Biocompatibility of Bioactive Sealers Bio-C Sealer vs MTA Repair HP in Human Fibroblasts

IF 0.5 Q4 DENTISTRY, ORAL SURGERY & MEDICINE Odovtos - International Journal of Dental Sciences Pub Date : 2024-02-23 DOI:10.15517/ijds.2024.58908
V. Méndez-González, Joselyn Martínez-López, A. Pozos-Guillen, Ana M. González-Amaro, Mariana Gutiérrez-Sánchez, D. Escobar-García
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Abstract

Bioactive cements based on tricalcium silicate have been introducedto the market for use in dentistry, with a variety of clinical applications. These cements are in contact with vital tissues such as dental pulp or periodontium in cases of unintentional extrusion; thus, it is important to know the genotoxicity and cytoxicity of these materials. The objective of this study was to evaluate the cytotoxicity and genotoxicity of bioactive sealers, Bio-C® Sealer and MTA Repair HP®, in human fibroblasts. Discs of bioactive sealers Bio-C® Sealer, and MTA Repair HP®, were prepared and set for 24h under sterile conditions. The discs were placed in culture medium at 2.5mg/mL inside a SRT6D roller mixer (Stuart, UK) at 60rpm for 24h. The eluates obtained were incubated for 24h with previously activated and cultured ATCC cell line fibroblasts at 80% confluence. The cytotoxicity was evaluated by Alamar Blue® and LIVE/DEAD assays, as well as the analysis of the Tunel and Mitotracker assays to evaluate genotoxicity using the confocal laser-scanning microscope. In the Alamar Blue® assay, the Bio-C® Sealer presented a cell proliferation of 87%, while the MTA Repair HP® Sealer was 72%. A statistically significant difference was found between the MTA Repair HP® Sealant and the negative control (p=<0.001). Regarding the genotoxicity tests, in the Tunel assay, both materials stain the nucleus of the fibroblast cells exposed to the eluates, while in the Mitotracker assay, the MTA Repair HP® Sealer showed greater mitochondrial function than the Bio-C® Sealer. Calcium silicate-based sealers, Bio-C® Sealer and MTA Repair HP®, are not cytotoxic and have low genotoxicity.
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生物活性封闭剂 Bio-C Sealer 与 MTA Repair HP 在人类成纤维细胞中的生物相容性比较
基于硅酸三钙的生物活性水门汀已被引入牙科市场,并有多种临床应用。在无意挤压的情况下,这些水门汀会接触到牙髓或牙周等重要组织;因此,了解这些材料的遗传毒性和细胞毒性非常重要。本研究的目的是评估生物活性封闭剂 Bio-C® Sealer 和 MTA Repair HP® 在人类成纤维细胞中的细胞毒性和基因毒性。制备生物活性封闭剂 Bio-C® Sealer 和 MTA Repair HP® 的圆片,并在无菌条件下放置 24 小时。在 SRT6D 滚筒式混合器(Stuart,英国)中以 2.5mg/mL 的浓度将圆盘放入培养基中,以 60rpm 的速度搅拌 24 小时。获得的洗脱液与先前活化并培养至 80% 融合度的 ATCC 细胞系成纤维细胞一起培养 24 小时。通过 Alamar Blue® 和 LIVE/DEAD 检测法评估细胞毒性,并使用激光扫描共聚焦显微镜分析 Tunel 和 Mitotracker 检测法评估遗传毒性。在 Alamar Blue® 试验中,Bio-C® 封闭剂的细胞增殖率为 87%,而 MTA Repair HP® 封闭剂的细胞增殖率为 72%。MTA Repair HP® Sealant 与阴性对照之间存在明显的统计学差异(p=<0.001)。在遗传毒性测试方面,在 Tunel 试验中,两种材料都会使暴露在洗脱液中的成纤维细胞核染色,而在 Mitotracker 试验中,MTA Repair HP® Sealer 比 Bio-C® Sealer 显示出更强的线粒体功能。硅酸钙基封闭剂、Bio-C® Sealer 和 MTA Repair HP® 没有细胞毒性,基因毒性也很低。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Odovtos - International Journal of Dental Sciences
Odovtos - International Journal of Dental Sciences DENTISTRY, ORAL SURGERY & MEDICINE-
CiteScore
1.00
自引率
0.00%
发文量
50
审稿时长
8 weeks
期刊最新文献
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