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生物活性玻璃陶瓷(BiodentineTM)与人原代成骨细胞具有细胞相容性。

BiodentineTM is cytocompatible with human primary osteoblasts.

作者信息

Scelza Miriam Zaccaro, Nascimento Joyce Costa, Silva Licinio Esmeraldo da, Gameiro Vinícius Shott, DE Deus Gustavo, Alves Gutemberg

机构信息

Universidade Federal Fluminense - UFF, Department of Endodontics, Laboratory of Experimental Cell Culture, Niteroi, RJ, Brazil.

Universidade Federal Fluminense - UFF, Post Graduation Program on Dentistry, Niteroi, RJ, Brazil.

出版信息

Braz Oral Res. 2017 Sep 28;31:e81. doi: 10.1590/1807-3107BOR-2017.vol31.0081.

Abstract

Calcium silicate-based materials have been widely studied due to their resemblance to, and similar applicability of, mineral trioxide aggregate (MTA). Among these, Biodentine™ (BD) was specifically designed as a "dentin replacement" material for applications such as root perforations, apexification, treatment of resorptive lesions, and as a retrograde filling material. The present study aimed to assess the in vitro response of human primary osteoblasts to BD using MTA AngelusTM as a reference material, by simultaneously analyzing three different cell viability parameters, namely mitochondrial activity, membrane integrity, and cell density. BD and MTA extracts were prepared by incubation on culture media for 24 h or 42 days after mixing. Primary human osteoblasts were exposed to extracts for 24 h, at 37oC with 5% CO2, and cell viability was evaluated by the XTT, NRU, and CVDE assays. Both materials induced cell viability levels higher than 70% when extracted for 24 h. However, when cells were exposed to extracts with increased conditioning times, MTA presented significant cytotoxic effects (p < 0.05) in comparison to the control and MTA at 24 h. After 42 days, the XTT assay identified a significant reduction in cell viability by BD when compared to the control (p<0.05), despite the fact that levels above the 70% viability cutoff were attained for biocompatible materials. It can be concluded that BD is cytocompatible with human primary osteoblasts, indicating its adequacy in direct contact with bone tissues.

摘要

硅酸钙基材料因其与三氧化矿物凝聚体(MTA)相似且适用性相近而受到广泛研究。其中,BioDentine™(BD)被专门设计为一种“牙本质替代”材料,用于诸如牙根穿孔、根尖诱导成形术、吸收性病变的治疗以及作为根管倒充填材料等应用。本研究旨在以MTA AngelusTM作为参考材料,通过同时分析线粒体活性、膜完整性和细胞密度这三种不同的细胞活力参数,评估人原代成骨细胞对BD的体外反应。BD和MTA提取物是在混合后于培养基中孵育24小时或42天制备而成的。将人原代成骨细胞在37℃、5%二氧化碳条件下暴露于提取物中24小时,并用XTT、NRU和CVDE试验评估细胞活力。两种材料在提取24小时时均诱导细胞活力水平高于70%。然而,当细胞暴露于条件培养时间增加的提取物时,与对照组和24小时的MTA相比,MTA呈现出显著的细胞毒性作用(p<0.05)。42天后,XTT试验表明,与对照组相比,BD导致细胞活力显著降低(p<0.05),尽管生物相容性材料的活力水平达到了70%的临界值以上。可以得出结论,BD与人原代成骨细胞具有细胞相容性,表明其与骨组织直接接触时是合适的。

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