Sethi Simran, Bhushan Jagat, Joshi Rajesh Kumar, Singla Ruchi, Sidhu Kitty
Department of Conservative Dentistry and Endodontics, Dr. Harvansh Singh Judge Institute of Dental Sciences and Hospital, Panjab University, Chandigarh, India.
J Conserv Dent. 2023 May-Jun;26(3):321-325. doi: 10.4103/jcd.jcd_391_22. Epub 2023 Mar 21.
Perforation repair materials should have excellent sealing ability and dislodgement resistance. While several materials have been employed for perforation repair, newer calcium-silicate materials, such as Biodentine and TheraCal LC, have shown promising outcomes.
This study aimed to evaluate the effect of different irrigants on the dislodgement resistance of Biodentine and TheraCal LC when used for perforation repair in simulated conditions.
3% sodium hypochlorite, 2% chlorhexidine gluconate, and 17% EDTA were evaluated for their effect on the dislodgement resistance of Biodentine and TheraCal LC. 48 permanent mandibular molars were selected for the study. The samples were divided into two groups: Group I - Biodentine and Group II - TheraCal LC, with 24 samples each.
The mean dislodgement resistance and standard deviation of Group I (Biodentine) and Group II (TheraCal LC) were compared and Failure pattern analysis was done.
Biodentine showed a significant decrease in push-out bond strength after contact with 3% NaOCl, 2% CHX, and 17% EDTA whereas, TheraCal LC showed no significant decrease in push-out bond strength after exposure to 3% NaOCl, 2% CHX, and 17% EDTA.
Overall, TheraCal LC can be considered good perforation repair material with excellent physical and biological properties.
穿孔修复材料应具备出色的密封能力和抗移位能力。虽然已有多种材料用于穿孔修复,但新型的硅酸钙材料,如百康特(Biodentine)和TheraCal LC,已显示出良好的效果。
本研究旨在评估在模拟条件下用于穿孔修复时,不同冲洗剂对百康特和TheraCal LC抗移位能力的影响。
评估3%次氯酸钠、2%葡萄糖酸氯己定和17%乙二胺四乙酸(EDTA)对百康特和TheraCal LC抗移位能力的影响。选取48颗下颌恒磨牙进行研究。样本分为两组:第一组 - 百康特,第二组 - TheraCal LC,每组各24个样本。
比较第一组(百康特)和第二组(TheraCal LC)的平均抗移位能力和标准差,并进行失败模式分析。
百康特与3%次氯酸钠、2%葡萄糖酸氯己定和17% EDTA接触后,推出粘结强度显著降低;而TheraCal LC在暴露于3%次氯酸钠、2%葡萄糖酸氯己定和17% EDTA后,推出粘结强度无显著降低。
总体而言,TheraCal LC可被视为具有优异物理和生物学特性的良好穿孔修复材料。