Kim Hyeryeong, Choi Aerin, Gong Mi-Kyung, Park Hae Ryoun, Kim Yong-Il
Department of Orthodontics, Dental Research Institute, Pusan National University, Yangsan 50612, Korea.
Department of Oral Pathology, School of dentistry, Pusan National University, Yangsan 50612, Korea.
Nanomaterials (Basel). 2020 Nov 4;10(11):2203. doi: 10.3390/nano10112203.
This study aimed to investigate whether dentin remineralization and micro-tensile bond strength increase when using calcium phosphate ion clusters (CPICs) or metastable Ca-P. After being etched, each dentin specimen was designated into four groups and treated with the appropriate solution for 1 min: 100% ethanol, 2 and 1 mg/mL of CPICs, and metastable Ca-P. The specimens were then prepared for scanning electron microscopy (SEM), transmission electron microscropy (TEM) imaging, a matrix metalloproteinases inhibition assay, and the micro-tensile bond strength test. To compare among the groups, one-way analysis of variance was performed. In the SEM imaging, with a rising concentration of CPICs, the degree of remineralization of dentin increased significantly. The metastable Ca-P treated specimens showed a similar level of remineralization as the 1 mg/mL CPICs treated specimens. The TEM imaging also revealed that dentin remineralization occurs in a CPICs concentration-dependent manner between the demineralized dentin and the resin layer. Furthermore, the results of micro-tensile bond strength showed the same trend as the results confirmed by SEM and TEM. We demonstrated that a 1 min pretreatment of CPICs or metastable Ca-P in etched dentin collagen fibril can achieve biomimetic remineralization and increase micro-tensile bond strength.
本研究旨在探究使用磷酸钙离子簇(CPICs)或亚稳性钙磷时,牙本质再矿化及微拉伸粘结强度是否会增加。酸蚀后,将每个牙本质标本分为四组,并用相应溶液处理1分钟:100%乙醇、2和1毫克/毫升的CPICs以及亚稳性钙磷。然后对标本进行扫描电子显微镜(SEM)、透射电子显微镜(TEM)成像、基质金属蛋白酶抑制测定以及微拉伸粘结强度测试。为比较各实验组,进行了单因素方差分析。在SEM成像中,随着CPICs浓度的升高,牙本质的再矿化程度显著增加。经亚稳性钙磷处理的标本显示出与经1毫克/毫升CPICs处理的标本相似的再矿化水平。TEM成像还显示,在脱矿牙本质与树脂层之间,牙本质再矿化以CPICs浓度依赖性方式发生。此外,微拉伸粘结强度的结果与SEM和TEM证实的结果呈现相同趋势。我们证明,在酸蚀的牙本质胶原纤维中对CPICs或亚稳性钙磷进行1分钟预处理可实现仿生再矿化并提高微拉伸粘结强度。