Cytotoxicity of dilutions of bioceramic materials in stem cells of human exfoliated deciduous teeth.

IF 2.2 3区 医学 Q2 DENTISTRY, ORAL SURGERY & MEDICINE Journal of Applied Oral Science Pub Date : 2024-08-09 eCollection Date: 2024-01-01 DOI:10.1590/1678-7757-2023-0462
Ana Beatriz Vieira da Silveira, Bárbara Luísa Silva Oliveira, Mariel Tavares de Oliveira Prado Bergamo, Natalino Lourenço Neto, Maria Aparecida Moreira Machado, Thais Marchini Oliveira
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Abstract

Objective: Several materials have been developed to preserve pulp vitality. They should have ideal cytocompatibility characteristics to promote the activity of stem cells of human exfoliated deciduous teeth (SHED) and thus heal pulp tissue.

Objective: To evaluate the cytotoxicity of different dilutions of bioceramic material extracts in SHED.

Methodology: SHED were immersed in αMEM + the material extract according to the following experimental groups: Group 1 (G1) -BBio membrane, Group 2 (G2) - Bio-C Repair, Group 3 (G3) - MTA Repair HP, Group 4 (G4) - TheraCal LC, and Group 5 (G5) - Biodentine. Positive and negative control groups were maintained respectively in αMEM + 10% FBS and Milli-Q Water. The methods to analyze cell viability and proliferation involved MTT and Alamar Blue assays at 24, 48, and 72H after the contact of the SHED with bioceramic extracts at 1:1 and 1:2 dilutions. Data were analyzed by the three-way ANOVA, followed by Tukey's test (p<0.05).

Results: At 1:1 dilution, SHED in contact with the MTA HP Repair extract showed statistically higher cell viability than the other experimental groups and the negative control (p<0.05), except for TheraCal LC (p> 0.05). At 1:2 dilution, BBio Membrane and Bio-C showed statistically higher values in intra- and intergroup comparisons (p<0.05). BBio Membrane, Bio-C Repair, and Biodentine extracts at 1:1 dilution showed greater cytotoxicity than 1:2 dilution in all periods (p<0.05).

Conclusion: MTA HP Repair showed the lowest cytotoxicity even at a 1:1 dilution. At a 1:2 dilution, the SHED in contact with the BBio membrane extract showed high cell viability. Thus, the BBio membrane would be a new non-cytotoxic biomaterial for SHED. Results offer possibilities of biomaterials that can be indicated for use in clinical regenerative procedures of the dentin-pulp complex.

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生物陶瓷材料稀释液在人类脱落牙齿干细胞中的细胞毒性。
目的:目前已开发出多种保持牙髓活力的材料。这些材料应具有理想的细胞相容性,以促进人类脱落牙齿(SHED)干细胞的活性,从而治愈牙髓组织:评估不同稀释度的生物陶瓷材料提取物对 SHED 的细胞毒性:按照以下实验组将SHED浸泡在αMEM+材料提取物中:第 1 组 (G1) -BBio 膜,第 2 组 (G2) - Bio-C 修复,第 3 组 (G3) - MTA 修复 HP,第 4 组 (G4) - TheraCal LC,第 5 组 (G5) - Biodentine。阳性对照组和阴性对照组分别使用 αMEM + 10% FBS 和 Milli-Q 水。分析细胞活力和增殖的方法是在 SHED 与 1:1 和 1:2 稀释度的生物陶瓷提取物接触后 24、48 和 72 小时进行 MTT 和阿拉玛蓝检测。数据采用三方方差分析,然后进行 Tukey 检验(pResults):在 1:1 稀释度下,与 MTA HP 修复提取物接触的 SHED 的细胞存活率高于其他实验组和阴性对照组(p 0.05)。在 1:2 稀释度下,BBio 膜和 Bio-C 在组内和组间比较中显示出更高的统计值(p 结论:即使在 1:1 稀释度时,MTA HP 修复剂的细胞毒性也是最低的。在 1:2 稀释度下,与 BBio 膜提取物接触的 SHED 显示出较高的细胞存活率。因此,BBio 膜是一种用于 SHED 的新型无细胞毒性生物材料。研究结果为牙本质-牙髓复合体临床再生程序中使用生物材料提供了可能性。
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来源期刊
Journal of Applied Oral Science
Journal of Applied Oral Science 医学-牙科与口腔外科
CiteScore
4.80
自引率
3.70%
发文量
46
审稿时长
4-8 weeks
期刊介绍: The Journal of Applied Oral Science is committed in publishing the scientific and technologic advances achieved by the dental community, according to the quality indicators and peer reviewed material, with the objective of assuring its acceptability at the local, regional, national and international levels. The primary goal of The Journal of Applied Oral Science is to publish the outcomes of original investigations as well as invited case reports and invited reviews in the field of Dentistry and related areas.
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