chen
Seiji Tsumano
Chihoko Ikeda
Satoshi Komasa
Kazuya Tominaga
Yoshiya Hashimoto
author_sort Tomoharu Okamura
title Biocompatibility of a High-Plasticity, Calcium Silicate-Based, Ready-to-Use Material
title_short Biocompatibility of a High-Plasticity, Calcium Silicate-Based, Ready-to-Use Material
title_full Biocompatibility of a High-Plasticity, Calcium Silicate-Based, Ready-to-Use Material
title_fullStr Biocompatibility of a High-Plasticity, Calcium Silicate-Based, Ready-to-Use Material
title_full_unstemmed Biocompatibility of a High-Plasticity, Calcium Silicate-Based, Ready-to-Use Material
title_sort biocompatibility of a high-plasticity, calcium silicate-based, ready-to-use material
publisher MDPI AG
series Materials
issn 1996-1944
publishDate 2020-10-01
description The Bio-C Sealer is a recently developed high-plasticity, calcium-silicate-based, ready-to-use material. In the present study, chemical elements of the materials were characterized using scanning electron microscopy (SEM), X-ray diffraction (XRD), and Fourier transform infrared spectroscopy (FTIR). The biocompatibility of the Bio-C Sealer was investigated using cytotoxicity tests and histological responses in the roots of dogs’ teeth. XRD, SEM, and FTIR produced hydrated calcium silicate in the presence of water molecules. In addition, FTIR showed the formation of calcium hydroxide and polyethylene glycol, a dispersing agent. The 1:4 dilutions of Bio-C Sealer presented weaker cytotoxicity than the Calcipex II in an in vitro system using the V-79 cell line. After 90 d, the periradicular tissue response of beagle dog roots was histologically evaluated. Absence of periradicular inflammation was reported in 17 of the 18 roots assessed with the Bio-C Sealer, whereas mature vertical periodontal ligament fibers were observed in the apical root ends filled with the Bio-C Sealer. Based on these results and previous investigations, the Bio-C Sealer is recommended as an effective root-end filling material. These results are relevant for clinicians considering the use of Bio-C Sealer for treating their patients.
topic calcium-silicate
Bio-C Sealer
root-end filling material
mineral trioxide aggregate (MTA) cement
biocompatibility
beagle dog
url https://www.mdpi.com/1996-1944/13/21/4770
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