Oneț Diana, Roman Alexandra, Soancă Andrada, Ciurea Andreea, Micu Iulia Cristina, Vesa Ștefan Cristian, Popescu Dora-Maria, Rîcă Ana-Maria
Department of Periodontology, "Iuliu Hațieganu" University of Medicine and Pharmacy, Cluj-Napoca, Romania.
Department of Pharmacology, Toxicology and Clinical Pharmacology, "Iuliu Hațieganu" University of Medicine and Pharmacy, Cluj-Napoca, Romania.
Curr Health Sci J. 2022 Jul-Sep;48(3):331-339. doi: 10.12865/CHSJ.48.03.12. Epub 2022 Sep 30.
Due to their minimally invasive high-quality adhesive, aesthetic and mechanical qualities, composite resins are the most frequently used materials in modern restorative dentistry. However, polymerization shrinkage and cytotoxicity are still unresolved drawbacks associated with these biomaterials.
The present study aimed to assess the cytotoxicity of some restorative resin-based materials on gingival mesenchymal stromal cells (gMSCs), assuming that no differences in their behavior will be highlighted.
The cytotoxicity of the tested materials was evaluated by comparing the behavior of gMSCs cultured in normal conditions and in association with disc-shaped material samples indirectly through functionality tests (colony-forming unit-fibroblast assay, migratory potential) and directly through the MTT assay. The results were statistically analyzed with the ANOVA test and Tukey's Honest Significant Difference test.
According to the MTT assay, there are no statistically significant differences regarding the viability of gMSCs cultured in normal conditions or in the presence of resin-based material samples. On the other hand, the present study identified a significantly reduced number of colonies formed by the gMSCs cultured in association with BF and B discs, compared to that of gMSCs cultured in normal conditions. Also, the migratory potential was significantly lower for control gMSCs when compared to ZE-gMSCs and significantly higher for ZE-gMSCs when compared to BF-gMSCs or BFL-gMSCs.
The results of the present study highlight a possible risk of cytotoxicity when using resin based-materials in dental practice, but they cannot be directly extrapolated to in vivo situations.
由于其微创、高质量的粘结性、美学和机械性能,复合树脂是现代修复牙科中最常用的材料。然而,聚合收缩和细胞毒性仍然是与这些生物材料相关的未解决的缺点。
本研究旨在评估一些基于修复树脂的材料对牙龈间充质基质细胞(gMSCs)的细胞毒性,假设它们的行为没有差异。
通过间接通过功能测试(集落形成单位-成纤维细胞试验、迁移潜能)和直接通过MTT试验比较在正常条件下培养的gMSCs以及与盘状材料样本联合培养的gMSCs的行为,来评估测试材料的细胞毒性。结果用方差分析和Tukey诚实显著差异检验进行统计学分析。
根据MTT试验,在正常条件下培养的gMSCs或在存在基于树脂的材料样本的情况下培养的gMSCs的活力没有统计学上的显著差异。另一方面,本研究发现,与在正常条件下培养的gMSCs相比,与BF和B盘联合培养的gMSCs形成的集落数量显著减少。此外,与ZE-gMSCs相比,对照gMSCs的迁移潜能显著较低,而与BF-gMSCs或BFL-gMSCs相比,ZE-gMSCs的迁移潜能显著较高。
本研究结果突出了在牙科实践中使用基于树脂的材料时可能存在的细胞毒性风险,但不能直接外推到体内情况。