Hatayama Takashi, Tabata Tomoko, Kibe Kota, Ikeda Masaomi, Sumi Yasunori, Shimada Yasushi
Department of Cariology and Operative Dentistry, Division of Oral Health Sciences, Graduate School of Medical and Dental Sciences, Institute of Science Tokyo, Tokyo 113-8549, Japan.
Department of Oral Biomedical Engineering, Graduate School of Medical and Dental Sciences, Institute of Science Tokyo, Tokyo 113-8549, Japan.
Polymers (Basel). 2024 Nov 30;16(23):3389. doi: 10.3390/polym16233389.
Resin core build-ups following root canal treatment still have many issues. This study evaluated whether a new low-polymerization-shrinkage resin core system (LC2) could address these issues by assessing its bonding performance to root canal dentin using microtensile bond strength tests and gap formation using swept-source optical coherence tomography (SS-OCT). Twenty-four extracted human lower premolars were used for bonding performance tests, while forty-eight sound extracted human wisdom teeth were used for gap observation. Four systems were compared: Luminous Core LC flow (LC1), LC2, MI Core LC flow (MIC), and Filtek Fill & Core (FFC). Cylindrical cavities were prepared, bonded, and filled with resin cores, and gap formation was evaluated. The results showed significant differences in bond strength between the coronal and apical sides: LC1 (coronal: 29.9 ± 3.8 MPa; apical: 12.4 ± 2.0 MPa), LC2 (coronal: 31.2 ± 3.6 MPa; apical: 17.8 ± 3.6 MPa), MIC (coronal: 28.7 ± 3.8 MPa; apical: 8.8 ± 2.1 MPa), and FFC (coronal: 29.0 ± 4.2 MPa; apical: 9.5 ± 1.9 MPa). LC2 exhibited significantly higher bond strength at the apical side compared to the other systems ( < 0.05). Gap formation was significantly reduced in LC2 (10.9 ± 5.0%) and FFC (11.9 ± 5.0%) compared to LC1 (31.8 ± 10.5%) and MIC (32.0 ± 5.6%) ( < 0.05). These findings suggest that LC2 is advantageous for resin core build-ups, particularly in improving adhesion to root canal dentin and reducing gap formation.
根管治疗后的树脂核修复仍存在许多问题。本研究通过微拉伸粘结强度测试评估一种新型低聚合收缩树脂核系统(LC2)与根管牙本质的粘结性能,并使用扫频光学相干断层扫描(SS-OCT)观察其间隙形成情况,以评估该系统是否能解决这些问题。24颗拔除的人类下颌前磨牙用于粘结性能测试,48颗完好拔除的人类智齿用于间隙观察。比较了四种系统:Luminous Core LC flow(LC1)、LC2、MI Core LC flow(MIC)和Filtek Fill & Core(FFC)。制备圆柱形窝洞,进行粘结并用树脂核充填,然后评估间隙形成情况。结果显示,冠方和根方的粘结强度存在显著差异:LC1(冠方:29.9±3.8MPa;根方:12.4±2.0MPa)、LC2(冠方:31.2±3.6MPa;根方:17.8±3.6MPa)、MIC(冠方:28.7±3.8MPa;根方:8.8±2.1MPa)和FFC(冠方:29.0±4.2MPa;根方:9.5±1.9MPa)。与其他系统相比,LC2在根方表现出显著更高的粘结强度(<0.05)。与LC1(31.8±10.5%)和MIC(32.0±5.6%)相比,LC2(10.9±5.0%)和FFC(11.9±5.0%)的间隙形成显著减少(<0.05)。这些发现表明,LC2有利于树脂核修复,特别是在提高与根管牙本质的粘附力和减少间隙形成方面。