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球磨介质可能会调节β-硅酸二钙基水门汀的自固化性能和根管微渗漏。

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

作者信息

Zheng Youyang, Yang Xianyan, Liu Shuxin, Xu Yuyue, Bao Siqi, Wang Yunyi, Liu Yuhan, Zhang Feng, Gou Zhongru

机构信息

Department of Stomatology, The Second Affiliated Hospital, School of Medicine Zhejiang University, Hangzhou 310009, China.

Bio-Nanomaterials and Regenerative Medicine Research Division, Zhejiang-California International Nanosystems Institute, Zhejiang University, Hangzhou 310058, China.

出版信息

Materials (Basel). 2022 Jul 20;15(14):5043. doi: 10.3390/ma15145043.

Abstract

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.

摘要

克服纯钙硅酸盐作为根管充填材料时延长的凝固过程仍然是一项挑战。我们研究了凹凸棒石(一种镁和铝的碱性含水硅酸盐)和球磨液体介质对传统β-二硅酸钙(C2Si)基水泥自固化性能的影响。结果表明,少量凹凸棒石纳米纤维(1-4%)对凝固时间影响较小,但会使抗压强度和结构稳定性大幅提高。特别是,不同丙酮/水比例(3:0、2:1、1:2、0:3)的球磨介质会直接影响C2Si粉末的粒度分布,液体介质(2:1或1:2)的共存可能有利于缩短凝固时间、提高早期抗压强度并显著提高水泥的抗微渗漏能力。此外,复合水泥在体外也表现出可观的抗菌效果。这些发现表明,通过添加少量无机硅酸盐纳米纤维和简单的球磨条件可以调节钙硅酸盐粉末的物理化学性质,这种简便策略有利于开发新型(预混合)钙硅酸盐基水泥作为根管封闭剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ab76/9321766/b53016bc533c/materials-15-05043-g001.jpg

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