Paik Youna, Kim Jae-Hoon, Yoo Kyung-Hyeon, Yoon Seog-Young, Kim Yong-Il
Department of Orthodontics, Dental Research Institute, Pusan National University, Yangsan 50612, Korea.
Department of Dental Education, Dental Research Institute, Pusan National University, Yangsan 50612, Korea.
Materials (Basel). 2022 Feb 17;15(4):1494. doi: 10.3390/ma15041494.
The purpose of this study was to evaluate the effects of flavonoids and calcium phosphate ion clusters (CPIC) on dentin bonding stability. Seven experimental solutions were synthesized using icaritin (ICT), fisetin (FIS), silibinin (SIB), CPIC, and combinations of one of three flavonoids and CPIC (ICT + C, FIS + C, SIB + C). The experimental solutions were applied to demineralized dentin prior to the application of a universal adhesive. A group without any experimental solution served as a control. Dentin specimens pretreated with the experimental solutions were assayed using Fourier transform infrared (FTIR) spectroscopy. The microtensile bond strength (µTBS) and nanoleakage were evaluated at 24 h and after 10,000 thermocycles. FIS and ICT + C showed significantly higher µTBS than the control group at 24 h. CPIC, ICT + C, FIS + C, and SIB + C showed significantly higher µTBS than the control group after thermocycling. After thermocycling, silver infiltration into the hybrid layer and interfacial gaps was more noticeable in the control group than in the other groups. The FTIR spectra revealed the formation of apatitic minerals in the demineralized dentin in the flavonoid and CPIC combination groups. The pretreatment of demineralized dentin with flavonoids and CPIC improved dentin bonding stability. The flavonoid and CPIC combinations preserved dentin bond strength.
本研究的目的是评估黄酮类化合物和磷酸钙离子簇(CPIC)对牙本质粘结稳定性的影响。使用淫羊藿素(ICT)、非瑟酮(FIS)、水飞蓟宾(SIB)、CPIC以及三种黄酮类化合物之一与CPIC的组合(ICT + C、FIS + C、SIB + C)合成了七种实验溶液。在应用通用粘合剂之前,将实验溶液应用于脱矿质牙本质。没有任何实验溶液的组作为对照组。使用傅里叶变换红外(FTIR)光谱对用实验溶液预处理的牙本质标本进行分析。在24小时和10000次热循环后评估微拉伸粘结强度(µTBS)和纳米渗漏。在24小时时,FIS和ICT + C的µTBS显著高于对照组。热循环后,CPIC、ICT + C、FIS + C和SIB + C的µTBS显著高于对照组。热循环后,对照组中银渗入混合层和界面间隙的情况比其他组更明显。FTIR光谱显示在黄酮类化合物和CPIC组合组的脱矿质牙本质中形成了磷灰石矿物质。用黄酮类化合物和CPIC对脱矿质牙本质进行预处理可提高牙本质粘结稳定性。黄酮类化合物和CPIC组合可保持牙本质粘结强度。