Choung H W, Lee D S, Lee Ji-Hyun, Shon W J, Lee Jong-Ho, Ku Y, Park J C
Department of Oral Histology/Developmental Biology, School of Dentistry and Dental Research Institute, Seoul National University, Seoul, Republic of Korea.
Department of Conservative Dentistry, School of Dentistry and Dental Research Institute, Seoul National University, Seoul, Republic of Korea.
J Dent Res. 2016 Jul;95(8):906-12. doi: 10.1177/0022034516639919. Epub 2016 Mar 24.
If there is a partial loss of dentin, the exposed dentinal surface should be protected by an indirect pulp capping (IPC) procedure to preserve pulp vitality and prevent symptoms of dentin hypersensitivity. In our previous study, copine7 (CPNE7) induced odontoblast differentiation in vitro and promoted dentin formation in vivo. The aim of this study was to investigate the possibility of IPC therapy using the CPNE7 protein at the exposed dentinal surface and the resulting effects on tertiary dentin formation in a beagle model. CPNE7 promoted mineralization of odontoblasts and had high calcium ion-binding capacity. The in vivo IPC model with canine teeth showed that regeneration of physiologic reactionary dentin with dentinal tubule structures was clearly observed beneath the remaining dentin in the CPNE7 group, whereas irregular features of reparative dentin were generated in the mineral trioxide aggregate (MTA) group. The CPNE7+MTA group also showed typical reactionary dentin without reparative dentin, showing synergistic effects of CPNE7 with MTA. A scanning electron microscopy analysis showed that dentinal tubules beneath the original dentin were occluded by the deposition of peritubular dentin in the CPNE7 and CPNE7+MTA groups, whereas those in the control group were opened. Therefore, CPNE7 may be able to serve as a novel IPC material and improve symptoms of dentin hypersensitivity.
如果存在牙本质部分丧失,应通过间接盖髓术(IPC)保护暴露的牙本质表面,以保持牙髓活力并预防牙本质过敏症状。在我们之前的研究中,copine7(CPNE7)在体外诱导成牙本质细胞分化,并在体内促进牙本质形成。本研究的目的是探讨在暴露的牙本质表面使用CPNE7蛋白进行IPC治疗的可能性,以及在比格犬模型中对第三期牙本质形成的影响。CPNE7促进成牙本质细胞矿化并具有高钙离子结合能力。犬牙的体内IPC模型显示,在CPNE7组中,在剩余牙本质下方清晰观察到具有牙本质小管结构的生理性反应性牙本质再生,而在三氧化矿物凝聚体(MTA)组中产生了修复性牙本质的不规则特征。CPNE7+MTA组也显示出典型的反应性牙本质而无修复性牙本质,表明CPNE7与MTA具有协同作用。扫描电子显微镜分析显示,在CPNE7组和CPNE7+MTA组中,原始牙本质下方的牙本质小管被管周牙本质沉积所封闭,而对照组中的牙本质小管是开放的。因此,CPNE7可能能够作为一种新型的IPC材料并改善牙本质过敏症状。