贝壳衍生硅酸钙基纸浆封盖材料的物理、化学和生物特性研究:一项初步研究。

IF 2.5 Q2 DENTISTRY, ORAL SURGERY & MEDICINE BDJ Open Pub Date : 2024-12-17 DOI:10.1038/s41405-024-00281-w
Orana Amonchaiyapitak, Busayarat Santiwong, Thanakorn Wasanapiarnpong, Theerapat Chanamuangkon, Pairoj Linsuwanont
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引用次数: 0

摘要

简介以氢氧化钙为基础的硬固材料(如 Dycal 和 Life)已被广泛用于牙髓直接盖髓。然而,各种研究表明,这种材料具有高溶解性和难以预测的牙本质桥形成等不良影响。主要由硅酸三钙和硅酸二钙组成的生物陶瓷,如三氧化物矿物骨料和 Biodentine,具有更理想的物理和生物特性。本研究旨在测量人牙髓细胞(HDPCs)在三种牙髓覆盖材料(Dycal、Life 和源自蚶壳的硅酸三钙牙髓覆盖材料(C-Cap))上的物理特性、化学特性和生物反应:C-Cap由蚶壳和稻壳灰制备而成。使用 X 射线衍射仪确定其化学成分。按照国际标准化组织 6876:2012 标准进行了凝固时间、流动性、溶解性和放射性测试,并测量了 pH 值和钙离子释放量。将材料置于不同浓度的提取介质中,然后测量其对来自不同供体的三颗健康、成熟恒牙的高密度脂蛋白胆固醇细胞的细胞毒性和迁移。通过检测碱性磷酸酶酶活性和茜素红染色法评估了成骨分化。对数据进行了正态分布检验。采用方差分析和 Tukey's 多重比较检验对各组间的差异进行统计分析(P 结果):每种材料的凝固时间约为 1-2 分钟。与 Dycal(12.67%±0.94%)和 Life(12.74%±1.33%)相比,C-Cap 的溶解度最低(10.27%±1.02%),且差异显著(p 结论:C-Cap 是一种三钙树脂,其溶解度为 10.27%±1.02%:C-Cap 是一种基于硅酸三钙的纸浆封盖材料,具有进一步开发的潜力。与 Dycal 和 Life 相比,C-Cap 具有相似的物理特性和更优越的生物特性。
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Investigation of the physical, chemical, and biological properties of the cockle shell-derived calcium silicate-based pulp capping material: a pilot study.

Introduction: Hard-setting calcium hydroxide-based materials, e.g., Dycal and Life, have been widely used for direct pulp capping. However, various studies have shown undesirable effects such as high solubility and unpredictable dentine bridge formation. Bioceramic, mainly composed of tricalcium and dicalcium silicates, e.g., mineral trioxide aggregate and Biodentine, have provided more desirable physical and biological properties. This study aims to measure the physical properties, chemical properties, and biological response of human dental pulp cells (HDPCs) on three dental pulp-capping materials, Dycal, Life, and cockle shell-derived tricalcium silicate pulp capping material (C-Cap).

Methods: C-Cap was prepared from cockle shells and rice husk ash. Its chemical composition was identified using X-ray diffractometry. The setting time, flow, solubility, and radiopacity tests were performed following the International Organization for Standardization 6876:2012. pH and calcium ion release were measured. The materials were subjected to an extraction medium at various concentrations and subsequently measured for cytotoxicity and migration on HDPCs, from three healthy, mature permanent teeth from different donors. Osteogenic differentiation was assessed by examining alkaline phosphatase enzyme activity and alizarin red staining assay. The data were tested for a normal distribution. The differences among groups were statistically analyzed using ANOVA and Tukey's multiple comparison test (p < 0.05).

Results: The setting time of each material was approximately 1-2 min. C-Cap showed the lowest solubility (10.27% ± 1.02%) compared to Dycal (12.67% ± 0.94%) and Life (12.74% ± 1.33%), with a significant difference (p < 0.05). All materials exhibited radiopacity ranging from 2.4 to 2.9 mm of aluminum. C-Cap had the highest flow, alkalinity, and calcium ion release. C-Cap was significantly less cytotoxic than Dycal and Life (p < 0.05). The migration of HDPCs cultured in C-Cap extraction medium (27.74% ± 0.12%) was comparable to that in serum-free medium (27.09% ± 0.08%) with a significant difference (p < 0.05). The mineralization by HDPCs maintained in C-Cap extraction medium was significantly higher than those in Dycal and Life extraction mediums with a significant difference (p < 0.05).

Conclusions: C-Cap, a tricalcium silicate-based pulp capping material has potential for further development. C-Cap exhibited comparable physical properties and superior biological properties when compared to Dycal and Life.

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来源期刊
BDJ Open
BDJ Open Dentistry-Dentistry (all)
CiteScore
3.70
自引率
3.30%
发文量
34
审稿时长
30 weeks
期刊最新文献
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