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Ball Milling Medium May Tune the Self-Curing Property and Root Canal Microleakage of β-Dicalcium Silicate-Based Cement

It is still a challenge to overcome the extended setting process of pure Ca-silicate as root canal fillers. We investigated the effects of attapulgite (a basic hydrous silicate of magnesium and aluminum) and ball-milling liquid medium on the self-curing properties of conventional β-dicalcium silicat...

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Autores principales: Zheng, Youyang, Yang, Xianyan, Liu, Shuxin, Xu, Yuyue, Bao, Siqi, Wang, Yunyi, Liu, Yuhan, Zhang, Feng, Gou, Zhongru
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9321766/
https://www.ncbi.nlm.nih.gov/pubmed/35888510
http://dx.doi.org/10.3390/ma15145043
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author Zheng, Youyang
Yang, Xianyan
Liu, Shuxin
Xu, Yuyue
Bao, Siqi
Wang, Yunyi
Liu, Yuhan
Zhang, Feng
Gou, Zhongru
author_facet Zheng, Youyang
Yang, Xianyan
Liu, Shuxin
Xu, Yuyue
Bao, Siqi
Wang, Yunyi
Liu, Yuhan
Zhang, Feng
Gou, Zhongru
author_sort Zheng, Youyang
collection PubMed
description It is still a challenge to overcome the extended setting process of pure Ca-silicate as root canal fillers. We investigated the effects of attapulgite (a basic hydrous silicate of magnesium and aluminum) and ball-milling liquid medium on the self-curing properties of conventional β-dicalcium silicate (C2Si)-based cements. It was shown that a minor amount of attapulgite nanofibers (1–4%) had only a slight influence on setting time but caused a large increase in compressive resistance and structural stability. In particular, the ball milling media with different acetone/water ratios (3:0, 2:1, 1:2, 0:3) could directly influence the particle size distribution of C2Si powders, and the co-existence of liquid media (2:1 or 1:2) may be beneficial for shortening the setting time, enhancing early-stage compressive strength, and significantly improving the anti-microleakage ability of cement. Moreover, the composite cements also exhibited appreciable antibacterial efficacy in vitro. These findings demonstrated that the physicochemical properties of the Ca-silicate powders could be tuned by adding a minor amount of inorganic silicate nanofibers and a simple ball milling condition, and such a facile strategy is favorable for developing novel (pre-mixed) Ca silicate-based cements as root canal sealers.
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spelling pubmed-93217662022-07-27 Ball Milling Medium May Tune the Self-Curing Property and Root Canal Microleakage of β-Dicalcium Silicate-Based Cement Zheng, Youyang Yang, Xianyan Liu, Shuxin Xu, Yuyue Bao, Siqi Wang, Yunyi Liu, Yuhan Zhang, Feng Gou, Zhongru Materials (Basel) Article It is still a challenge to overcome the extended setting process of pure Ca-silicate as root canal fillers. We investigated the effects of attapulgite (a basic hydrous silicate of magnesium and aluminum) and ball-milling liquid medium on the self-curing properties of conventional β-dicalcium silicate (C2Si)-based cements. It was shown that a minor amount of attapulgite nanofibers (1–4%) had only a slight influence on setting time but caused a large increase in compressive resistance and structural stability. In particular, the ball milling media with different acetone/water ratios (3:0, 2:1, 1:2, 0:3) could directly influence the particle size distribution of C2Si powders, and the co-existence of liquid media (2:1 or 1:2) may be beneficial for shortening the setting time, enhancing early-stage compressive strength, and significantly improving the anti-microleakage ability of cement. Moreover, the composite cements also exhibited appreciable antibacterial efficacy in vitro. These findings demonstrated that the physicochemical properties of the Ca-silicate powders could be tuned by adding a minor amount of inorganic silicate nanofibers and a simple ball milling condition, and such a facile strategy is favorable for developing novel (pre-mixed) Ca silicate-based cements as root canal sealers. MDPI 2022-07-20 /pmc/articles/PMC9321766/ /pubmed/35888510 http://dx.doi.org/10.3390/ma15145043 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Zheng, Youyang
Yang, Xianyan
Liu, Shuxin
Xu, Yuyue
Bao, Siqi
Wang, Yunyi
Liu, Yuhan
Zhang, Feng
Gou, Zhongru
Ball Milling Medium May Tune the Self-Curing Property and Root Canal Microleakage of β-Dicalcium Silicate-Based Cement
title Ball Milling Medium May Tune the Self-Curing Property and Root Canal Microleakage of β-Dicalcium Silicate-Based Cement
title_full Ball Milling Medium May Tune the Self-Curing Property and Root Canal Microleakage of β-Dicalcium Silicate-Based Cement
title_fullStr Ball Milling Medium May Tune the Self-Curing Property and Root Canal Microleakage of β-Dicalcium Silicate-Based Cement
title_full_unstemmed Ball Milling Medium May Tune the Self-Curing Property and Root Canal Microleakage of β-Dicalcium Silicate-Based Cement
title_short Ball Milling Medium May Tune the Self-Curing Property and Root Canal Microleakage of β-Dicalcium Silicate-Based Cement
title_sort ball milling medium may tune the self-curing property and root canal microleakage of β-dicalcium silicate-based cement
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9321766/
https://www.ncbi.nlm.nih.gov/pubmed/35888510
http://dx.doi.org/10.3390/ma15145043
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