In Vitro Study of the Biological and Physical Properties of Dual-Cure Resin-Modified Calcium Silicate-Based Cement.

IF 3.1 Q2 DENTISTRY, ORAL SURGERY & MEDICINE Dentistry Journal Pub Date : 2023-05-04 DOI:10.3390/dj11050120
Minjung Kim, Sung-Hoon Lee, Dong-Hoon Shin
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Abstract

Background: The aim of the present study was to compare the biological and mechanical properties of a novel dual-cure, resin-modified calcium silicate material, Theracal PT® (TP), with those of Theracal LC® (TL) and BiodentineTM (BD).

Methods: The cell counting kit-8 was used on human dental pulp cells to test cell the viability of the three materials. Antibacterial activity of TP, TL, and BD against Enterococcus faecalis was investigated under anaerobic conditions. The ability of the materials to support odontogenic differentiation was studied by examining the relative gene expression of osteocalcin (OCN), osteopontin (OPN), and Collagen I (ColI) using real-time polymerase chain reaction. For mechanical property tests, microhardness was evaluated using the Vickers microhardness (VHN) test, and the bond strength to the resin was evaluated using a shear bond test machine.

Results: There was no significant difference in cell viability between TL and TP after 48 h, and BD showed the highest cell viability, while TP showed the highest antibacterial effect. At the 12-h time point, there was no significant difference in ColI and OCN expression between BD and TP, but TP showed a higher expression of OPN than BD. However, at the 48-h time point, ColI and OCN showed higher levels of expression for BD than for TP and TL. At the same time point, only OPN had a higher diffusion for TP than for BD. TP demonstrated a VHN of approximately 30-35. This value was higher than that of TL and lower than that of BD. In contrast to VHN, the shear bond strength to resin was significantly higher for TL and TP than for BD.

Conclusion: TP showed lower biocompatibility than BD but higher OPN expression and antibacterial effects than BD and TL. TP showed higher shear bond strength than BD and higher VHN than TL and BD at the 24-h time point.

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双固化树脂改性硅酸钙基水泥生物物理性能的体外研究。
背景:本研究的目的是比较一种新型双固化树脂改性硅酸钙材料Theracal PT®(TP)与Theracal LC®(TL)和BiodentineTM (BD)的生物学和力学性能。方法:采用细胞计数试剂盒-8对人牙髓细胞进行细胞活力检测。在厌氧条件下研究了TP、TL和BD对粪肠球菌的抑菌活性。通过实时聚合酶链反应检测骨钙素(OCN)、骨桥蛋白(OPN)和I型胶原蛋白(ColI)的相对基因表达,研究材料支持牙源性分化的能力。在力学性能测试中,使用维氏显微硬度(VHN)测试评估显微硬度,使用剪切粘接试验机评估树脂的粘接强度。结果:TL与TP在48h后细胞活力差异无统计学意义,且BD细胞活力最高,TP抑菌效果最高。在12 h时间点,大肠杆菌和OCN在BD和TP之间的表达没有显著差异,但TP的OPN表达高于BD,而在48 h时间点,大肠杆菌和OCN在BD中的表达水平高于TP和TL,同一时间点,只有OPN对TP的扩散高于BD, TP的VHN约为30-35。与VHN相比,TL和TP与树脂的剪切结合强度显著高于BD。结论:TP的生物相容性低于BD,但OPN表达和抗菌作用高于BD和TL,在24 h时间点TP的剪切结合强度高于BD, VHN高于TL和BD。
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来源期刊
Dentistry Journal
Dentistry Journal Dentistry-Dentistry (all)
CiteScore
3.70
自引率
7.70%
发文量
213
审稿时长
11 weeks
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